# Recent questions tagged fractions

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How do I simplify algebraic fractions?
How do I simplify algebraic fractions?How do I simplify algebraic fractions? ...
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Differentiate $k(t)=\frac{(t+2)^{3}}{\sqrt{t}}$ with respect to $t$
Differentiate $k(t)=\frac{(t+2)^{3}}{\sqrt{t}}$ with respect to $t$Differentiate $k(t)=\dfrac{(t+2)^{3}}{\sqrt{t}}$ with respect to $t$ ...
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Differentiate $g(t)=4(t+1)^{2}(t-3)$ with respect to $t$
Differentiate $g(t)=4(t+1)^{2}(t-3)$ with respect to $t$Differentiate &nbsp;$g(t)=4(t+1)^{2}(t-3)$ with respect to $t$ ...
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Differentiate the function $y=3 x^{5}$
Differentiate the function $y=3 x^{5}$Differentiate the function $y=3 x^{5}$ ...
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Which of the following is the appropriate partial fraction decomposition of $\frac{t^{4}+9}{t^{2}\left(t^{2}+9\right)}$ :
Which of the following is the appropriate partial fraction decomposition of $\frac{t^{4}+9}{t^{2}\left(t^{2}+9\right)}$ :Which of the following is the appropriate partial fraction decomposition of $\frac{t^{4}+9}{t^{2}\left(t^{2}+9\right)}$ : &nbsp; (A) $\frac{t^{4}+9} ... close Notice: Undefined index: avatar in /home/customer/www/mathsgee.com/public_html/qa-theme/AVEN/qa-theme.php on line 993 Find the partial fraction decomposition of$\dfrac{1}{z(1+z)}$. 0 answers 7 views Find the partial fraction decomposition of$\dfrac{1}{z(1+z)}$.Find the partial fraction decomposition of$\dfrac{1}{z(1+z)}$. ... close Notice: Undefined index: avatar in /home/customer/www/mathsgee.com/public_html/qa-theme/AVEN/qa-theme.php on line 993 A partial fraction decomposition of$\frac{x^{3}+3 x^{2}+4}{x\left(x^{2}+1\right)^{2}(x-1)}$is of the form 0 answers 7 views A partial fraction decomposition of$\frac{x^{3}+3 x^{2}+4}{x\left(x^{2}+1\right)^{2}(x-1)}$is of the formA partial fraction decomposition of$\frac{x^{3}+3 x^{2}+4}{x\left(x^{2}+1\right)^{2}(x-1)}$is of the form A.$\quad \frac{A}{x^{2}+1}+\frac{B}{\lef ...
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Split $\frac{x+3}{(x-2)(x+4)}$ into 2 partial fractions, one with denominator $(x-2)$ and the other with denominator $(x+4)$.
Split $\frac{x+3}{(x-2)(x+4)}$ into 2 partial fractions, one with denominator $(x-2)$ and the other with denominator $(x+4)$.Split \ \frac{x+3}{(x-2)(x+4)} \ into 2 partial fractions, one with denominator $(x-2)$ and the other with denominator $(x+4)$. ...
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Express in partial fractions: $\frac{x}{(x-1)\left(x^{2}+1\right)^{2}}$
Express in partial fractions: $\frac{x}{(x-1)\left(x^{2}+1\right)^{2}}$Express in partial fractions: \ \frac{x}{(x-1)\left(x^{2}+1\right)^{2}} \ ...
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Write down the partial fractions of $\dfrac{x^{3}+3 x+1}{x^{2}-x-2}$
Write down the partial fractions of $\dfrac{x^{3}+3 x+1}{x^{2}-x-2}$Write down the partial fractions of $\dfrac{x^{3}+3 x+1}{x^{2}-x-2}$ ...
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Write down the partial fractions of $\dfrac{x^{4}+1}{\left(x^{2}-2 x+3\right)^{2}}$
Write down the partial fractions of $\dfrac{x^{4}+1}{\left(x^{2}-2 x+3\right)^{2}}$Write down the partial fractions of $\dfrac{x^{4}+1}{\left(x^{2}-2 x+3\right)^{2}}$ ...
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Find partial fractions for the following rational functions, evaluating all constants:
Find partial fractions for the following rational functions, evaluating all constants:Find partial fractions for the following rational functions, evaluating all constants: (a) $\frac{2 x^{3}}{x^{2}-1}$ (c) $\frac{x^{4}+x^{3}+x+1}{x^ ... close Notice: Undefined index: avatar in /home/customer/www/mathsgee.com/public_html/qa-theme/AVEN/qa-theme.php on line 993 Express \(\cos ^{2} \theta$ in terms of $\cos 2 \theta$
Express $\cos ^{2} \theta$ in terms of $\cos 2 \theta$Express $\cos ^{2} \theta$ in terms of $\cos 2 \theta$ ...
