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For problem #9 in chapter 5, I think there is currently a missing partial with respect to v when computing dq/dv. Essentially, I believe this should be
I think you are comparing two different approaches. I believe you are expecting, ag/az to be equal to p'(x, t(e,v)) / p(x, t(e,v)) - q'(t(e,v),v) / q(t(e,v), v) (which is the t'(e,v) term factored out from the equation in the solution manual). but note these are derivatives wrt v not z, which is different from partial derviatve wrt z where t is a constant. Hence, you will have an intermidate aq/az and ap/az terms.
Hi,
For problem #9 in chapter 5, I think there is currently a missing partial with respect to v when computing dq/dv. Essentially, I believe this should be
dq/dv = aq/az * az/av + aq/av * dv/dv = aq/az * az/av + aq/av
the solution currently does not include this last term aq/av. (Note that "a" was used throughout to denote partial derivative.)
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