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Build Supercomputers with Raspberry Pi 3

You're reading from   Build Supercomputers with Raspberry Pi 3 A step-by-step guide that will enhance your skills in creating powerful systems to solve complex issues

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Product type Paperback
Published in Mar 2017
Publisher Packt
ISBN-13 9781787282582
Length 254 pages
Edition 1st Edition
Languages
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Author (1):
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Carlos R. Morrison Carlos R. Morrison
Author Profile Icon Carlos R. Morrison
Carlos R. Morrison
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Toc

Table of Contents (13) Chapters Close

Preface 1. Getting Started with Supercomputing FREE CHAPTER 2. One Node Supercomputing 3. Preparing the Initial Two Nodes 4. Static IP Address and Hosts File Setup 5. Creating a Common User for All Nodes 6. Creating a Mountable Drive on the Master Node 7. Configuring the Eight Nodes 8. Testing the Super Cluster 9. Real-World Math Application 10. Real-World Physics Application 11. Real-World Engineering Application A. Appendix

MPI Taylor series tan(x) function


Since tan(x) = sine(x)/cosine(x), we could combine the Taylor series formula of the sine(x) and cos(x) to construct the tangent function as follows:

Write, compile, and run this Serial tangent(x) code (see the following serial  tangent(x) code) to get a feel of the program:

/**********************************  
 * Serial tangent(x) code.        * 
 *                                * 
 * Taylor series representation   * 
 * of the trigonometric tan(x).   *  
 *                                * 
 * Author: Carlos R. Morrison     * 
 *                                * 
 * Date: 1/10/2017                * 
 **********************************/ 
#include <math.h> 
#include <stdio.h> 
 
int main(void) 
{ 
/************************************************/ 
  unsigned int i,j,l; 
  unsigned long int k; 
  long long int B,D,G,I;  
  int num_loops = 17; 
...
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