Wirte a matlab code to plot the 3D image of a helix: Use the following parameters and equations that define the axes in 3D: p=0.199; Pitch distance (distance between the turns) a=0.02999500; Radius of the helis wire b=0.191; Radius of the helix n = 5, is the number of helis turns. δ = atan(p/(2*pi*b)); The pitch angle x’ = b + a cos(Ө) y’ = -a sin(Ө) sin(δ) x = x’ sin(ф)+y’ cos(ф); y =-x’ cos(ф)+y’ sin(ф); z = p*ф/(2*pi)+a*sin(Ө)*cos(δ);
Wirte a matlab code to plot the 3D image of a helix: Use the following parameters and equations that define the axes in 3D: p=0.199; Pitch distance (distance between the turns) a=0.02999500; Radius of the helis wire b=0.191; Radius of the helix n = 5, is the number of helis turns. δ = atan(p/(2*pi*b)); The pitch angle x’ = b + a cos(Ө) y’ = -a sin(Ө) sin(δ) x = x’ sin(ф)+y’ cos(ф); y =-x’ cos(ф)+y’ sin(ф); z = p*ф/(2*pi)+a*sin(Ө)*cos(δ);
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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Wirte a matlab code to plot the 3D image of a helix:
Use the following parameters and equations that define the axes in 3D:
p=0.199; Pitch distance (distance between the turns)
a=0.02999500; Radius of the helis wire
b=0.191; Radius of the helix
n = 5, is the number of helis turns.
δ = atan(p/(2*pi*b)); The pitch angle
x’ = b + a cos(Ө)
y’ = -a sin(Ө) sin(δ)
x = x’ sin(ф)+y’ cos(ф);
y =-x’ cos(ф)+y’ sin(ф);
z = p*ф/(2*pi)+a*sin(Ө)*cos(δ);
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