385. Divergence theorem computes to zero for a solenoidal function. State True/False. a) True b) False
385. Divergence theorem computes to zero for a solenoidal function. State True/False. a) True b) False
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Answer: a
Explanation: The divergence theorem is given by, ∫∫ F.dS = ∫∫∫ Div (F).dV, for a function
F. If the function is solenoidal, its divergence will be zero. Thus the theorem computes to
zero.
a) True
Answer: a
Explanation: The divergence theorem is given by, ∫∫ F.dS = ∫∫∫ Div (F).dV, for a function
F. If the function is solenoidal, its divergence will be zero. Thus the theorem computes to
zero.
Answer: a
Explanation: The divergence theorem is given by, ∫∫ F.dS = ∫∫∫ Div (F).dV, for a function
F. If the function is solenoidal, its divergence will be zero. Thus the theorem computes to
zero.
Answer: a
Explanation: The divergence theorem is given by, ∫∫ F.dS = ∫∫∫ Div (F).dV, for a function
F. If the function is solenoidal, its divergence will be zero. Thus the theorem computes to
zero.