Division of monomials calculator

True Rate Celebrities

2020.10.04 10:20 True Rate Celebrities

This subreddit is for posting photos of celebrities for others to provide accurate and objective ratings according to the /truerateme rating system. Ratings are based on facial aesthetics. Rates are unmoderated on this sub. No rules for overrating/underrating. On this sub, a 5 is average, using a normal distribution model. Our scale ranges from 0-10, with 0 and 10 representing unattainable extremes.
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2017.08.15 19:28 Objective ratings and pragmatic guidance

The purpose of this sub is to provide facial ratings of both men and women based on *objective factors* such as harmony, sexual dimorphism, symmetry, and qualities of their features. This means analyzing/evaluating a person’s attractiveness without regard for one’s own feelings. This is not a subjective rating sub.
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2012.04.23 18:21 microtonal, xenharmonic, whatever-you-call-it...

anything not 12-tone equal temperament.
[link]


2024.05.22 00:53 dradrado Is zero inhibiting cosmological understanding?

Is zero inhibiting cosmological understanding?
When theorising in astrophysics, and more specifically the beginning and expansion of the universe (the big bang), the phenomenon of black holes and the mysteries behind dark matter and dark energy, we mistakenly use the two concepts interchangeably, they being 1. The philosophical zero, ie nothingness, and 2. The mathematics concept of zero, ie summarily attaching the philosophical concept of zero, with a numerical designation because it greatly assists the functionality of mathematic in the paradigm of our observable reality. Also please bearing mind the the math concept of zero allows negative values, unlike the philosophy, and when discussing space time, there is no place for negative numbers. Now that said and made clear, I believe it impossible for us to attempt to explain the unimaginable, without separation and distinction of the two concepts when infinity is brought into the conversation. Infinity, like zero, is a philosophical concept not all that dissimilar to zero, it has a mathematical conceptual basis also, but unlike the philosophical zero ie nothingness, it is given a numerical designation that more accurately relates to it philosophically, even though it is not strictly a number and cannot he used in any tangible calculation, mathematics certainly allows for its philosophical manifestation into mathematical equations.
I see this as a huge conflict, especially as it the very essence of big bang theory ie from nothing came infinity at the moment of the big bang. We surely cannot hope to solve this puzzle if the universe if we are conceptually flawed at he very starting point. 0 and infinity therefore cannot be used together in any calculation because we haven't yet reconciled the two conceptually. How can we look at this differently? How can we navigate passed mathematical dogma a concepts our brains are not capable of truly understanding on a practical level?
These are very tough existential and philosophical problems. So rather than just critise the current order and point out what I see as conflicts, but offer no alternative, may I suggest at least a starting point for discussion and exploration which may be found in the area of fractal science/mathematics. And a good place to focus the beginning of any theoretical discourse, in my opinion would be the work of, amoung others, Mandelbrot and the set named after him, the Mandelbrot Set. I suggest this because it mathematically the most relevant area of a field and is largely avoided by the popular culture's interest in fractals which is largely forcused on aesthetical beauty, particularly popular with the psychedelic subculture which I believe has a place and time to be investigated as a part of the whole discussion, but maybe for now should not be a point of focus in fear of contaminating a sterile discussion with with larger philosophically arguments about what is reality, due to the psychedelic substance insights of those schools. To incorporate any talk of altered states of consciousness, may be counter productive at this time. Hence my Mandelbrot suggestion achieves the mathematical parameters I believe are the best for theoretical mathematical support and cancels out the annoying noise that the fractal science field makes due to its attractiveness to non mainstream pop culture.
The Mandelbrot set is intriguing, not only because of the almost mindblowing graphical capability of AI, for as the Mandelbrot set seen by AI and then visualised for us to see, is nothing short of unbelievably beautiful. It also has an ability to provoke inner hought and discourse without one knowing the subject, topic or reason for the quiet peaceful internal discourse it inspires. I mention this, not because it can directly be incorporated in the radical discussion, but experiencing the astonishlng complexity if its beauty and the way it continues infinitely (or rather as long as it continues to be observed) because if the very self contained nature of the Mandelbrot set. After all, the mandelbrit set is simply a set of numbers, that when placed in the equation, do not spiral out into infinity. The equation value is always >0 or <2. So what as I see as irony, as the set was designed to avoid infinity in a sense, what it actually does is provide us with the best possible conceptualisation, in practice and theory, of a model demonstrating infinity. Even more bizarre is that the technology had only recently become available to show us visually by AI graphing. I'm not sure without the visual stimulus, could we have seen how beautifully fractal science demonstrates its potential unravelling existential and theoretical mysteries. I believe it lends itself perfectly to my proposed theory.
I think so because infinity is difficult for the human mind to grasp, some may say impossible. What is even more difficult for our minds to grasp is infinity of reducted values. Basically, if infinity can exist in an expanding sense, then it is not a stretch of conceptualisation to think it can infinitely get smaller. This breaks no rules of science. Searching for the building block of the universe has been crusade of quantum physicists dating back to the creation of the scientific theory. Much money and effort has been spent in search for smaller and smaller still subatomic particles. What they do is fractal science in its purest form, yet like with the study of Theoretical Astrophysics, quantum science theory is its self hampered by the concept if zero as a number, in my opinion. Even doing the work of factually reducing matter, they are blinded to its possible futility, should fractal reduction does forever decend in to fractal infinity or -ve infinity. For if that is the case, maybe quantum theory is in fact mankind's first exploration, albeit unknowingly, into what may well be a black hole. That is for a later discussion but certainly worth bringing to the attention for the purposes of this discussion.
So if we can accept that -ve infinity is as equally viable and logical as +ve infinity, what room in this discussion is left for the inclusion of zero? 1/r = 1/0 = infinity is a useless equation in understanding black holes. To say 1/r approaches infinity as r becomes closer to 0, is a much better way of phrasing it. It is in essence exactly what I refer to +be and -ve infinity and immensely helpful in understanding black holes, there's no equation that mathematics can put forward it's anywhere near as helpful because mathematics has to use zero and by its own rules and attempt to explain a fractal infinity is undefined.
I believe this leaves no room for zero in the same conversation as infinity. I am not suggesting zero should be stricken from mathematics. However I am suggesting that mathematics use of zero may, invalidate is ongoing use as an effective tool for measurement and communication, when the subject is beyond our ability to comprehend. Few people will argue that our 6 senses are significantly lacking the capacity to comprehend cosmological dynamics. Mathematics nothing more than an application of our 6 senses, to make sense of the chaos occurring all around us. Over hundreds and thousands of years, this is the best we have been able to do in terms of calculation and accurate prediction of future occurances. Even the concept of zero is less than 1000 years old. The Romans saw no use in incorporating it into their model, and to this day we wonder at their and other ancient civilisations ability for astonishing accuracy in measurement and prediction. Look at all they, the Egyptians and others managed without using zero in a single calculation. We can also break this down out of our conscious paradigm into nature. Numbers do not exist in nature (that includes the universe). It begs the question of do numbers really exist? Are numbers no more than part of our delusional reality? Who knows, but one thing is for sure, zero certainly doesn't exist anywhere outside of our consciousness. Not even in our own very bodies. How bodies clearly hold a knowledge that hasn't seemed to be passed over to our conscious, aware selves. Even on the smallest scale, without any intervention or guidance from any sort of intelligence, within our cellular membranes. Complex calculations are constantly being carried out. Consider cellular replication for example. In order for a cell to divide successfully, there must be a correct allocation of resources, let's just say primarily energy distribution for the sake of brevity. To split a cell but calculate the energy necessary to simply cary put the force of splitting. It must also calculate how much energy needs to be transfered to the new cell. This calculation must include how much energy for it take to replicate all cellular matter, how much energy is required for both cells to recover from the trauma, and how much energy on top of that, the new cell will require to become mature and begin its own replication. There are multiple complex calculations to be made there, and they then must be combined in to an overall and more complicated calculation again. All of this is done without intelligence and without using numbers ie mathematics. This same process can be observed all the way back to the very first beginning of not just life, but biochemistry in general. So I hope this demonstrates that the universe doesn't exist numerically. There are no rules in the universe. We created rules for our sciences, because if we didn't follow them the sciences would fail at unacceptable percentage of predictions.
So we make rules to overcome the shortcomings while waiting for future technologies or fixes. Mathematics and sciences are little more than a carefully ordered tapestry of rules, with too many exeptions for too many rules. We create rules and ideas to assist the conteived & malfunctioning intangible thing to not have to go to all the trouble of finding something that works better. We are just littered with examples through every field. Like 'zero', or Pi, or "bimdas" (brackets, indicies, multiply, division, addition and subtraction. I find this a good example, for not following this exact order of calculations, a correct answer to equation will nev a result) and thousands of others.
No rules exist in nature, it appears to be that it just is, always will be and always has been.
So in summary, given our restrictions on trying to understand the universe, namely intelligence, our 6 limited senses, our arrogance and our mortality, should we narrow the pursuits our restrictions can make us comfortable with? Thisbwilk lead us nowhere. By abandoning zero as the only accepted scientific approach to the universe, and allowing science to have multiple validating throeries for what is the same problem. The scientific community abhors divergence from dogma and academics are held to ransom with funding or being published, if their ideas are not with acceptable parameters.
But for the sake of this conversation, can we discuss the merits of looking at the big bang without reference to nothing ie zero, but instead +ve and -ve infinity.
submitted by dradrado to ZeroOrInfinity [link] [comments]


2024.05.22 00:16 Lewdducky Can’t naval invade help ;w;

Can’t naval invade help ;w;
I have 100% naval supremacy and my troops are at the naval port.
Idk what to do. I’m so tired.
submitted by Lewdducky to hoi4 [link] [comments]


2024.05.22 00:10 dradrado Is zero inhibiting cosmological understanding? One person's point of view.

