(a) State the definition of the 'usual' differential of a function F(x). (b) Use the relation F(x + dx) – F(x) 2 dF(x) it to compute e0.1 and In 0.9 (without a calculator). Then compute e0.1 and In 0.9 using a calculator and compare the results.

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6. (a) State the definition of the 'usual' differential of a function F(x).
(b) Use the relation F(x + dx) – F(x) 2 dF(x) it to compute e0.1 and ln 0.9
(without a calculator).
Then compute e0.1 and In 0.9 using a calculator and compare the results.
Transcribed Image Text:6. (a) State the definition of the 'usual' differential of a function F(x). (b) Use the relation F(x + dx) – F(x) 2 dF(x) it to compute e0.1 and ln 0.9 (without a calculator). Then compute e0.1 and In 0.9 using a calculator and compare the results.
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