Aquinas’s cosmological argument is a posteriori argument that Aquinas uses to prove the existence of God. Aquinas argues that‚ “Nothing can move itself‚ so whatever is in motion must be put in motion by another‚ and that by another again. But this causal loop cannot go on to infinity‚ so if every object in motion had a mover‚ there must be a first mover which is the unmoved mover‚ called God.” (Aquinas‚ Question 2‚ Article 3). I do agree with Aquinas’s cosmological argument in proving the existence of God
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With 166 million user growth in Q1 for 2017‚ Snapchat has been one of the quickest growing social platforms for some time‚ so much so that many other platforms have directly copied the “story” feature. If you are familiar with the platform‚ you know that normally‚ individually sent snaps expire after they’ve been viewed just once unless you allow them to be replayed an additional time by the recipient‚ while snaps added to your “story” expire after 24 hours. Beginning May 9th these restrictions
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t 9. t 10.f 11. f 12. t Algorithm Workbench #1 - #7‚ pp.115-6 – Write pseudocode (not Java) (21 pts. total) 1. Module Main() Declare userNum as Integer Display "Enter a number" input userNum call TimesTen(userNum) Display userNum End Function TimesTen(integer userNum) userNum = (userNum * 10) return userNum End Function Algorithm Workbench #1 - #7‚ pp. 115-6 (continued) – Write pseudocode (not Java) 2. def main(): showvalue() def showvalue(): print ’12’
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ECE 4781 HW#02 INTRODUCTION TO OPERATIONAL AMPLIFIERS Abhishek Akkeneni 902667190 INTRODUCTION – WHAT ARE OPERATIONAL AMPLIFIERS? An operational amplifier ("op-amp") is a DC-coupled high-gain electronic voltage amplifier with a differential input and‚ usually‚ a single-ended output. An op-amp produces an output voltage that is typically hundreds of thousands of times larger than the voltage difference between its input terminals.[1] Op-amps are among the most widely used electronic
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FORM TP22230 Test Code 012299020 Mock Exam (March) 2013 CARIBBEAN EXAMINATIONS COUNCIL Caribbean Secondary Education Examination INFORMATION TECHNOLOGY PAPER 2 2 Hours DO NOT TURN THIS PAGE UNTIL YOU ARE TOLD TO DO SO SECTION A THEORY – 60 marks Answer ALL questions. 1. Figure 1 illustrates the components of a computer system with letters A‚ B‚ C‚ D‚ E and F representing hardware components. a. Name the components A‚ B‚ C‚ D‚ E and F
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Be sure to describe the fundamental tasks needed to solve the problem so you can use a modular design. Provide pseudocode of your overall design that includes the Main module and the order of the module calls (see page 82 for an example). Finally‚ list all of your pseudocode for each module (See example 2.6 on page 83 as an example). Include header and step comments in your pseudocode‚ using a similar approach as the example provided in section 2.3 (textbook page 86). See example 2.8 on pages
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Operational amplifier - Wikipedia‚ the free encyclopedia http://en.wikipedia.org/wiki/Operational_amplifier Operational amplifier From Wikipedia‚ the free encyclopedia An operational amplifier ("op-amp") is a DC-coupled high-gain electronic voltage amplifier with a differential input and‚ usually‚ a single-ended output.[1] An op-amp produces an output voltage that is typically hundreds of thousands of times larger than the voltage difference between its input terminals.[2] Operational amplifiers
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Exercise 4.1 2. Establish each of the following for all n ≥ 1 by the Principle of Mathematical Induction. Solution a) S(n): ==‚ S(1): = = =1‚ So S(1) is true. Assume S(k): = Consider S(k+1) = = +=-1+= -1. Hence‚ it follows that S(k)⇒S(k + 1) is true for all n ∈ Z+ by the Principle of Mathematical Induction. b) S( n) for n=1‚ = 2 = 2+(1-1). So S(1) is true. Inductive Step: assume S(k)is true‚ for some (particular) k ∈ Z+—that is‚ assume that =2+(k-1). For n=k+1‚ = + (k+1)
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T H O M A S H. C O R M E N C H A R L E S E. L E I S E R S O N R O N A L D L. R I V E S T C L I F F O R D STEIN INTRODUCTION TO ALGORITHMS T H I R D E D I T I O N Introduction to Algorithms Third Edition Thomas H. Cormen Charles E. Leiserson Ronald L. Rivest Clifford Stein Introduction to Algorithms Third Edition The MIT Press Cambridge‚ Massachusetts London‚ England c 2009 Massachusetts Institute of Technology All rights reserved. No part of this book may be reproduced
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International University- Bangladesh Department of Electrical and Electronic Engineering EEE2210: Analog Electronics 1 Laboratory Title: Study of Integrator and Differentiator. Introduction: By introducing electrical reactance into the feedback loops of op-amp amplifier circuits‚ we can cause the output to respond to changes in the input voltage over time. Drawing their names from their respective calculus functions‚ the integrator produces a voltage output proportional to the product of the
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