A logic gate is an elementary building block of a digital circuit. Most logic gates have two inputs and one output. At any given moment‚ every terminal is in one of the two binaryconditions low (0) or high (1)‚ represented by different voltage levels. The logic state of a terminal can‚ and generally does‚ change often‚ as the circuit processes data. In most logic gates‚ the low state is approximately zero volts (0 V)‚ while the high state is approximately five volts positive (+5 V). There are seven
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Activity 6.3.2 Logic Gates Introduction A two-valued number system is the basis for all of the powerful computers and electronic devices in the world. Those two values are 0 and 1. Everything in the digital world is based on this binary system. While it seems very simple‚ the binary system is used to create the logic that dictates the actions of complex and simpler digital systems. But how do processors know what to do with all of those 0s and 1s Gates are used. Gates process the 0s and 1s and react
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Aristotelian Logic From some time in 400 B.C. to today‚ the use of Aristotelian logic has been a big influence on people and their opinions. Using ethos as the character of the speaker‚ pathos to show emotion and logos to show logic‚ companies make good promotion of their products with greater influence on the consumer. The other day I saw a commercial that instantly caught my eye. This commercial featured Jack form Jack in the Box; Jack in the Box restaurant was founded in 1951 by a man named
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THE LOGIC OF ANOVA ANalysis Of VAriance (commonly abbreviated as ANOVA)‚ more specifically‚ we will take up an application known as one-way ANOVA. Many statisticians think of ANOVA as an extension of the difference of means test because it’s based‚ in part‚ on a comparison of sample means. At the same time‚ however‚ the procedure involves a comparison of different estimates of population variance—hence the name analysis of variance. Because ANOVA is appropriate for research involving three or
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LOGIC DESIGN ASSIGNMENT 1. A. B. To convert 85.85 from its decimal form to binary. 2|85 0.85 × 2 = (1). 70 2|42 r 1 0.70 × 2 = (1).40 2|21 r 0 0.40 × 2 = (0).80 2|10 r 1 0.80 × 2 = (1).60 2|5 r 0 0.85₁₀ = .1101₂ 2|2 r 1 2|1 r 0 =1010101₂ THEREFORE 85.85₁₀ = 1010101.1101₂ 2|0 r 1 To convert 85.85₁₀ to Octal 8|85 0.85 x 8 = (6).80 8|10 r 5 0.80 x 8 = (6).40 8|01 r 2
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SUBTRACTORS September 18th‚ 2007 CSC343 Fall 2007 Prepared by: Steven Medina PURPOSE The purpose of this lab is to show you how to implement an adder using Quartus. As the name implies‚ adders are used to add two sets of values together. Adders are a very common design in digital design. For example‚ a CPU will use an adder to have its program counter point to its next instruction. This is done by adding a constant value of 4 to the current instructions memory address. You will be using adders
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Ladder diagrams are specialized schematics commonly used to document industrial control logic systems. They are called "ladder" diagrams because they resemble a ladder‚ with two vertical rails (supply power) and as many "rungs" (horizontal lines) as there are control circuits to represent. If we wanted to draw a simple ladder diagram showing a lamp that is controlled by a hand switch‚ it would look like this: The "L1" and "L2" designations refer to the two poles of a 120 VAC supply‚ unless
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Logic Logic (from the Greek λογική‚ logike)[1] has two meanings: first‚ it describes the use of valid reasoning in some activity; second‚ it names the normative study of reasoning or a branch thereof.[2][3] In the latter sense‚ it features most prominently in the subjects of philosophy‚ mathematics‚ and computer science. Logic was studied in several ancient civilizations‚ including India‚[4] China‚[5] Persia and Greece. In the West‚ logic was established as a formal discipline by Aristotle‚ who
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Overview The reasoning in fuzzy logic is similar to human reasoning. It allows for approximate values and inferences as well as incomplete or ambiguous data (fuzzy data) as opposed to only relying on crisp data (binary yes/no choices). Fuzzy logic is able to process incomplete data and provide approximate solutions to problems other methods find difficult to solve. Terminology used in fuzzy logic not used in other methods are: very high‚ increasing‚ somewhat decreased‚ reasonable and very low
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Religion and Logic Make Human Being Instead of being incompatible with each other‚ religion‚ referring to human being’s thought about what a human being is and why‚ provides some perceptual knowledge to us while logic‚ referring to both the study of modes of reasoning (which are valid and which are fallacious) and the use of valid reasoning[1]‚ gives us rational view about what a human being is‚ thus‚ helping us to become more human being. Religion and logic are not incompatible. Analytically
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