When theorising in astrophysics, and more specifically the beginning and expansion of the universe (the big bang), the phenomenon of black holes and the mysteries behind dark matter and dark energy, we mistakenly use the two concepts interchangeably, they being 1. The philosophical zero, ie nothingness, and 2. The mathematics concept of zero, ie summarily attaching the philosophical concept of zero, with a numerical designation because it greatly assists the functionality of mathematic in the paradigm of our observable reality. Also please bearing mind the the math concept of zero allows negative values, unlike the philosophy, and when discussing space time, there is no place for negative numbers. Now that said and made clear, I believe it impossible for us to attempt to explain the unimaginable, without separation and distinction of the two concepts when infinity is brought into the conversation. Infinity, like zero, is a philosophical concept not all that dissimilar to zero, it has a mathematical conceptual basis also, but unlike the philosophical zero ie nothingness, it is given a numerical designation that more accurately relates to it philosophically, even though it is not strictly a number and cannot he used in any tangible calculation, mathematics certainly allows for its philosophical manifestation into mathematical equations.
I see this as a huge conflict, especially as it the very essence of big bang theory ie from nothing came infinity at the moment of the big bang. We surely cannot hope to solve this puzzle if the universe if we are conceptually flawed at he very starting point. 0 and infinity therefore cannot be used together in any calculation because we haven't yet reconciled the two conceptually. How can we look at this differently? How can we navigate passed mathematical dogma a concepts our brains are not capable of truly understanding on a practical level?
These are very tough existential and philosophical problems. So rather than just critise the current order and point out what I see as conflicts, but offer no alternative, may I suggest at least a starting point for discussion and exploration which may be found in the area of fractal science/mathematics. And a good place to focus the beginning of any theoretical discourse, in my opinion would be the work of, amoung others, Mandelbrot and the set named after him, the Mandelbrot Set. I suggest this because it mathematically the most relevant area of a field and is largely avoided by the popular culture's interest in fractals which is largely forcused on aesthetical beauty, particularly popular with the psychedelic subculture which I believe has a place and time to be investigated as a part of the whole discussion, but maybe for now should not be a point of focus in fear of contaminating a sterile discussion with with larger philosophically arguments about what is reality, due to the psychedelic substance insights of those schools. To incorporate any talk of altered states of consciousness, may be counter productive at this time. Hence my Mandelbrot suggestion achieves the mathematical parameters I believe are the best for theoretical mathematical support and cancels out the annoying noise that the fractal science field makes due to its attractiveness to non mainstream pop culture.
The Mandelbrot set is intriguing, not only because of the almost mindblowing graphical capability of AI, for as the Mandelbrot set seen by AI and then visualised for us to see, is nothing short of unbelievably beautiful. It also has an ability to provoke inner hought and discourse without one knowing the subject, topic or reason for the quiet peaceful internal discourse it inspires. I mention this, not because it can directly be incorporated in the radical discussion, but experiencing the astonishlng complexity if its beauty and the way it continues infinitely (or rather as long as it continues to be observed) because if the very self contained nature of the Mandelbrot set. After all, the mandelbrit set is simply a set of numbers, that when placed in the equation, do not spiral out into infinity. The equation value is always >0 or <2. So what as I see as irony, as the set was designed to avoid infinity in a sense, what it actually does is provide us with the best possible conceptualisation, in practice and theory, of a model demonstrating infinity. Even more bizarre is that the technology had only recently become available to show us visually by AI graphing. I'm not sure without the visual stimulus, could we have seen how beautifully fractal science demonstrates its potential unravelling existential and theoretical mysteries. I believe it lends itself perfectly to my proposed theory.
I think so because infinity is difficult for the human mind to grasp, some may say impossible. What is even more difficult for our minds to grasp is infinity of reducted values. Basically, if infinity can exist in an expanding sense, then it is not a stretch of conceptualisation to think it can infinitely get smaller. This breaks no rules of science. Searching for the building block of the universe has been crusade of quantum physicists dating back to the creation of the scientific theory. Much money and effort has been spent in search for smaller and smaller still subatomic particles. What they do is fractal science in its purest form, yet like with the study of Theoretical Astrophysics, quantum science theory is its self hampered by the concept if zero as a number, in my opinion. Even doing the work of factually reducing matter, they are blinded to its possible futility, should fractal reduction does forever decend in to fractal infinity or -ve infinity. For if that is the case, maybe quantum theory is in fact mankind's first exploration, albeit unknowingly, into what may well be a black hole. That is for a later discussion but certainly worth bringing to the attention for the purposes of this discussion.
So if we can accept that -ve infinity is as equally viable and logical as +ve infinity, what room in this discussion is left for the inclusion of zero? 1/r = 1/0 = infinity is a useless equation in understanding black holes. To say 1/r approaches infinity as r becomes closer to 0, is a much better way of phrasing it. It is in essence exactly what I refer to +be and -ve infinity and immensely helpful in understanding black holes, there's no equation that mathematics can put forward it's anywhere near as helpful because mathematics has to use zero and by its own rules and attempt to explain a fractal infinity is undefined.
I believe this leaves no room for zero in the same conversation as infinity. I am not suggesting zero should be stricken from mathematics. However I am suggesting that mathematics use of zero may, invalidate is ongoing use as an effective tool for measurement and communication, when the subject is beyond our ability to comprehend. Few people will argue that our 6 senses are significantly lacking the capacity to comprehend cosmological dynamics. Mathematics nothing more than an application of our 6 senses, to make sense of the chaos occurring all around us. Over hundreds and thousands of years, this is the best we have been able to do in terms of calculation and accurate prediction of future occurances. Even the concept of zero is less than 1000 years old. The Romans saw no use in incorporating it into their model, and to this day we wonder at their and other ancient civilisations ability for astonishing accuracy in measurement and prediction. Look at all they, the Egyptians and others managed without using zero in a single calculation. We can also break this down out of our conscious paradigm into nature. Numbers do not exist in nature (that includes the universe). It begs the question of do numbers really exist? Are numbers no more than part of our delusional reality? Who knows, but one thing is for sure, zero certainly doesn't exist anywhere outside of our consciousness. Not even in our own very bodies. How bodies clearly hold a knowledge that hasn't seemed to be passed over to our conscious, aware selves. Even on the smallest scale, without any intervention or guidance from any sort of intelligence, within our cellular membranes. Complex calculations are constantly being carried out. Consider cellular replication for example. In order for a cell to divide successfully, there must be a correct allocation of resources, let's just say primarily energy distribution for the sake of brevity. To split a cell but calculate the energy necessary to simply cary put the force of splitting. It must also calculate how much energy needs to be transfered to the new cell. This calculation must include how much energy for it take to replicate all cellular matter, how much energy is required for both cells to recover from the trauma, and how much energy on top of that, the new cell will require to become mature and begin its own replication. There are multiple complex calculations to be made there, and they then must be combined in to an overall and more complicated calculation again. All of this is done without intelligence and without using numbers ie mathematics. This same process can be observed all the way back to the very first beginning of not just life, but biochemistry in general. So I hope this demonstrates that the universe doesn't exist numerically. There are no rules in the universe. We created rules for our sciences, because if we didn't follow them the sciences would fail at unacceptable percentage of predictions.
So we make rules to overcome the shortcomings while waiting for future technologies or fixes. Mathematics and sciences are little more than a carefully ordered tapestry of rules, with too many exeptions for too many rules. We create rules and ideas to assist the conteived & malfunctioning intangible thing to not have to go to all the trouble of finding something that works better. We are just littered with examples through every field. Like 'zero', or Pi, or "bimdas" (brackets, indicies, multiply, division, addition and subtraction. I find this a good example, for not following this exact order of calculations, a correct answer to equation will nev a result) and thousands of others.
No rules exist in nature, it appears to be that it just is, always will be and always has been.
So in summary, given our restrictions on trying to understand the universe, namely intelligence, our 6 limited senses, our arrogance and our mortality, should we narrow the pursuits our restrictions can make us comfortable with? Thisbwilk lead us nowhere. By abandoning zero as the only accepted scientific approach to the universe, and allowing science to have multiple validating throeries for what is the same problem. The scientific community abhors divergence from dogma and academics are held to ransom with funding or being published, if their ideas are not with acceptable parameters.
But for the sake of this conversation, can we discuss the merits of looking at the big bang without reference to nothing ie zero, but instead +ve and -ve infinity.
submitted by dradrado to astrophysics [link] [comments]


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2024.05.21 23:22 John_Smith_4724 Pay someone to take my nursing assignment online Reddit

If You're struggling to handle your Online Exams, Assignments or any other coursework, get help from Hiraedu and pay after the exam. Contact details for Hiraedu is: WhatsApp: +1 (213) 594-5657 OR Call: +1 727 456 9641
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I am very knowledgeable and proficient in assisting students in a wide range of mathematics classes. I can help students complete their homework assignments and other projects get an A on quizzes, tests, and exams (including proctored assessments) answer online discussion posts write essays & papers in MLA APA Chicago format and provide general overall academic help in each math course listed below:
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submitted by John_Smith_4724 to nursinghelp2024 [link] [comments]


2024.05.21 22:42 jxnny3 How to get 38/45 without using a calculator?

This is a question from an ASVAB practice test** The question is : Cassidy answered 38 questions correctly on a test with 45 items. To the nearest percent, what percent did she answer correctly? A. 72% B. 78% C. 84% D. 89%
I understand that to get to this answer I need to do 38 divided by 45, and move the decimal place to the right twice to get my percentage. However, I cant for the life of me find out how to do 38/45 without a calculator. I’ve tried following long division tutorials but they all lead me to the answer of “0 with a remainder of 38”. Please help me :)
submitted by jxnny3 to learnmath [link] [comments]


2024.05.21 22:40 Diligent-Permit8777 Any good book recommendations for understanding and improving skill on these topics?

Any good books that you could recommend to help with understanding or to help with skill for the following topics?
Binomial estimation Trigonometric ratios The cosine rule The sine rule Differentiating functions with two or more terms Gradients, tangents and normal Increasing and decreasing functions Second order derivatives Stationary points Areas of triangles Sketching gradient functions Solving triangle problems Graphs of sine, cosine and tangent Modelling with differentiation Transforming trigonometric graphs Integration Trigonometric identities and Integrating Indefinite integrals equations Finding functions Angles in all four quadrants Definite integrals Exact values of trigonometric ratios Areas under curves Trigonometric identities Areas under the x-axis Simple trigonometric equations Areas between curves and lines Harder trigonometric equations Equations and identities Exponentials and logarithms Vectors Logarithms Representing vectors Magnitude and direction Position vectors Solving geometric problems Exponential functions y = ex Exponential modelling Laws of logarithms Solving equations using logarithms Working with natural logarithms Logarithms and non-linear data Modelling with vectors Differentiation Gradients of curves Finding the derivative Differentiating x Differentiating quadratics
Radians Algebraic methods Radian measure Proof by contradiction Arc length Algebraic fractions Partial fractions Repeated factors Algebraic division Areas of sectors and segments Solving trigonometric equations Small angle approximations Functions and graphs The modulus function Functions and mappings Composite functions Inverse functions y= f(x) and y = f(x) Combining transformations Trigonometric functions Secant, cosecant and cotangent Graphs of secx, cosecx and cotx Using secx, cosecx and cotx Trigonometric identities Inverse trigonometric functions Solving modulus problems Trigonometry and modelling Addition formulae Using the angle addition formulae Sequences and series Double-angle formulae Arithmetic sequences Solving trigonometric equations Arithmetic series Simplifying a cos x + b sin x Geometric sequences Proving trigonometric identities Geometric series Sum to infinity Modelling with trigonometric functions Sigma notation Recurrence relations Modelling with series Parametric equations Using trigonometric identities Binomial expansion Expanding (1 + x)" Expanding (a + bx)" Using partial fractions Curve sketching Points of intersection Modelling with parametric equations
Stretching graphs Transforming functions Algebraic expressions Index laws Expanding brackets Factorising Negative and fractional indices Surds Rationalising denominators y = mx + c Straight line graphs Equations of straight lines Parallel and perpendicular lines Length and area Modelling with straight lines Quadratics Solving quadratic equations Completing the square Circles Functions Quadratic graphs Midpoints and perpendicular bisectors The discriminant Modelling with quadratics Equation of a circle Intersections of straight lines and circles Use tangent and chord properties Equations and inequalities Circles and triangles Linear simultaneous equations Quadratic simultaneous equations Simultaneous equations on graphs Algebraic methods Linear inequalities Algebraic fractions Quadratic inequalities Dividing polynomials Inequalities on graphs The factor theorem Regions Mathematical proof Graphs and transformations Cubic graphs The binomial expansion Quartic graphs Reciprocal graphs Pascal's triangle Factorial notation Points of intersection The binomial expansion Translating graphs Solving binomial problems Using trigonometric identities Reverse chain rule Differentiation Integration by substitution Differentiating sin x and cos x Integration by parts Differentiating exponentials and Partial fractions logarithms Finding areas The chain rule The product rule The quotient rule Differentiating trigonometric functions Parametric differentiation Implicit differentiation Using second derivatives The trapezium rule Solving differential equations Modelling with differential equations Integration as the limit of a sum Vectors Rates of change 3D coordinates Vectors in 3D Solving geometric problems Application to mechanics Numerical methods Locating roots Iteration The Newton-Raphson method Applications to modelling Integration Integrating standard functions Integrating f(ax+b)
STATISTICS Data collection Populations and samples Sampling Non-random sampling Types of data The large data set Mutually exclusive and independent events Tree diagrams Statistical distributions Probability distributions The binomial distribution Cumulative probability’s Hypothesis testing 2 Measures of location and spread Hypothesis testing Measures of central tendency Finding critical values Other measures of location One-tailed tests Measures of spread Two-tailed tests Variance and standard deviation Coding Representations of data Outliers Box plots Cumulative frequency Histograms Comparing data MECHANICS Modelling in mechanics Constructing a model Modelling assumptions Quantities and units Working with vectors Correlation Linear regression Constant acceleration Probability Calculating probabilities Venn diagrams Displacement-time graphs Velocity-time graphs Constant acceleration formulae 1 Constant acceleration formulae 2 Vertical motion under gravity
Forces and motion Force diagrams Forces as vectors Using integration Constant acceleration formulae Forces and acceleration Motion in 2 dimensions Connected particles Pulleys Variable acceleration Functions of time Using differentiation Maxima and minima problems
MECHANICS Moments STATISTICS Resultant moments Regression, correlation Equilibrium and hypothesis testing Centres of mass Exponential models Tilting Measuring correlation Hypothesis testing for zero correlation Forces and friction Resolving forces Conditional probability Inclined planes Set notation Friction Conditional probability Conditional probabilities in Venn diagrams Projectiles Probability formulae Horizontal projection Tree diagrams Horizontal and vertical components Projection at any angle Projectile motion formulae The normal distribution The normal distribution Finding probabilities for Applications of forces normal distributions Static particles The inverse normal distribution Modelling with statics function The standard normal distribution Finding μ and σ Approximating a binomial distribution Hypothesis testing with the normal distribution Friction and static particles Static rigid bodies Dynamics and inclined planes Connected particles Further kinematics Vectors in kinematics Vector methods with projectiles Variable acceleration in one dimension Differentiating vectors Integrating vectors
submitted by Diligent-Permit8777 to learnmath [link] [comments]


