52–56. Curves on surfaces Verify that the curve r ( t ) lies on the given surface. Give the name of the surface. r ( t ) = 〈 ( 3 + cos 15 t ) cos t , ( 3 + cos 15 t ) sin t , sin 15 t 〉 ; ( 3 − x 2 + y 2 ) 2 + z 2 = 1 ( Hint: See Example 4 .)
52–56. Curves on surfaces Verify that the curve r ( t ) lies on the given surface. Give the name of the surface. r ( t ) = 〈 ( 3 + cos 15 t ) cos t , ( 3 + cos 15 t ) sin t , sin 15 t 〉 ; ( 3 − x 2 + y 2 ) 2 + z 2 = 1 ( Hint: See Example 4 .)
Solution Summary: The author explains how the entire curve can be represented by a vector-valued function r(t)=langle x,y,z
For what value of A and B the function f(x) will be continuous everywhere for the given definition?..
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SESSCALCET2 6.4.006.MI.
Use the Table of Integrals to evaluate the integral. (Remember to use absolute values where appropriate. Use C for the constant of integration.)
7y2
y²
11
dy
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SESSCALCET2 6.4.009.
Use the Table of Integrals to evaluate the integral. (Remember to use absolute values where appropriate. Use C for the constant of integration.)
tan³(12/z) dz
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SESSCALCET2 6.4.014.
Use the Table of Integrals to evaluate the integral. (Use C for the constant of integration.)
5 sinб12x dx
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Area Between The Curve Problem No 1 - Applications Of Definite Integration - Diploma Maths II; Author: Ekeeda;https://www.youtube.com/watch?v=q3ZU0GnGaxA;License: Standard YouTube License, CC-BY