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Question 97
Find dsdt if s=ln[t2(t9−5) ]\frac { d s } { d t } \text { if } s = \ln \left[ t ^ { 2 } \left( t ^ { 9 } - 5 \right) \right]dtds if s=ln[t2(t9−5) ] .
A) 9t2−5t(t9−5) \frac { 9 t ^ { 2 } - 5 } { t \left( t ^ { 9 } - 5 \right) }t(t9−5) 9t2−5 B) 2t9+9t8−2t(t9−5) \frac { 2 t ^ { 9 } + 9 t ^ { 8 } - 2 } { t \left( t ^ { 9 } - 5 \right) }t(t9−5) 2t9+9t8−2 C) 11t8−2t(t9−5) \frac { 11 t ^ { 8 } - 2 } { t \left( t ^ { 9 } - 5 \right) }t(t9−5) 11t8−2 D) 11t9−10t(t9−5) \frac { 11 t ^ { 9 } - 10 } { t \left( t ^ { 9 } - 5 \right) }t(t9−5) 11t9−10 E) 2t9+9t8−10t(t9−5) \frac { 2 t ^ { 9 } + 9 t ^ { 8 } - 10 } { t \left( t ^ { 9 } - 5 \right) }t(t9−5) 2t9+9t8−10
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Q93: Find the derivative of the function
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Q96: Find Q98: Find Q99: Find the derivative of the functionQ100: Use a change-of-base formula to rewriteQ101: The effective yield is the annualQ102: Locate any relative extrema and inflection
Q98: Find Q99: Find the derivative of the functionQ100: Use a change-of-base formula to rewriteQ101: The effective yield is the annualQ102: Locate any relative extrema and inflection
Q99: Find the derivative of the function
Q100: Use a change-of-base formula to rewrite
Q101: The effective yield is the annual
Q102: Locate any relative extrema and inflection
Unlock this Answer For Free Now!
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