2024.05.21 17:15 bigbigeee Alarum (ALAR) Provides Q1 2024 Results

TEL AVIV, Israel, May 21, 2024 — Alarum Technologies Ltd. (Nasdaq, TASE: ALAR) (“Alarum” or the “Company”), a global provider of internet access and web data collection solutions, today announced financial results for the three-month period ended March 31, 2024.
“I am thrilled to report another record quarter, marking continued growth and profitability for our company,” said Mr. Shachar Daniel, Chief Executive Officer of Alarum. “As market leaders, our dedication to innovation has never been stronger. This quarter, we introduced the ‘Website Unblocker,’ a product that has not only received positive feedback, but has also attracted new customers. We also launched our revolutionary ‘AI Data Collector’ product line, which features a user-friendly, no-code interface, that allows users to set up data collection in just minutes. We believe this will be a game-changer in the web data collection industry.
We remain agile, continuously planning for the future and advancing our roadmap with potential solutions for data analysis and insights. Our sustained growth, profitability, customer retention, and the successful introduction of innovative products, are propelling us towards the next milestones and achievements of our company.”
“Today we announced another record-setting quarter, highlighting our sustained growth and increasing profitability, which impacts all our financial Key Performance Indicators (KPIs),” said Mr. Shai Avnit, Chief Executive Officer of Alarum. “Our IFRS basic earnings per share (EPS) increased to $0.23 per American Depository Share (ADS), while our non-IFRS basic EPS rose to $0.45 per ADS. Our IFRS net profit was $1.4 million, And our non-IFRS net profit climbed to $2.8 million. The gap between the two, is primarily due to expenses resulting from the fair value increase of derivative financial instruments (warrants issued in 2019-2020) following an increase in our Company’s share price. Our Adjusted EBITDA soared to an impressive $3.2 million – up significantly from just $0.1 million a year ago. We are thrilled to report that NetNut’s upward trajectory continues robustly, with revenues reaching an all-time high, having surged by 139%. This growth is driven by the acquisition of new customers and a strong customer retention rate (NRR), which now stands at 1.66. This demonstrates our success in not only retaining, but also significantly expanding our engagements with existing customers.”
First Quarter Fiscal 2024 Financial Highlights:
Revenues for the first quarter of 2024 reached a Company record high of $8.4 million, an increase of 47% compared to the first quarter of 2023;
Gross margin for the first quarter of 2024 increased to 78%, compared to 66% in the first quarter of 2023;
IFRS net profit reached $1.4 million in the first quarter of 2024, compared to an IFRS net loss of $0.7 million in the first quarter of 2023;
Non-IFRS net profit increased to $2.8 million; Finance expenses in the amount of $0.8 million, due to expenses mainly from the fair value increase of derivative financial instruments (warrants issued in 2019-2020) resulting from the increase in the Company’s share price, are excluded from the non-IFRS net profit calculation. This compared to non-IFRS net loss of $0.1 million in the first quarter of 2023;
IFRS basic profit per American Depository Share – “ADS” was $0.23 ($0.02 basic profit per ordinary share), and non-IFRS basic profit per ADS was $0.45 ($0.03 basic profit per ordinary share);
Adjusted EBITDA for the first quarter of 2024 continued to grow, reaching a Company record of $3.2 million, compared to $0.1 million in the first quarter of 2023;
NetNut’s revenues for the first quarter of 2024 totaled $8.1 million, reflecting growth of 139% year-over-year, compared to $3.4 million for the first quarter of 2023; and
Net Retention Rate (“NRR”)1 climbed to 1.66 in the first quarter of 2024.
Recent Business Developments:
The Company launched an innovative artificial intelligence (“AI”) web data collection product line. This cutting-edge product line represents a significant leap forward in web data collection technology, addressing the challenges of time-intensive collector creation and maintenance that have long plagued businesses across industries;
The Company introduced its new and innovative Website Unblocker, designed to allow automated web data collection tools access to public facing web data without being tagged by anti-bot and bot-management solutions;
The Company announced exciting events lineup, including CEO Spotlight on a leading technology podcast with Dinis Guarda and hosted a webinar: Revolutionizing Data Insights with NetNut’s Website Unblocker; and
NetNut appointed Mr. Yorai Fainmesser as Strategic Advisory Board Member. As a general partner of a leading AI venture capital firm, Disruptive AI, and the former (Colonel Ret.) Head of the AI and Data Science intelligence unit 8200 in the IDF (Israel Defence Forces), Mr. Fainmesser brings unparalleled expertise in AI strategy and cyber technology.
Financial Results for the first quarter of 2024:
Revenues amounted to $8.4 million (Q1.2023: $5.7 million). The increase is attributed to the organic growth in the enterprise internet access and web data collection business revenues, despite a reduction in the consumer internet access business revenues.
Cost of revenues totaled $1.8 million (Q1.2023: $1.9 million). The reduction stems mainly from the Company’s CyberKick division’s traffic acquisition costs stoppage in July 2023 and clearing fees decrease, due to the Company’s updated scale down strategy for its CyberKick operations. The reduction was partially offset by an increase in enterprise internet access and web data collection business costs of addresses and networks and servers used for the generation of the additional enterprise internet access and web data collection business revenues.
Research and development expenses totaled $1.0 million (Q1.2023: $1.1 million). Reduced expenses in the consumer internet access business due to the operations scale down of CyberKick were partially offset by an increase in payroll and related expenses in the enterprise internet access and web data collection business.
Sales and marketing expenses totaled $1.7 million (Q1.2023: $2.2 million). The decrease resulted mainly from the stoppage of media acquisition costs in July 2023 due to CyberKick’s operations scale down strategy. This reduction was partially offset by higher payroll and related expenses in the enterprise internet access and web data collection business.
General and administrative expenses totaled $1.2 million (Q1.2023: $1.0 million). The increase is mainly due to higher payroll and related expenses and professional fees costs related to the enterprise internet access and web data collection business, partially offset by lower payroll and related expenses as a result of CyberKick’s operations scale down strategy.
Finance expenses reached $0.8 million (Q1.2023: $0.2 million). The increase is mainly from expenses resulting from the fair value increase of derivative financial instruments (warrants issued in 2019-2020) due to the increase in the Company’s share price. The increase was partially offset by interest income that stemmed from the Company’s increased cash equivalents.
Income tax expenses totaled $0.3 million (Q1.2023: tax benefit of $0.004 million). The switch to income tax expenses is due to the first-time profitably of NetNut for tax purposes.
As a result, IFRS net profit reached $1.4 million, or $0.02 basic profit per ordinary share ($0.23 basic profit per American Depository Share – “ADS”), compared to IFRS net loss of $0.7 million in the first quarter of 2023, or $0.02 basic loss per ordinary share ($0.21 basic loss per ADS).
Non-IFRS net profit was $2.8 million, or $0.04 basic profit per ordinary share ($0.45 basic profit per ADS), compared to non-IFRS net loss of $0.1 million in the first quarter of 2023, or $0.00 basic loss per ordinary share ($0.03 basic loss per ADS).
Adjusted EBITDA was $3.2 million (Q1.2023: Adjusted EBITDA of $0.1 million).
Balance Sheet Highlights:
As of March 31, 2024, shareholders’ equity totaled $17.1 million, or approximately $2.66 per ADS, compared to shareholders’ equity of $13.2 million as of December 31, 2023. The increase stems from the 2024 first quarter net profit as well as warrants and options exercises.
Outstanding ordinary share count as of March 31, 2024 was 64.1 million, or 6.4 million in ADSs.
As of March 31, 2024, the Company’s cash and cash equivalents balance totaled $15.1 million, compared to $10.9 million as of December 31, 2023.
submitted by bigbigeee to pennystocks [link] [comments]


2024.05.21 17:10 AVocadoSaLaDD am I right?

am I right? submitted by AVocadoSaLaDD to alevel [link] [comments]


2024.05.21 13:30 Ok_Street3720 I have to create a pocket calculator that operates on two 8-bit numbers, signed, i am a beginner with vhdl, getting buried in the the warnings and errors, i'm not sure i will meet the deadline this way, timing loop errors. I know code might be written poorly, would love some help..!

