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||'''Book'''|| Advanced Engineering Mathematics || ||'''Author'''|| Erwin Kreyszig || ||'''Edition'''|| 8th Edition || |
||'''Book''' ||Advanced Engineering Mathematics || ||'''Author''' ||Erwin Kreyszig || ||'''Edition''' ||8th Edition || |
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/* code_begins */ /* v=w*r v,w,r are vectors w is a vector along +ve z axis of magnitude some "p" */ |
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{{{ | /* code_begins */ /* v=w*r v,w,r are vectors w is a vector along +ve z axis of magnitude some "p" */ {{{ |
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* '''Solution by''': * <A.V.Trinath>, <student>, <IIIT-H> * <Your Name>, <Profession>, <Organization> |
* '''Solution by''': * <A.V.Trinath>, <student>, <IIIT-H> * <Your Name>, <Profession>, <Organization> |
Book
Advanced Engineering Mathematics
Author
Erwin Kreyszig
Edition
8th Edition
var('p') w=vector([0,0,p]) print w var('x') var('y') var('z') r=vector([x , y , z]) print r w.cross_product(r) p=10 f=(x**2+y**2)**(1/2) print f plot3d(p*f, (x, -100, 100), (y,-100,100))
Solution by:
<A.V.Trinath>, <student>, <IIIT-H>
<Your Name>, <Profession>, <Organization>