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$\\displaystyle{f(x)=\\var{a}}$ 

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$\\displaystyle{f'(x)}$ = [[0]]

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$\\displaystyle{f(x)=x^\\var{n}}$

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$\\displaystyle{f'(x)}$ = [[0]]

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$\\displaystyle{f(x)=\\simplify{{b}x^{n+1}+{c}x^{n-1}+{a-2}}}$

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$\\displaystyle{f'(x)}$ = [[0]]

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$\\displaystyle{f(x)=\\frac{1}{x^\\var{m}}}$

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$\\displaystyle{f'(x)}$ = [[0]]

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$\\displaystyle{f(x)=\\sqrt(x)}$

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$\\displaystyle{f'(x)}$ = [[0]]

\n

\n

Hint: For å skrive inn kvadratroten av x kan du taste sqrt(x)

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Deriver funksjonene

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Deriver funksjonene

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$\\displaystyle{f(x)=e^{\\var{k}x}}$

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$\\displaystyle{f'(x)}$ = [[0]]

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$\\displaystyle{f(x)=\\var{a}^x}$

\n

$\\displaystyle{f'(x)}$ = [[0]]

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$\\displaystyle{f(x)=\\ln x}$

\n

$\\displaystyle{f'(x)}$ = [[0]]

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Deriver funksjonene

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$\\displaystyle{f(x)=\\var{a}\\sin x}$

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$\\displaystyle{f'(x)}$ = [[0]]

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$\\displaystyle{f(x)=\\var{b}\\cos x}$

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$\\displaystyle{f'(x)}$ = [[0]]

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$\\displaystyle{f(x)=\\var{c}\\tan x}$

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$\\displaystyle{f'(x)}$ = [[0]]

\n

\n

NB! For å skrive $\\displaystyle \\sin^2x$, $\\displaystyle \\cos^2x$ eller $\\displaystyle \\tan^2x$ må dere taste inn sin(x)^2 , cos(x)^2, eller tan(x)^2

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