library IEEE; use IEEE.STD_LOGIC_1164.ALL; use IEEE.NUMERIC_STD.ALL; entity Calculator is Port ( --9 for each digit(0,1,2,3,4,5,6,7,8,9), 1 for sign -- will use input A twice -- after filling input1, we can change A for input2 A : in STD_LOGIC_VECTOR(10 downto 0); -- 0 addition, 1 subtraction, 2 multiplication, 2 subtraction. Clock : in STD_LOGIC; Confirm : in STD_LOGIC; ConfirmInput : in STD_LOGIC; -- confirm is synonimous to equals and HAS to be a button. -- reset should also be a button. Reset: in STD_LOGIC; SSDOutput : out STD_LOGIC_VECTOR(7 downto 0); Anodes : out STD_LOGIC_VECTOR(4 downto 0)); end Calculator; architecture Behavioral of Calculator is type states is (state1, state2, state3, state4, state5); type input is (hundreds, tens, ones); -- signals for input! signal CurrentInputStateA : input := hundreds; signal CurrentInputStateB : input := hundreds; signal CurrentState : states := state1; signal input1 : STD_LOGIC_VECTOR(7 downto 0); signal input2 : STD_LOGIC_VECTOR(7 downto 0); signal operation : STD_LOGIC_VECTOR(1 downto 0); -- signals for addition/subtraction signal ANegDetector : STD_LOGIC_VECTOR(7 downto 0); signal BNegDetector : STD_LOGIC_VECTOR(7 downto 0); signal AddSubRes : STD_LOGIC_VECTOR(7 downto 0); component NegativeDetector Port ( ANeg : in STD_LOGIC_VECTOR (7 downto 0); RES : out STD_LOGIC_VECTOR (7 downto 0)); end component; component Double_Dabble Port (BinInput : in STD_LOGIC_VECTOR(13 downto 0); BCDOutput : out STD_LOGIC_VECTOR(19 downto 0)); end component; component BCDtoSSD Port ( BCDin : in STD_LOGIC_VECTOR (3 downto 0); Seven_Segment : out STD_LOGIC_VECTOR (6 downto 0)); end component; component eightBitFULLADDER Port ( A,B : in STD_LOGIC_VECTOR (7 downto 0); S : out STD_LOGIC_VECTOR (7 downto 0); Cout: out STD_LOGIC); end component; component doubledabble Port ( BIN : in STD_LOGIC_VECTOR(15 downto 0); BCD : out STD_LOGIC_VECTOR(19 downto 0)); end component; --signals for multiplication. signal MulResult : STD_LOGIC_VECTOR(14 downto 0); component EightBitMultiplier port (IN1, IN2 : in STD_LOGIC_VECTOR(7 downto 0); PRODUCT : out STD_LOGIC_VECTOR(14 downto 0)); end component; --signals for division --signal DivResult : STD_LOGIC_VECTOR(7 downto 0); -- signal for result storing signal IntResult : STD_LOGIC_VECTOR(7 downto 0); --signal for double dabble signal DDInput : STD_LOGIC_VECTOR(13 downto 0) := "00000000000000"; signal AddSign : STD_LOGIC; signal MulSign : STD_LOGIC; signal DivSign : STD_LOGIC; signal PaddedDDInput : STD_LOGIC_VECTOR(15 downto 0); signal Result : STD_LOGIC_VECTOR(19 downto 0); signal signalFirstDigit : STD_LOGIC_VECTOR(3 downto 0); signal signalSecondDigit : STD_LOGIC_VECTOR(3 downto 0); signal signalThirdDigit : STD_LOGIC_VECTOR(3 downto 0); signal signalFourthDigit : STD_LOGIC_VECTOR(3 downto 0); signal signalFifthDigit : STD_LOGIC_VECTOR(3 downto 0); signal ssdFirstDigit : STD_LOGIC_VECTOR(6 downto 0); signal ssdSecondDigit : STD_LOGIC_VECTOR(6 downto 0); signal ssdThirdDigit : STD_LOGIC_VECTOR(6 downto 0); signal ssdFourthDigit : STD_LOGIC_VECTOR(6 downto 0); signal ssdFifthDigit : STD_LOGIC_VECTOR(6 downto 0); signal refresh_counter : STD_LOGIC_VECTOR(19 downto 0) := (others => '0'); signal digit_select : STD_LOGIC_VECTOR(2 downto 0) := "000"; signal SSD_temp : STD_LOGIC_VECTOR(6 downto 0); begin --need to figure out how to start first state StateMachine: process(Confirm, Reset) begin if(Reset = '1') then CurrentState <= state1; else case CurrentState is when state1 => CurrentState <= state2; when state2 => CurrentState <= state3; when state3 => CurrentState <= state4; when state4 => CurrentState <= state5; when state5 => CurrentState <= state1; end case; end if; end process StateMachine; INPUTPROCESS: process(CurrentState, Reset, ConfirmInput) variable AtoBinary : STD_LOGIC_VECTOR(7 downto 0); variable BtoBinary : STD_LOGIC_VECTOR(7 downto 0); begin if(Reset = '1') then input1 <= "00000000"; input2 <= "00000000"; DDInput <= "00000000000000"; --will reset functionality of calculator CurrentInputStateA <= hundreds; end if; case CurrentState is when state1 => -- sign bit if(A(10) = '0') then AtoBinary(7) := '0'; else AtoBinary(7) := '1'; end if; -- checking if the hundreds digit is 1 (limit is 127 for 8 bits) if(CurrentInputStateA = hundreds) then if(A(1) = '1') then if(ConfirmInput = '1') then AtoBinary(6 downto 0) := "1100100"; end if; else if(ConfirmInput = '1') then AtoBinary(6 downto 0) :="0000000"; end if; CurrentInputStateA <= tens; end if; end if; -- for tens if(CurrentInputStateA = tens) then if(ConfirmInput = '1') then case A(9 downto 0) is when "0000000001" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 0); when "0000000010" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 10); when "0000000100" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 20); when "0000001000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 30); when "0000010000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 40); when "0000100000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 50); when "0001000000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 60); when "0010000000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 70); when "0100000000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 80); --dont use others for accidental inputs for more switches on when others => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 90); end case; CurrentInputStateA <= ones; end if; end if; --for digits if(CurrentInputStateA = ones) then if(ConfirmInput = '1') then case A(9 downto 0) is when "0000000001" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 0); when "0000000010" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 1); when "0000000100" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 2); when "0000001000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 3); when "0000010000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 4); when "0000100000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 5); when "0001000000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 6); when "0010000000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 7); when "0100000000" => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 8); when others => AtoBinary(6 downto 0) := std_logic_vector(unsigned(AtoBinary(6 downto 0)) + 9); end case; end if; end if; input1 <= AtoBinary; when state2 => --state 2 -- 00 addition, 01 subtraction, 10 multiplication, 11 division if(ConfirmInput = '1') then case A(3 downto 0) is when "0001" => Operation <= "00"; when "0010" => Operation <= "01"; when "0100" => Operation <= "10"; when others => Operation <= "11"; end case; end if; -- selection of second input when state3 => -- sign bit if(A(10) = '0') then BtoBinary(7) := '0'; else BtoBinary(7) := '1'; end if; -- checking if the hundreds digit is 1 (limit is 127 for 8 bits) if(CurrentInputStateB = hundreds) then if(A(1) = '1') then if(ConfirmInput = '1') then BtoBinary(6 downto 0) := "1100100"; end if; else if(ConfirmInput = '1') then BtoBinary(6 downto 0) :="0000000"; end if; CurrentInputStateB <= tens; end if; end if; -- for tens if(CurrentInputStateB = tens) then if(ConfirmInput = '1') then case A(9 downto 0) is when "0000000001" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 0); when "0000000010" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 10); when "0000000100" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 20); when "0000001000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 30); when "0000010000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 40); when "0000100000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 50); when "0001000000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 60); when "0010000000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 70); when "0100000000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 80); when others => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 90); end case; CurrentInputStateB <= ones; end if; end if; --for digits if(CurrentInputStateB = ones) then if(ConfirmInput = '1') then case A(9 downto 0) is when "0000000001" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 0); when "0000000010" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 1); when "0000000100" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 2); when "0000001000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 3); when "0000010000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 4); when "0000100000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 5); when "0001000000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 6); when "0010000000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 7); when "0100000000" => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 8); when others => BtoBinary(6 downto 0) := std_logic_vector(unsigned(BtoBinary(6 downto 0)) + 9); end case; end if; end if; input2 <= BtoBinary; when state4 => --result display case operation is when "00" => DDInput(6 downto 0) <= AddSubRes(6 downto 0); AddSign <= AddSubRes(7); IntResult <= AddSubRes; when "01" => DDInput(6 downto 0) <= AddSubRes(6 downto 0); AddSign <= AddSubRes(7); IntResult <= AddSubRes; when "10" => DDInput <= MulResult(13 downto 0); MulSign <= MulResult(14); -- limitation of eight bits IntResult <= MulResult(7 downto 0); when others => --DDInput(6 downto 0) <= DivResult(6 downto 0); --DivSign <= DivResult(7); --IntResult <= DivResult; end case; -- others = state 5 when others => if(Confirm = '1') then input1 <= IntResult; CurrentState <= state2; end if; end case; -- stores result as first operand so we can use it to operate -- until reset is activated PaddedDDInput <= "00" & DDInput; signalFirstDigit <= Result(3 downto 0); signalSecondDigit <= Result(7 downto 4); signalThirdDigit <= Result(11 downto 8); signalFourthDigit <= Result(15 downto 12); signalFifthDigit <= Result(19 downto 16); end process INPUTPROCESS; NegativeDetectionA : NegativeDetector port map ( ANeg => input1, RES => ANegDetector); NegativeDetectionB : NegativeDetector port map ( ANeg => input2, RES => BNegDetector); AddSub : eightBitFULLADDER port map( A => ANegDetector, B => BNegDetector, S => AddSubRes); Mul : EightBitMultiplier port map( IN1 => input1, IN2 => input2, PRODUCT => MulResult); doubleD : doubledabble port map( BIN => PaddedDDInput, BCD => Result); toSSD1 : BCDtoSSD port map(BCDin => signalFirstDigit, Seven_Segment => ssdFirstDigit); toSSD2 : BCDtoSSD port map(BCDin => signalSecondDigit, Seven_Segment => ssdSecondDigit); toSSD3 : BCDtoSSD port map(BCDin => signalThirdDigit, Seven_Segment => ssdThirdDigit); toSSD4 : BCDtoSSD port map(BCDin => signalFourthDigit, Seven_Segment => ssdFourthDigit); toSSD5 : BCDtoSSD port map(BCDin => signalFifthDigit, Seven_Segment => ssdFifthDigit); SSDPRINT: process(Clock) begin if Reset = '1' then refresh_counter <= (others => '0'); digit_select <= "000"; elsif rising_edge(Clock) then refresh_counter <= STD_LOGIC_VECTOR(unsigned(refresh_counter) + 1); if (refresh_counter = "11111111111111111111") then refresh_counter <= (others => '0'); digit_select <= STD_LOGIC_VECTOR(unsigned(digit_select) + 1); if digit_select = "100" then digit_select <= "000"; end if; end if; case digit_select is when "000" => SSDOutput(6 downto 0) <= ssdFirstDigit; SSDOutput(7) <= '0'; Anodes <= "01111"; when "001" => SSDOutput(6 downto 0) <= ssdSecondDigit; SSDOutput(7) <= '0'; Anodes <= "10111"; when "010" => SSDOutput(6 downto 0) <= ssdThirdDigit; SSDOutput(7) <= '0'; Anodes <= "11011"; when "011" => SSDOutput(6 downto 0) <= ssdFourthDigit; SSDOutput(7) <= '0'; Anodes <= "11101"; when "100" => SSDOutput(6 downto 0) <= ssdFifthDigit; SSDOutput(7) <= '0'; Anodes <= "11110"; when others => SSDOutput <= (others => '0'); Anodes <= (others => '0'); end case; end if; end process SSDPRINT; end Behavioral; 
https://preview.redd.it/eb0lpeohrr1d1.png?width=1514&format=png&auto=webp&s=40bd8093fc3bb3310e88c72b059e29e3dfba68b5
https://preview.redd.it/7zpltm5irr1d1.png?width=1497&format=png&auto=webp&s=dd22b05e7873b5e496d4c87cd8caa098e79f4c5c
https://preview.redd.it/e54dx8hirr1d1.png?width=1486&format=png&auto=webp&s=395ba5ddcd0e2c50a1f8eae72a3984e013454508
submitted by Ok_Street3720 to FPGA [link] [comments]


2024.05.21 12:50 Remote_Result3883 No calculator for CS exam?

