1. Use a double integral and trigonometric substitution, together with the formula 1 | cos u· du =u+÷sin(2u)+C from the Table of Integrals, to find the area of a circle with radius r. 2 4
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![In this project we find formulas for the volume enclosed by a hypersphere in n-dimensional space.
1. Use a double integral and trigonometric substitution, together with the formula
1
1
| cos u- du =u+sin(2u)+C from the Table of Integrals, to find the area of a circle with radius r.
2
4
2. Use a triple integral and trigonometric substitution to find the volume of a sphere with radius r.
3. Use a quadruple integral to find the hypervolume enclosed by the hypersphere in
x² + y° +=+w² = r² in R* . (Use only trigonometric substitution and the reduction formulas for
Ssin"x- dx or
Scos"a
x. dx .)
4. Use an n-tuple integral to find the volume enclosed by a hypersphere of radius r in n-dimensional space
R*. [Hint: The formulas are different for n even and n odd.]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7ee2210f-6539-44d4-8e38-60565143d3fa%2Ff4db4324-203f-43d3-97fb-f8e893774c6a%2F5qavw38_processed.png&w=3840&q=75)
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