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Page 1: RAM PRAKASH/Vector Analysis Page 1 - WordPress.com · RAM PRAKASH/Vector Analysis Page 5 If V(x, y, z) is vector function invariant with respect to a rotation of axes, then div V

RAM PRAKASH/Vector Analysis Page 1

Page 2: RAM PRAKASH/Vector Analysis Page 1 - WordPress.com · RAM PRAKASH/Vector Analysis Page 5 If V(x, y, z) is vector function invariant with respect to a rotation of axes, then div V

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Page 3: RAM PRAKASH/Vector Analysis Page 1 - WordPress.com · RAM PRAKASH/Vector Analysis Page 5 If V(x, y, z) is vector function invariant with respect to a rotation of axes, then div V

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Page 4: RAM PRAKASH/Vector Analysis Page 1 - WordPress.com · RAM PRAKASH/Vector Analysis Page 5 If V(x, y, z) is vector function invariant with respect to a rotation of axes, then div V

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Page 5: RAM PRAKASH/Vector Analysis Page 1 - WordPress.com · RAM PRAKASH/Vector Analysis Page 5 If V(x, y, z) is vector function invariant with respect to a rotation of axes, then div V

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If V(x, y, z) is vector function invariant with respect to a rotation of axes, then div V is a scalar

invariant under this transformation.

Page 6: RAM PRAKASH/Vector Analysis Page 1 - WordPress.com · RAM PRAKASH/Vector Analysis Page 5 If V(x, y, z) is vector function invariant with respect to a rotation of axes, then div V

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Page 7: RAM PRAKASH/Vector Analysis Page 1 - WordPress.com · RAM PRAKASH/Vector Analysis Page 5 If V(x, y, z) is vector function invariant with respect to a rotation of axes, then div V

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Page 8: RAM PRAKASH/Vector Analysis Page 1 - WordPress.com · RAM PRAKASH/Vector Analysis Page 5 If V(x, y, z) is vector function invariant with respect to a rotation of axes, then div V

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Page 9: RAM PRAKASH/Vector Analysis Page 1 - WordPress.com · RAM PRAKASH/Vector Analysis Page 5 If V(x, y, z) is vector function invariant with respect to a rotation of axes, then div V

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Page 10: RAM PRAKASH/Vector Analysis Page 1 - WordPress.com · RAM PRAKASH/Vector Analysis Page 5 If V(x, y, z) is vector function invariant with respect to a rotation of axes, then div V

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