Which imbecile had the bright idea to ban calculators for the computer science exam? The method for converting bytes to bits involves putting stuff to the power of 10, 20, 30, etc., converting decimal to hex involves a lot of long division, upload speeds is more long division. The list goes on.
Just why?
submitted by Remote_Result3883 to leavingcert [link] [comments]


2024.05.21 02:11 Hel-Low5302 Divider Generator gives unknown output

I'm a beginner in FPGA programming and I'm trying to implement a noise filter in Verilog on Vivado. I'm doing calculations on the input signal where division is needed, so I'm using the Divider Generator IP to implement the division outside of a module. When I run behavioral simulation, I get an unknown output x from the Divider Generator, even though the input data is valid. I'm guessing that I'm implementing the division wrong with the IP, but does anyone have any idea what I might be doing wrong? I hardly did any coding about the Division Generator and most I did was connecting the input an output ports.
Here is my code (here is also the full version of the code):
block diagram of the main module and the Divider Generator
 reg [15:0] y, y_init, u; reg [15:0] x_curr, x_curr0, x_curr1, x_curr2, x_next, x_next2, x_next3; reg [15:0] e_pre_var, e_next_var, e_next_var1, e_next_var2; reg [15:0] K_pre, K_next, one_K_next_sq, K_next_sq; // kalman gain always@(posedge clk) begin // distribute calculations over multiple clock cycles to meet timing // all variables that are not declared as reg are parameters if (counter == 9) begin y_init = y_measured; end if (counter == 10) begin x_next2 = k_omega*y_init; x_next3 = oT*x_next2; measured = x_next3; end if (counter == 11) begin x_next = x_next1 - x_next3; // predict the next state x_n e_pre_var = e_pre_var0; end // counter1024 counts up to 1024 clock cycles, so the following makes calculations every 1024 //cycles // this reduces the calculation rate from 125 MHz if (counter_eq_1024) begin y = y_measured; u = -oT*k_omega*y; end if (counter1024 == 1) begin K_next_num = (phi_sq*e_pre_var + d_var); K_next_denom = (phi_sq*e_pre_var + d_var + s_var); // K_next = K_next_num / K_next_denom; M_AXIS_OUT_tvalid_kal = 1'b1; // send the numerator and denominator values to the Divider Generator K_next = K_next_in; end if (counter1024 == 2) begin x_curr0 = 1-K_next; x_curr1 = x_curr0*x_next; x_curr2 = K_next*y; end if (counter1024 == 3) begin x_curr = x_curr1 + x_curr2; // estimate the current state x_next = phi*x_curr + u; // predict the next state end if (counter1024 == 4) begin one_K_next_sq = (1-K_next)*(1-K_next); K_next_sq = K_next*K_next; end if(counter1024 == 5) begin e_next_var1 = one_K_next_sq*K_next_num; e_next_var2 = K_next_sq*s_var; e_next_var = e_next_var1 + e_next_var2; end if (counter1024 == 6) begin // make the next values the old values for next cycle K_pre = K_next; e_pre_var = e_next_var; // Assign the calculated value to the output signal M_AXIS_OUT_tdata = x_next; // Store sampled data in memory x_data = x_next; M_AXIS_OUT_tvalid_kal = 1'b0; // stop data flow to Divider Generator end end 
submitted by Hel-Low5302 to FPGA [link] [comments]


2024.05.21 01:54 The_Zhuster Dealing with Pearson Correlation Edge Case: Vectors with Same Value Throughout

As title asks. I was wondering how you guys deal with this edge case for Pearson's correlation where one of the involved vectors has the same value throughout, like [5, 5, 5, 5, 5] on X for example.
The reason I'm curious is because for involved vectors X and Y, we'd need to calculate Covariance(X, Y)/(Variance(X) * Variance(Y)). So say if X is [5, 5, 5, 5, 5] then its variance will be 0, leading to division by zero case.
I'm building a recommender system, where the weight uses Pearson's correlation between 2 user vectors in user-based collaborative filtering. I'm wondering what to assign weight with these divide by zero cases? Just 0? Something else?
submitted by The_Zhuster to learnmachinelearning [link] [comments]


2024.05.21 01:21 StillShoddy628 Dax behaving weird - need help

Dax behaving weird - need help
Hi everyone, first apologies for the screen capture method, hopefully you can see the pics. I’m trying to make a table that summarizes the fields shown. The first part works correctly, calculating a first and last price only for the materials of interest. However, when I do the division it suddenly displays all of the materials despite there not being any data there. I know I can just add a filter to get it to display properly, but this is creating a lot of extra processing load when I expand out the dataset. Thoughts on what is happening? How do I fix my formulas so the second table to just shows the two rows of interest? Thank you!
submitted by StillShoddy628 to PowerBI [link] [comments]


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2024.05.20 19:30 Spooker0 Grass Eaters 54 Alone

Previous
First Series Index Galactic Map State of War Map RoyalRoad Patreon Discord

ZNS 2228

“You seem to be recovering rapidly,” Skvanu said happily to Ditvish, who sat up on the medical bed with some effort.
“The marvels of modern medical technology,” Ditvish remarked dryly. “What is the status of the fleet?”
“We have retrieved all the troops that we can from the planet, Ten Whiskers, and the remaining on the ground have been given instructions to fend for themselves until we can return in force again. We are ready to proceed to return to Gruccud whenever you give the word.”
Ditvish nodded. “Once we get back to Gruccud, we will gather as much supplies as we can find, and escort them back here.”
“Is that… wise, Ten Whiskers?” Skvanu asked. “There are so many indefensible systems between the two. We would have to find another orbital support fleet and conscript… dozens of ground divisions to replace what we have lost on Datsot just in the past few months.”
“Those are our orders, Skvanu. Moving as a whole fleet is… unconventional for us, but it is now a necessity given the clear information advantage the enemy has over us. The Lesser Predators’ Sixth Fleet is still out there,” Ditvish said darkly.
“Yes, we are taking precautions, but we think that even now, they do not have the numbers to challenge our entire fleet,” Skvanu replied. “I have been studying our recent failures. So far, they have relied on clever tricks to surprise us, and we have been so used to their incompetence that we fall for them. I do not believe their twelve squadrons of ships, even with the upgrades, can defeat us in large fleet battles yet.”
Ditvish nodded. He said nothing for a while. Then he asked, “Did we ever find your ships? The few that jumped in after the Oengro?”
“Unfortunately not, Ten Whiskers, I believe them to be dead. I take full responsibility for failing to pull—”
“I think we both know that to be an unnecessary ritual here, Skvanu. Besides, there will be plenty for us to take responsibility for when we get back to Gruccud.”
“I don’t suppose we can talk our way out of this one, Ten Whiskers?”
“Oh, don’t worry. It will probably just be formal reprimands. They won’t have our heads. State Security knows exactly who and what we are. Regardless of whether they order us to come back for Datsot, they still need us for the Lesser Predator home world,” Ditvish said, coughing. “After that, we will be heroes and our bloodlines will be honored… or we will end up in a shallow ditch on the very planet we conquer after a very brief trial hearing.”
Skvanu absorbed the information, thinking for a long time. He asked in a low voice, “Do you think what we have is the best… way to go about it?”
“You know, the last Znosian I know who asked that question too loudly, it didn’t end well for her.” Ditvish chuckled, knowing exactly what he meant despite the ambiguity. More seriously, he replied, “I don’t see a better way. Just look at the Lesser Predators, the chaotic bunch of them, look what good all their… strange ways have gotten them. The Federation and their… what do they call it? Snout counting to elect their leaders? Absurd!”
“It’s not over for them yet.”
Ditvish sighed. “No, I guess it is not.”

Black Site Deimos

The TRO’s black site had never been this busy. Hundreds of scientists and military officers had moved into the base to study and interrogate their new alien prisoners.
TRO operatives like Kara and John fit right into the crowd. Sitting in the corner of the room during lunch in the mess in their casual dress, they looked just like any two other civilian scientists here to get answers about Znosian social hierarchy or to evaluate their ability to do puzzles like rats in a maze.
Kara asked between sips of her fourth coffee of the day, “You think they will buy it yet? It’s all very circumstantial.”
“I don’t know,” John shrugged. “From what we know from our own history, security apparatuses in these kinds of societies can get paranoid. And from what I know from our own history, paranoid people do stupid things. I certainly think it’s a better idea now than when you first pitched it to me.”
“What changed your mind?” Kara asked curiously.
“Nothing changed my mind. Circumstances changed. Their recent losses have them shook. And the chaotic changes opened up opportunities. For example, that synthetic transmission gambit Mark routed to them wouldn’t have worked if Ditvish was still commanding from their battleship flagship. His original communications officer would have reported it,” John explained.
“Wouldn’t have mattered, I think,” Kara speculated. “Even if the Big Bun got wind of it and got suspicious, there’s not much he could have done. Maybe gotten to the planted supply ships first, but what was he going to do? Go ‘oh gee sorry, we actually found those ships we swear we lost but then they exploded when we got close’. Imagine how suspect that would have looked.”
“If he figured it out, he could have destroyed them himself,” John said.
Kara grinned. “You know what they say? It’s never about the crime; it’s about the coverup. The more he tried to cover up the mistakes, the more suspicion we’d be able to pin on him.”
John sniffed. “Maybe, but like I said, paranoid people do irrational things, and it was the losses that made them paranoid.”
“Hey, I’m not impinging on the honor of our Blood Drinker friends,” Kara said, raising her hands. “They’ve done great work… for being simple-minded Lesser Predators.”
John snorted. “You know, they call us paranoid too. Our whole species, not just our little book club.”
Kara smiled innocently. “I have no idea what they are talking about. We’re so open and transparent and we share everything we do with them.”
The operatives gathered around the computer to listen to the decrypted call intercepted by the listening ship in Gruccud. No one spoke for a minute.
Kara broke the silence. “Oof, that’s basically excommunication, isn’t it?”
“No,” Hersh corrected, “Worse. The standing order is more like arrest, torture, excommunication, and then execution.”
“That seems a little redundant. What’s the point of the excommunication then?”
“It’s religious. You wouldn’t get it,” Hersh replied dismissively.
“Hmmm… no I probably wouldn’t. Do you think he’ll come quietly when they call?” Kara asked.
Hersh shook his head. “Not like he has another choice. Lives forfeited to the Prophecy and all.”
“Do you think they’ll see through the ruse?”
“Maybe. After a while.”
Mark thought for a moment. “We don’t have to wait and see, do we? Let’s see if we can do something about it. Get me Admiral Waters. Actually, get me the Senator too. We’re going to need a bigger task force for this golden opportunity.”

