Q4. State Green's theorem for the plane. Verify Green's theorem in the plane for O (3x2 – 8y2)dx + (4y – 6xy)dy where C is the region bounded by the parabolas y = x², x = y². Also determine the area of the region bounded by the parabolas y = x², x = y². Q5. State Gauss's Divergence theorem. Verify the theorem for the vector function F = 4xi– 2y j+z’k taken over the region bounded by x² + y² = k² and z =0 and z = k .

Linear Algebra: A Modern Introduction
4th Edition
ISBN:9781285463247
Author:David Poole
Publisher:David Poole
Chapter4: Eigenvalues And Eigenvectors
Section4.2: Determinants
Problem 13AEXP
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Choose K=5, please answer all the questions

Q4. State Green's theorem for the plane. Verify Green's theorem in the plane for
O (3x2 – 8y2)dx + (4y – 6xy)dy
where C is the region bounded by the parabolas y = x², x = y².
Also determine the area of the region bounded by the parabolas y = x², x = y².
Q5. State Gauss's Divergence theorem. Verify the theorem for the vector function
F = 4xi– 2y j+z’k
taken over the region bounded by x² + y² = k² and z =0 and z = k .
Transcribed Image Text:Q4. State Green's theorem for the plane. Verify Green's theorem in the plane for O (3x2 – 8y2)dx + (4y – 6xy)dy where C is the region bounded by the parabolas y = x², x = y². Also determine the area of the region bounded by the parabolas y = x², x = y². Q5. State Gauss's Divergence theorem. Verify the theorem for the vector function F = 4xi– 2y j+z’k taken over the region bounded by x² + y² = k² and z =0 and z = k .
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