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Find an expression for $\sin ^{4} \theta$ in terms of cos of multiples of $\theta$
Find an expression for $\sin ^{4} \theta$ in terms of cos of multiples of $\theta$Find an expression for $\sin ^{4} \theta$ in terms of cos of multiples of $\theta$ ...
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Find $\tan \theta$ if $9 \sin ^{2} \theta-\cos ^{2} \theta=7$. (Divide through by $\left.\cos ^{2} \theta .\right)$
Find $\tan \theta$ if $9 \sin ^{2} \theta-\cos ^{2} \theta=7$. (Divide through by $\left.\cos ^{2} \theta .\right)$Find $\tan \theta$ if $9 \sin ^{2} \theta-\cos ^{2} \theta=7$. (Divide through by $\left.\cos ^{2} \theta .\right)$ ...
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If $m=\sec \theta+p \tan \theta$ and $n=p \sec \theta+\tan \theta$, prove that $m^{2}-n^{2}=1-p^{2}$
If $m=\sec \theta+p \tan \theta$ and $n=p \sec \theta+\tan \theta$, prove that $m^{2}-n^{2}=1-p^{2}$If $m=\sec \theta+p \tan \theta$ and $n=p \sec \theta+\tan \theta$, prove that $m^{2}-n^{2}=1-p^{2}$ ...
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Prove that $\cos 3 \theta=4 \cos ^{3} \theta-3 \cos \theta .$ (Hint: $\left.3 \theta=2 \theta+\theta .\right)$ Derive a similar formula for $\sin 3 \theta$ in terms of $\sin \theta$.Prove that $\cos 3 \theta=4 \cos ^{3} \theta-3 \cos \theta .$ (Hint: $\left.3 \theta=2 \theta+\theta .\right)$ Derive a similar formula for $\sin ... close Notice: Undefined index: avatar in /home/customer/www/mathsgee.com/public_html/qa-theme/AVEN/qa-theme.php on line 993 Express \(\cos ^{4} \theta$ and $\sin ^{4} \theta \cos ^{2} \theta$ in terms of cosines of multiples of $\theta$
Express $\cos ^{4} \theta$ and $\sin ^{4} \theta \cos ^{2} \theta$ in terms of cosines of multiples of $\theta$Express $\cos ^{4} \theta$ and $\sin ^{4} \theta \cos ^{2} \theta$ in terms of cosines of multiples of $\theta$ ...
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Prove that $\dfrac{\tan 3 A}{\tan A}=\dfrac{2 \cos 2 A+1}{2 \cos 2 A-1}$
Prove that $\dfrac{\tan 3 A}{\tan A}=\dfrac{2 \cos 2 A+1}{2 \cos 2 A-1}$Prove that $\dfrac{\tan 3 A}{\tan A}=\dfrac{2 \cos 2 A+1}{2 \cos 2 A-1}$ ...
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Find the general equation of the trigonometric equation $\cos 4 x=\sin 2 x$
Find the general equation of the trigonometric equation $\cos 4 x=\sin 2 x$ Find the general equation of the trigonometric equation \\cos 4 x=\sin 2 x\ Hint:&nbsp;$\sin 2 x=\cos \left(\frac{\pi}{2}-2 x\right)$ ...
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Find the general equation of the trigonometric equation $\sin ^{2} 3 x-\sin ^{2} x=\sin ^{2} 2 x$
Find the general equation of the trigonometric equation $\sin ^{2} 3 x-\sin ^{2} x=\sin ^{2} 2 x$Find the general equation of the trigonometric equation $\sin ^{2} 3 x-\sin ^{2} x=\sin ^{2} 2 x$ ...
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Find the general equation of the trigonometric equations using a calculator (in radian mode) to find the solutions to 4 decimal places.
Find the general equation of the trigonometric equations using a calculator (in radian mode) to find the solutions to 4 decimal places. Find the general equation of the trigonometric equations using&nbsp;a calculator (in radian mode) to find the solutions to 4 decimal places. ...
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Simplify $\frac{1}{7} \times \frac{9}{16} \times \frac{16}{9} \times \frac{16}{9} \times \frac{9}{16}=$
Simplify $\frac{1}{7} \times \frac{9}{16} \times \frac{16}{9} \times \frac{16}{9} \times \frac{9}{16}=$Simplify $\frac{1}{7} \times \frac{9}{16} \times \frac{16}{9} \times \frac{16}{9} \times \frac{9}{16}=$ ...
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Simplify $\frac{\sqrt{8+8^{2}+8^{3}}}{\sqrt{\frac{72}{8}}}$
Simplify $\frac{\sqrt{8+8^{2}+8^{3}}}{\sqrt{\frac{72}{8}}}$Simplify $\dfrac{\sqrt{8+8^{2}+8^{3}}}{\sqrt{\dfrac{72}{8}}}$ ...