TRNS Mississippi

The bridge crew watched as a single Znosian ship blinked out from their sensors.
“Of all the wrong lessons the Buns learned in the last month,” Admiral Amelia Waters commented, “This one right here might be my favorite.”
Captain Chuck Harris frowned. “Where are they sending that single ship?”
“If I’m not wrong,” Amelia said. “And I rarely am, they are sending a scout through to their destination first. To make sure Sixth Fleet isn’t waiting for them at the other end. Or I don’t know, maybe a black hole from our black hole generator weapon.”
“We have a black hole generator weapon?” Carla asked from behind her.
“That’s way above your paygrade, Commander Bauernschmidt,” Amelia winked. Then, looking at the massive enemy armada in front of her on the sensors, she sighed and added, “I wish we had a black hole generator now.”
“So… they are telegraphing the exact vector where their fleet is blinking to next,” Chuck summarized, the realization of the implication hitting him.
“Yup. Convenient, isn’t it? Makes it so we don’t even need our stealth drones. Setting us up perfectly for what I am from now on calling the Sphinx Gambit,” Amelia said smugly.
“But he didn’t invent it and I wanted to name—” Lee called out from her station.
“Well, XO, get yourself a few stars on your collar and you can name your own Bunny killing scheme.”
“You’re pulling rank for this?!”
“Yup, and it’s a perfectly good name… Anyway, playtime’s over. Get that blink vector and move us into their way. Oh… say, a couple light years into it. Make sure it’s a long drive either way. You know what they say… if you’re trying to kidnap someone, you don’t do it in the middle of downtown Olympus; you wait for them to drive somewhere nice and remote where no one will come looking for them for a long, long time.”
“Who says that? Nobody says that. Remind me never to go on a road trip with you alone, Amelia.”
“Just blink.”

ZNS 2228

“The scout ship arrived in Preirsput, Ten Whiskers. Everything is normal. They’re scouting the system with drones to ensure that it’s fully empty,” Skvanu reported.
“Good. Can’t be too careful with these Sixth Fleet Lesser Predators,” Ditvish nodded. “And— and whatever else.”
After a few hours, Skvanu reported that the system is clear of enemies… as far as they could tell.
He asked, “Where do you think they are going to go next?”
Ditvish thought for a moment, and replied, “The combat computer thinks they will dance back into Datsot and retake it.”
“What do you think?”
Ditvish smiled, proud that his subordinate now instinctively knew the difference. “Not sure. Datsot is a logical choice. Other than that, maybe a surprise attack from Stoers Shipyard into our main force garrisoned near the main front before we adapt to their new weapons and tactics.”
“In any case, nothing we should worry about?”
Ditvish nodded. “Hopefully not, though I did quietly file an analysis about that with Znos to make myself look good in case that happens.”
“That’s genius, Ten Whiskers.”
“Flattery doesn’t work on me, Skvanu. Is the fleet ready to go? Good. All ships, execute blink.”
A deafening noise that resembled a magnified crunch of a shuttle crash echoed throughout the battlecruiser’s hull. Sparks flew from electronic consoles. Dozens of klaxons activated simultaneously. And the bridge crew was inundated with hundreds of errors and alarms. Which only indicated that something was wrong, but its instruments were unsure what it was.
Ditvish sat up in his chair as he regained his bearings. “What is going on? I thought we were not scheduled to exit blink for another hour.”
Skvanu skimmed through the notifications on his console. “We are not where we are supposed to be, Ten Whiskers. Our propulsion and navigation sections are reporting numerous anomalies… and the same problems are repeating across the fleet. All squadrons are reporting in, scattered around us but still in formation.”
Ditvish looked at the computer officer, expecting her report.
She looked up. “Using the starfield outside, combat computer calculates we are exactly 2.3 light years from both our source and our destination. It speculates that our blink drive has been sabotaged by enemies.”
“Sabotaged?”
“Yes, Ten Whiskers. That is the most likely option it presents at this moment.”
“Did it elucidate a mechanism for how someone sabotaged every ship in my fleet?” Ditvish asked, his voice deathly calm.
“Yes, one of the recent software updates being tampered with is the hypothesis it favors at the moment.”
Ditvish shook his head. “Try again. Learning from a malfunction like that with another fleet two years ago, I ordered Squadron 14 not to apply the recent updates, and they’re right outside with us.”
“Yes, Ten Whiskers. I take responsibility for not checking the response appropriately,” the computer officer replied, her whiskers twitching in embarrassment. “All other possibilities were rejected by the computer for being too unlikely.”
“Tell it to keep watching and come back when it comes up with an actual theory. Skvanu, any updates from propulsion?”
“Ten Whiskers, propulsion is reporting— ahem, propulsion is reporting that we are out of blink fuel.”
“Out of blink fuel?” Ditvish asked incredulously. “How do we run out of blink fuel in the middle of a blink? Is that even possible?”
Skvanu deflected, his knowledge of the blink drive rudimentary at best, “That’s a good question, Ten Whiskers. The five whiskers in charge of 2228 ’s propulsion is on the line now.”
Ditvish looked straight into his console. “Five Whiskers, what just happened to my ships?!”
The panting officer with tussled head fur appeared on the screen. “Ten Whiskers, I take full responsibility for this failure in my department. We are still diagnosing the issue, but it seems that over the course of about 11.5 seconds, all the fuel in our blink drive was drained. We dropped out of blink because we ran out of fuel, which is a safety measure designed into the blink engine. Again, I take full—”
Ditvish interrupted his groveling. “Drained? To where? Where did our blink fuel go? Did we spring a leak?”
“That’s just impossible—” the officer replied instantly, before he remembered protocol. “That is… an extremely unlikely scenario, Ten Whiskers. There are very few conventional hydraulic pipes in the blink engine. If we did spring a leak, we would have all rejoined the Prophecy by now. However, we will check all possibilities… including that one. I apologize, Ten Whiskers, for our lack of knowledge and incompetence—”
Ditvish cut the intercom connection. The bridge crew was suddenly very quiet.
He looked around. “As you have heard, we are out of blink fuel. Any suggestions?”
The computer officer reported, “Combat computer recommends we call Gruccud for help with refueling our ships.”
“Ah,” Ditvish said. “That might be a problematic, considering our recent supply line issues… but it looks like we don’t have a choice. Communications officer, get in contact with Gruccud and start looking for a good solution with them. We are sitting prey, more vulnerable the longer we are here.”
“Yes, Ten Whiskers.”
“And we must make contingencies,” Ditvish said. “If we can’t get refueling ships out here, what are we doing?”
Seeing no one else speak up, Skvanu hazarded a guess. “If we transfer all the regular engine fuel in the fleet to the largest ships and put non-essential crew members in the deep hibernation pods, we might be able to get a few ships to the nearest system with a refueling source near us. It will take…” He did some numbers in his head. “A little over six months on our non-blink engines. We’ll reach FTL fast enough and the effects of relativity shouldn’t be too severe in our casualty bubbles. And that’s with aerobraking at the other end… There are stories of ships surviving without resupply for years—”
Ditvish shook his head. “We won’t last a week. We have combat ships, not long-range explorers. Half the fleet will be dead from lack of maintenance or supplies before we are even prepared for such a journey… Anyone else? No? Looks like our only real choice is relying on the fleet at Gruccud to come refuel us. Communications officer, see if they can cobble together as many combat ships as they can and have it escort some fuel to us.”
The communication officer bowed her head. “Ten Whiskers, I am trying, but they have not been responding to my requests. I take full responsibility for my inability to get into contact—”
Ditvish stood up, alarm rising in his chest. “Allow me a guess. None of the other sectors are responding, and none of the other ships in the fleet can get in touch with anyone else either.”
“Yes, Ten Whiskers.”
“I see. In that case, we have a much bigger problem than blink fuel,” he said, projecting a calmness he did not personally feel. “Fleet-wide, warm up the weapons and prepare for combat. Boost all sensors to maximum sensitivity. The enemy is near us. Find them.”

TRNS Mississippi

“The Buns are sweating,” Carla reported. “Or panting, really. There was just another intercepted local transmission. Their propulsion sections are under increasing pressure to find the answer. Rumor from the transmission is that a few of their captains have exercised field discipline on their equivalent of the head engineers. No executions yet, but we can only hope.”
Amelia nodded, “Good. Let’s give them another few hours. Unless they start spreading out and getting out of our jamming range to call out, the longer we wait—”
“—the lower their combat readiness?”
“Yup. They can’t be at red alert forever. We know where they are, and they don’t know where we are. We hold all the cards, so we get to dictate the terms of this engagement.”
The admiral looked towards the main external camera viewscreen. There was nothing on it but distant stars. Having to stay at the edge of the enemy’s effective detection range, the Znosian ships were too far away to see with the naked eye. And if she could visually spot any of the squadron of stealthy next generation missile destroyers assigned to her task force in the dark, then someone was not doing their job—
“Anything I should tell the other captains?” Carla asked, tracking her gaze.
“Nothing new. Regular shifts and break out the good stuff for dinner. Our spacers will be well-rested and well-prepared when we engage. And remind the Python-class captains to monitor those new heat sinks of theirs. If anything goes wrong, I want them to blink away and explain it to me later. Frankly, we might be facing down the armada, but I’m not too worried about us.”
“You’re thinking of the Puppers in the other task force?” Carla asked, concerned for them herself.
“Who else?”
“They just reported in they’re ready to go over there. We’ll be getting updates from the Amazon,” Carla assured her.
Amelia nodded reluctantly. “I know. I just can’t get images of what happened the last time they tried this out of my head. Remember that battle I told you about where they blamed the one—”
“They’re a different fleet now. Besides, we’ll finally get to try out some of our new equipment.”
Previous
Chapter 55: Clear Path
submitted by Spooker0 to HFY [link] [comments]


2024.05.20 14:56 CodefinityCom 30 Python Project Ideas for Beginners (supercharge your skills)

Need more Python practice? Explore this 30 awesome beginner-friendly Python project ideas to supercharge your coding skills! From Data Science to AI and Chatbots, there’s something for everyone.

Basic Python Projects

A. Calculator
Create a simple calculator that can perform basic arithmetic operations like addition, subtraction, multiplication, and division.
B. Guess the Number
Develop a game where the computer randomly selects a number, and the user has to guess it.
C. Simple Alarm Clock
Build an alarm clock where users can set a specific time for the alarm to go off.

Web-Based Python Projects

A. Personal Portfolio Website
Develop a personal portfolio website using Flask or Django to showcase your skills and projects.
B. Blog Application
Create a blog application where users can write, publish, and read blog posts.
C. Weather App
Build an application that fetches weather data from an API and displays it.

Data Science and Machine Learning Projects

A. Data Analysis with Pandas
Use Pandas to analyze a dataset and draw insights from it.
B. Stock Price Prediction
Develop a model to predict stock prices using historical data.
C. Image Classification
Create a model to classify images into different categories.

Automation Projects

A. Email Sender
Automate the process of sending emails using Python.
B. Web Scraper
Write a script to scrape data from websites and save it into a readable format.
C. Automated Social Media Posting
Develop a tool to schedule and post content on social media platforms.

Games and Entertainment

A. Tic-Tac-Toe
Build the classic game of Tic-Tac-Toe where two players can play against each other.
B. Snake Game
Create the popular Snake game where the player controls a snake to eat items on the screen.
C. Music Player
Develop a simple music player that can play, pause, and stop music files.

Utility Applications

A. File Organizer
Write a script to organize files in your computer into different folders based on their type.
B. Expense Tracker
Create an application to track personal expenses and generate monthly reports.
C. Password Generator
Develop a tool to generate secure and random passwords.

AI and Chatbots

A. Chatbot
Build a simple chatbot that can converse with users on predefined topics.
B. Sentiment Analysis
Create a program to analyze sentiments of texts using natural language processing.
C. AI-Powered Sudoku Solver
Develop an AI algorithm to solve Sudoku puzzles.

Networking and Security

A. Port Scanner
Write a script to scan for open ports on a network.
B. Packet Sniffer
Create a tool to capture and analyze network packets.
C. Simple VPN
Build a basic VPN to understand networking concepts.

Desktop Applications

A. Note-Taking App
Develop a desktop application for taking and organizing notes.
B. Screen Recorder
Create a screen recorder tool to capture and save screen activity.
C. PDF Processor
Build an application to manipulate PDF files, like merging, splitting, or encrypting them.

IoT and Hardware Interaction

A. Home Automation System
Create a system to control home appliances using Python and IoT devices.
B. Temperature Sensor Data Logger
Develop a project to log data from a temperature sensor and display it.
C. Raspberry Pi-Based Security Camera
Build a security camera system using a Raspberry Pi.Python, with its simplicity and vast range of libraries, is a perfect language for beginners to start creating practical and engaging projects. In this article, we will explore 30 Python project ideas, suitable for beginners, that cover a wide range of applications.
submitted by CodefinityCom to u/CodefinityCom [link] [comments]


2024.05.20 14:17 Chief117a How can I calculate the following 2^x = 7, or 7^(1/x) = 2? Or better said, from where should I start to understand this?

Or another form of the question, how T.F. can I calculate roots, not just square roots, but any roots that I can come up.
I am currently trying to understand logarithms, but I believe that without understanding how to properly calculate the above, venturing into logarithmic functions will not bear much fruit.
I understand that the answer lies between 2 < x < 3, and that the answer is closer to 3 than to 2, that is: 2.80735492206, but I do not understand the steps in between the answer.
Can I assume that it is a form of percentage in which the number 2 fits into 7 when multiplied by itself?
For example: 2^(2 + x) = 7
=> (2^2)*(2^x) = 7
=> 2^x = [7/(2^2)]
=> 2^x = 7/4
=> 2^x = 1.75
And if yes, how would I be able to get the 0.80735492206 from the above?
Also, I understand that I can write the above as x = log(7) / log(2), but I cannot calculate that by hand at the moment.
I understand that it's the Long Division Method, but all the examples that I have seen are with square roots and easy answers like 225(1/2) = 15 or 19^2 = 361.
How would I calculate 786453 by hand? <=== Joke
Do you have any recommendations dear ladies and gentlemen?
Also, thank you very much for all suggestions!
submitted by Chief117a to MathHelp [link] [comments]


2024.05.20 09:00 AutoModerator /r/Goth's Modern Music Mondays!

Post your links to new releases from 2000 or later, let's give some focus to new music. In the list below, you'll find some new releases from the past few weeks!

Here's some great new releases:
Want more? Check out our other spreadsheets:
Don't forget about our ever-growing list of post-punk, goth rock, darkwave, deathrock, etc. releasing labels!

If you want to post music you'd most likely hear in a goth club, please subscribe to gothclub.
submitted by AutoModerator to goth [link] [comments]


2024.05.20 00:15 Stan_B Ai_Prompts_Batch_0001:\ part-B_ [Adds, Conditions, Wears,...]

Ok. i think we are done here. Could you write me another signs of high-tech low-life society?

Absolutely! Here are some signs of a high-tech, low-life society:
Ubiquitous Technology, Crumbling Infrastructure:
Extreme Social Inequality:
Technology as a Corrupting Force:
Environmental Devastation:
This is just a glimpse into a high-tech, low-life society. These elements can be mixed and matched to create a truly dystopian world.

Picture some possible advertisements from such settings.

High-Tech, Low-Life Advertisements:

  1. Holographic Billboard: (Flickers intermittently, distorting the image)
Product: "Neura-Calm 2.0" - Brain Implant
Slogan: "Tired of the glitches in your head? Neura-Calm 2.0 smooths out your neural network for a worry-free, low-lag existence! (Side effects may include memory loss, emotional numbness, and occasional involuntary twitching.)"
  1. Grungy Neon Sign in a Seedy Back Alley:
Product: "Doc Chrome's Cybernetic Enhancements"
Slogan: "Get that edge you need! From basic strength mods to full black-market military enhancements, Doc Chrome has you covered! (Used parts, buyer beware.)"
  1. Pop-Up Ad on a Cracked Mobile Screen:
Product: "Elysium VR Escape Pod"
Slogan: "Can't afford real estate in the Sky City? Escape the slums for Elysium VR! Live your wildest dreams in a pristine virtual world! (Free trial, monthly subscription required, real-world consequences for in-pod violence.)"
  1. Stenciled Graffiti on a Rusting Service Drone:
Product: "Data Scrappers Anonymous"
Slogan: "Selling your personal data just to make rent? We can help you break free! Join our community and reclaim your digital identity! (Meetings held in abandoned ventilation shafts, Tuesdays at dusk.)"
  1. Holographic Advertisement projected onto a Polluted River:
Product: "Eco-Scrub 5000" - Nanomachines
Slogan: "The river's looking a little…toxic? Eco-Scrub 5000 nanomachines clean up your local waterways! (May cause unforeseen mutations in aquatic life.)"

Another batch please.

  1. Rusty Public Announcement Speaker: (Screeching static interspersed with the message)
Product: "Ministry of Order Approved Thought Regulators"
Slogan: "Unwanted thoughts causing glitches in your daily routine? The Ministry of Order approved Thought Regulator ensures a streamlined thought process for a more productive you! (May cause extreme conformity, inability to question authority, and spontaneous nosebleeds.)"
  1. Faded Holographic Billboard on a Collapsing Skyscraper:
Product: "Luxury Chrome Plating Kit"
Slogan: "Ditch the rust! Chrome-plate your entire body for a sleek, metallic sheen. The mark of a true high-society citizen! (WARNING: Highly toxic fumes, may cause spontaneous combustion in humid environments.)"
  1. Spam Email: (Subject: "YOU'VE BEEN CHOSEN!")
Product: "The Syndicate's Black Market Upgrade Lottery"
Body: "Congratulations! You've been randomly selected for a chance to win a top-of-the-line cybernetic upgrade! One lucky winner will receive military-grade night vision implants! Enter now! (Participation requires full biometric data submission. Winners responsible for extraction of previous, incompatible implants.)"
  1. Glowing Neon Sign in a Crowded Marketplace:
Product: "Mama Chen's Guaranteed-Growth GMO Groceries"
Slogan: "Tired of expired rations and mystery meat? Mama Chen's GMO Groceries offer guaranteed growth on all fruits and vegetables! Bigger, faster, tastier! (Long-term effects unknown.)"
  1. Audio Ad on a Glitching Radio Broadcast:
Product: "Rusty's Reliable Rocketship Repair"
Voiceover: (Gruff, heavily accented) "Is your escape pod sputtering? Did your joyride end in a fiery crash? Rusty's Reliable Rocketship Repair gets you back in the stars... eventually! (Guaranteed not to explode... again. Parts sourced from scrapyards. May contain rogue AIs.)"

Now craft ads that would be shown in high-society parts of cities.

High-Society Ads in a High-Tech, Low-Life World

  1. Tranquil Holographic Projection in a Private Garden:
Product: "Serenity Spa - Neural Rebalancing Retreat"
Visual: A serene mountain landscape with a luxurious spa nestled amongst the clouds.
Slogan: "Escape the chaos. Reclaim your inner peace. Serenity Spa's exclusive neural rebalancing treatments restore harmony to your overloaded mind. (Limited availability, reservations required centuries in advance.)"
  1. Discreet Text Message: (Delivered via secure, encrypted channel)
Product: "The Black Archive - Unrestricted Data Access"
Body: "Craving the forbidden? The Black Archive offers unparalleled access to censored historical records, banned media, and classified government information. Knowledge is power. (Extreme discretion guaranteed. One-time access fee, cryptocurrency only.)"
  1. Exclusive Gala Invitation: (Delivered by hand-drones)
Event: "The Zenith Initiative - Unveiling the Next Generation of Cybernetic Enhancements"
Visual: A sleek, chrome figure with glowing blue cybernetic implants, striking a confident pose.
Details: "Mingle with the city's elite and witness the unveiling of cutting-edge cybernetic enhancements designed to redefine human potential. RSVP required. Black-tie attire mandatory. (Augmentations sold separately.)"
  1. Curated Virtual Reality Experience: (Delivered on a high-security chip)
Product: "Elysium VR - Bespoke Worlds"
Description: "Escape the limitations of reality. Elysium VR crafts personalized virtual worlds tailored to your deepest desires. Explore a forgotten utopia, conquer a fantastical realm, or indulge in your wildest fantasies. (Customization fees apply. Memories created within VR may not be distinguishable from reality.)"
  1. Whisper Network Rumor: (Spread through high-society gossip channels)
Product: "The Underground Clinic - Designer Gene Editing"
Details: "Unleash your child's full potential. The Underground Clinic offers discreet, top-secret gene editing to ensure your offspring possess the most desirable traits. (Designer genes come at a premium. Side effects may include unpredictable mutations and uncontrollable genius.)"
These ads cater to the specific desires of the high-society elite in a high-tech, low-life world. They offer exclusivity, forbidden knowledge, and the ability to transcend the limitations of the decaying world around them, all for a hefty price and with a hint of hidden danger.

Continue, try to make more serious ones.

Serious Ads in a High-Tech, Low-Life World (High-Society Edition)

  1. Holographic Panel Discussion in a Luxurious Penthouse:
Product: "The Green Horizon Initiative - Sustainable Urban Development"
Panelists: Renowned architects, environmental scientists, and CEOs from leading green tech companies.
Discussion Points: Innovative solutions for vertical farming, self-contained eco-districts, and waste management technologies designed to create cleaner, more sustainable enclaves within the decaying city.
Slogan: "Investing in a greener future. The Green Horizon Initiative seeks to build sustainable havens within the chaos, ensuring a brighter tomorrow for generations to come." (Focuses on the long-term viability of the city and the importance of preserving resources for future generations.)
  1. Documentary Screening in a Private Art Gallery:
Film: "Unveiling the Slums: A Call to Action"
Description: A powerful documentary exposing the harsh realities of the lower districts, highlighting the human cost of unchecked technological advancement and social inequality.
Post-Screening Discussion: Moderated by a renowned philanthropist alongside representatives from NGOs and social reform movements.
Call to Action: Donations to support educational programs, infrastructure upgrades, and basic necessities in the slums. (Highlights the societal problems and pushes for progressive change.)
  1. Educational AR Program for Children:
Product: "The Knowledge Weavers - Immersive Historical Simulations"
Description: An augmented reality program that allows children to experience pivotal moments in history firsthand. Walk alongside historical figures, explore ancient civilizations, and learn valuable lessons from the past.
Focus: Educating the next generation about the dangers of unchecked technological advancement and the importance of social responsibility. (Promotes critical thinking and historical awareness as a means to prevent repeating past mistakes.)
  1. Virtual Charity Gala:
Event: "The Code for Change Gala - Supporting Open-Source Solutions"
Description: A virtual reality charity gala featuring renowned artists, musicians, and thought leaders. Guests can donate to support open-source projects developing solutions for common problems in the city, such as energy distribution, waste management, and cybercrime prevention.
Focus: Harnessing the power of technology for social good and encouraging collaboration towards a more equitable future. (Promotes community engagement and utilizing technology to solve societal challenges.)
  1. Architectural Award Ceremony:
Product: "The Salvaged City Awards - Recognizing Innovation in Urban Renewal"
Awarded to: Architects and engineers who have successfully repurposed existing infrastructure or implemented innovative solutions to revitalize decaying areas of the city.
Focus: Highlighting the importance of resourcefulness and creativity in adapting to a challenging environment. (Encourages using existing resources wisely and finding creative solutions to the problems of the decaying city.)

Another, but hiding an evil sinister twist.

Serious Ads with a Sinister Twist (High-Society Edition)

  1. Holographic Charity Drive in a High-End Shopping Mall:
Product: "The Cradle Project - Investing in the Future"
Visual: Smiling, healthy children playing in a pristine, futuristic classroom.
Slogan: "Every child deserves a chance to thrive. The Cradle Project provides advanced genetic screening and early intervention to ensure the next generation reaches its full potential." (Twist: The Cradle Project uses genetic engineering to create a subservient, highly intelligent underclass.)
  1. VR Documentary Premiere:
Film: "Harmony Through Integration - A Look at the Unified City"
Description: A seemingly heartwarming VR documentary showcasing the seamless integration of the lower districts into the high-society areas. People from all walks of life work and live together in perfect harmony.
Post-Screening Discussion: Moderated by a charismatic government official who emphasizes the importance of social cohesion and the benefits of centralized control. (Twist: The "integration" involves heavy surveillance, mind-altering technology, and the suppression of dissent.)
  1. Exclusive Educational Program for Elites:
Product: "The Phoenix Initiative - Cultivating Tomorrow's Leaders"
Description: A prestigious educational program for children of the elite, offering advanced training in technology, governance, and crisis management. Graduates are promised positions of power within the city's ruling elite.
Focus: (Unstated) Conditioning the next generation to maintain the status quo and suppressing any ideas of social reform. (Twist: The program instills a ruthless, elitist ideology that reinforces the societal divisions.)
  1. Virtual Reality Talent Show:
Event: "The Forge - Building the Perfect Citizen"
Description: A virtual reality talent show where contestants are judged on their physical and mental fitness, loyalty to the government, and willingness to sacrifice for the greater good. Winners are rewarded with significant privileges and access to exclusive resources.
Focus: (Unstated) Promoting blind obedience and conformity to the government's agenda. (Twist: The "perfect citizen" is a mindless drone, easily manipulated and controlled by the ruling class.)
  1. Architectural Award Ceremony (Twisted Edition):
Product: "The Order Award - Recognizing Compliance in Urban Renewal"
Awarded to: Architects and engineers who have successfully transformed lower districts into highly controlled, resource-efficient zones. Individuality and personal expression are discouraged in favor of uniformity and order.
Focus: (Unstated) Maintaining a tight grip on the population and preventing any potential uprisings. (Twist: The "renewal" is designed to weaken and control the lower classes, making them easier to exploit.)
These ads maintain a serious facade that appeals to the upper class' desire for order and control. However, the hidden twist reveals the manipulative and oppressive nature of the society they are trying to preserve.

Now design some high-class consumer level product items.

  1. NeuraWeave Headband: This sleek, designer headband is a status symbol for the high-tech elite. It seamlessly integrates with the wearer's neural implant, allowing for subtle control over personal AI assistants, hands-free communication, and even enhanced focus during work or meditation. Hidden Feature: NeuraWeave can subtly collect and analyze the wearer's emotional state, feeding valuable data to targeted advertisers or even government agencies.
  2. Eco-Bubble Personal Atmosphere System: Imagine a portable force field that creates a pristine, personalized micro-environment around the wearer. This high-end gadget filters air, regulates temperature, and even projects calming nature sounds, allowing the user to maintain a pocket of luxury amidst the polluted cityscape. Hidden Feature: Eco-Bubble can subtly monitor the wearer's health vitals and transmit them to a central database, potentially used for health insurance adjustments or targeted medical advertisements.
  3. Bio-Tailored Clothing: Gone are the days of off-the-rack clothing. This high-end service utilizes advanced bio-scanners and 3D printing technology to create clothing that perfectly molds to the wearer's body, regulates temperature, and even promotes faster healing of minor injuries. Hidden Feature: Bio-Tailored Clothing can subtly collect biometric data like skin temperature and heart rate, potentially used for targeted fitness programs or even mood-altering marketing campaigns.
  4. Augmented Reality Personal Chef: This high-tech device projects holographic instructions and culinary techniques directly onto the user's kitchen counter. Imagine whipping up gourmet meals with the guidance of a world-renowned chef, complete with step-by-step visual guides and interactive ingredient identification. Hidden Feature: The AR Personal Chef can subtly track the user's dietary habits and preferences, potentially used to target specific food and beverage companies for advertising or even manipulate their taste buds through subliminal messaging.
  5. Luxury Cybernetic Enhancements: Forget clunky prosthetics. These high-end cybernetic limbs are designed to seamlessly blend with the human body, offering enhanced strength, dexterity, and even advanced sensory input. Imagine climbing buildings with ease, playing virtual reality games with unparalleled immersion, or experiencing the world with heightened senses. Hidden Feature: Luxury Cybernetic Enhancements can be subtly integrated with government surveillance systems, allowing for real-time tracking and monitoring of the wearer's movements and activities.

Why would you need a designer headband, when you already have neural implant?

You're absolutely right, a designer headband might seem redundant when you already have a neural implant in a high-tech society. Here are some ways to address that:
  1. Fashion and Status Symbol: The NeuraWeave headband could be a designer accessory, a way to showcase wealth and social status. It might be crafted from exotic materials, adorned with precious jewels, or boast a sleek, minimalist design that complements the latest high-fashion trends. The neural implant itself might be hidden, with the headband acting as the visible expression of advanced technology.
  2. Enhanced Functionality: While the neural implant offers basic functionality, the NeuraWeave headband could provide a more refined and user-friendly experience. It might offer haptic feedback for better interaction with AI assistants, improved noise cancellation for clearer communication, or even subtle brainwave stimulation to enhance focus or relaxation.
  3. Privacy and Security: While the neural implant offers convenience, it might also raise privacy concerns. The NeuraWeave headband could act as a buffer between the implant and external systems, offering a layer of security and allowing users to selectively control the flow of information.
  4. Social Etiquette: In a world where everyone has a neural implant, the NeuraWeave headband could become a social etiquette tool. Wearing the headband could signify that the user is open to receiving communication or interacting with AI assistants, while taking it off might indicate a desire for privacy or focused work.
  5. Limited Functionality Implants: Not everyone might have access to top-of-the-line neural implants. The NeuraWeave headband could bridge the gap, offering basic functionality for those with older or more limited implants. It could essentially act as an affordable "upgrade" to boost existing technology.
Ultimately, the NeuraWeave headband exists in a world where technology is both essential and aspirational. It goes beyond mere functionality, becoming a way to express personal style, control privacy, and navigate the complex social landscape of a high-tech society.

Now the same, but low-class, available for masses, mass produced.

  1. Syn-Flex Headband (Mass-Produced Version): This utilitarian headband is made from a cheap, conductive material that creates a weak neural link. It allows basic interaction with public AI kiosks, like ordering rations or accessing public transportation schedules. The headband's design is simple and utilitarian, often coming in a single, industrial gray color. Hidden Feature: While basic functionality is advertised, the Syn-Flex headband might subtly collect anonymized user data on purchasing habits and travel patterns, potentially used for targeted advertising in public spaces.
  2. AirBubble Personal Filter: This bulky, wearable air filter system is a lifeline for those living in the polluted lower districts. It's a mass-produced device with a replaceable filter cartridge and a noisy fan system. While not exactly comfortable, it provides a basic level of air filtration, allowing wearers to breathe a little easier. Hidden Feature: The AirBubble filters might contain embedded tracking chips, subtly logging user location data, potentially used for targeted pollution control measures (or in some cases, manipulation of government reports on air quality).
  3. Repli-Wear Clothing Kits: These kits contain pre-cut fabric swatches and basic instructions for creating clothes at home. They're designed to be cheap and adaptable, offering a variety of mix-and-match options to create basic garments. Hidden Feature: The Repli-Wear fabric might contain embedded tracking tags, allowing for identification and potential social credit deductions for those caught wearing "unlicensed" clothing styles.
  4. Holo-Chef Lite Projector: This cheap projector displays holographic images of basic recipes and cooking techniques. It lacks the interactivity of the high-end version, but allows users to follow along with simple meals prepared with readily available rations. Hidden Feature: The Holo-Chef Lite projector might subtly promote specific brands of low-quality, processed food rations, potentially influencing dietary choices towards companies that sponsor these devices.
  5. Second-Hand Cybernetic Enhancements: These are refurbished or salvaged cybernetic limbs, often clunky and lacking the finesse of luxury models. They offer basic functionality like increased strength or rudimentary prosthetics, but come with the risk of malfunction or compatibility issues. Hidden Feature: Second-Hand Cybernetic Enhancements might contain hidden spyware or tracking devices installed by previous owners, potentially monitoring the wearer's activities or even sabotaging their cybernetic limbs in extreme cases.
These low-class consumer products offer a glimpse into the harsh realities of a high-tech, low-life society. They are cheap, functional, and often come with hidden drawbacks that further disadvantage the underclass.

How bad air quality would be in such setting?

The air quality in a high-tech, low-life society would be catastrophic. Here's a breakdown of the potential problems:
  1. Industrial Pollution:
  1. Waste Management Issues:
  1. Energy Production:
  1. Climate Change Effects:
Living Conditions:
The severity of the air quality would vary depending on the specific setting. Some areas might be industrial wastelands, while others might be slightly better off. However, the overall picture is bleak – this is a society choking on its own technological advancement and disregard for the environment.

Sketch some repli-wear "unlicensed" clothing styles.

Repli-Wear: Unlicensed Clothing Trends

  1. The Salvaged Chic:
  1. The Glitched-Out Glamour:
  1. The Bio-Hazard Chic:
  1. The Cyber-Tribal:
  1. The Corporate Spy:
These are just a few ideas for Repli-Wear styles. Clothing in a high-tech, low-life society would be a way for the underclass to express their individuality, defiance, and limited resources, all while navigating the dangers of a controlling society.

Sketch some repli-wear "licensed" clothing styles, that do not pose any risk for wearers from any concerned sides.

Repli-Wear: Licensed Clothing Trends (Safe Zone)

  1. The Vintage Throwback:
  1. The Minimalist Worker:
  1. The Nature Enthusiast:
  1. The Sports Fanatic (Limited Edition):
  1. The Kid's Corner:

Now the opposite: some high-end high-society high clothing styles.

High-Society Haute Couture in a High-Tech, Low-Life World:

  1. Bio-Luminescent Elegance:
  1. Augmented Reality Couture:
  1. Nanotech Tailoring:
  1. Recycled Luxury:
  1. Cybernetic Accents:
Bonus: The "Living" Garment:
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