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Popular Functions & Graphing Problems
domain of f(x)=-2(x+3)^2-1
domain\:f(x)=-2(x+3)^{2}-1
inverse of f(x)=log_{6}(2x)+log_{6}(3)
inverse\:f(x)=\log_{6}(2x)+\log_{6}(3)
inverse of f(x)= x/5-3/5
inverse\:f(x)=\frac{x}{5}-\frac{3}{5}
parity f(x)=-2x^2
parity\:f(x)=-2x^{2}
m=4
m=4
inverse of f(x)= 2/(3x+2)
inverse\:f(x)=\frac{2}{3x+2}
periodicity of y=sec(-pi/4)
periodicity\:y=\sec(-\frac{π}{4})
f(x)=x^2+3x+2
f(x)=x^{2}+3x+2
inverse of arcsec(1/x)
inverse\:\arcsec(\frac{1}{x})
extreme f(x)= x/(x-3)
extreme\:f(x)=\frac{x}{x-3}
inverse of-5x+3
inverse\:-5x+3
simplify (-15.8)(-4.11)
simplify\:(-15.8)(-4.11)
inverse of y=(e^x+e^{-x})/2
inverse\:y=\frac{e^{x}+e^{-x}}{2}
asymptotes of f(x)=(x^2-8x+15)/(x^2-1)
asymptotes\:f(x)=\frac{x^{2}-8x+15}{x^{2}-1}
inverse of f(x)=(4x-5)/3
inverse\:f(x)=\frac{4x-5}{3}
amplitude of sin(8x)
amplitude\:\sin(8x)
line (-4,1),(3,1)
line\:(-4,1),(3,1)
monotone x^2+2x+1
monotone\:x^{2}+2x+1
inverse of \sqrt[3]{x}-8
inverse\:\sqrt[3]{x}-8
line 5x+2y-10=0
line\:5x+2y-10=0
domain of f(x)=log_{2}(1-|2-x|)
domain\:f(x)=\log_{2}(1-\left|2-x\right|)
domain of f(x)= x/(ln(x))
domain\:f(x)=\frac{x}{\ln(x)}
inverse of f(x)=3+(10+x)^{1/2}
inverse\:f(x)=3+(10+x)^{\frac{1}{2}}
slope of y= 1/3 x
slope\:y=\frac{1}{3}x
midpoint (-21,-14),(13,16)
midpoint\:(-21,-14),(13,16)
extreme f(x)=x^4+4x^3
extreme\:f(x)=x^{4}+4x^{3}
intercepts of x^2+4x+5
intercepts\:x^{2}+4x+5
domain of f(x)=x^3+2x^2
domain\:f(x)=x^{3}+2x^{2}
domain of f(x)= x/(sqrt(x^2+x-6))
domain\:f(x)=\frac{x}{\sqrt{x^{2}+x-6}}
asymptotes of 5/(x^2-5x)
asymptotes\:\frac{5}{x^{2}-5x}
inverse of f(x)= 2/3 x-1
inverse\:f(x)=\frac{2}{3}x-1
domain of e^{x^2-6x+8}
domain\:e^{x^{2}-6x+8}
line m=-5/2 ,(1,3)
line\:m=-\frac{5}{2},(1,3)
parity X^3
parity\:X^{3}
domain of f(x)=sqrt(21-7x)
domain\:f(x)=\sqrt{21-7x}
m=-1/5 p=(-8-6)
m=-\frac{1}{5}p=(-8-6)
inflection x/(9x^2-81)
inflection\:\frac{x}{9x^{2}-81}
domain of f(x)=5sqrt(x^2-9)
domain\:f(x)=5\sqrt{x^{2}-9}
intercepts of f(x)=4-(8-sqrt(x+4))^2
intercepts\:f(x)=4-(8-\sqrt{x+4})^{2}
simplify (6.5)(-2.6)
simplify\:(6.5)(-2.6)
slope of 5x-2y+4
slope\:5x-2y+4
inverse of f(x)=3(x-2)
inverse\:f(x)=3(x-2)
inverse of f(x)=-4^{(x-3)}+3
inverse\:f(x)=-4^{(x-3)}+3
slope of-7x-5y=5
slope\:-7x-5y=5
intercepts of f(x)=2x-1
intercepts\:f(x)=2x-1
domain of f(x)= 3/(x+4)+x/(x+4)
domain\:f(x)=\frac{3}{x+4}+\frac{x}{x+4}
domain of x^3-3x^2
domain\:x^{3}-3x^{2}
domain of f(x)=sqrt(x^2-3x+2)
domain\:f(x)=\sqrt{x^{2}-3x+2}
domain of x^{2/3}
domain\:x^{\frac{2}{3}}
domain of (X^2+6)/(X^2-2X+15)
domain\:\frac{X^{2}+6}{X^{2}-2X+15}
inverse of 3log_{2}(x)
inverse\:3\log_{2}(x)
domain of f(x)=-x^2+3
domain\:f(x)=-x^{2}+3
f(x)=e^{1/x}
f(x)=e^{\frac{1}{x}}
range of-3sqrt(2x-4)+1
range\:-3\sqrt{2x-4}+1
domain of f(x)=sqrt(x^2+4x-21)
domain\:f(x)=\sqrt{x^{2}+4x-21}
domain of f(x)=(x-5)/(2x+4)
domain\:f(x)=\frac{x-5}{2x+4}
domain of f(x)=sqrt(x+20)-1
domain\:f(x)=\sqrt{x+20}-1
parity arccsc(1/4)x
parity\:\arccsc(\frac{1}{4})x
inverse of f(x)=(4+\sqrt[3]{4x})/2
inverse\:f(x)=\frac{4+\sqrt[3]{4x}}{2}
domain of f(x)=(2(x+2))/x
domain\:f(x)=\frac{2(x+2)}{x}
inverse of f(x)= x/5+1
inverse\:f(x)=\frac{x}{5}+1
inverse of f(x)=((x+15))/(x-13)
inverse\:f(x)=\frac{(x+15)}{x-13}
slope ofintercept x+2y=0
slopeintercept\:x+2y=0
extreme x^2-4x+7
extreme\:x^{2}-4x+7
inflection f(x)=-x^3+27x-54
inflection\:f(x)=-x^{3}+27x-54
slope ofintercept x-y=5
slopeintercept\:x-y=5
slope of 6x-9
slope\:6x-9
domain of x/(x^2+49)
domain\:\frac{x}{x^{2}+49}
slope of y=5x
slope\:y=5x
line 4x-y-11=0
line\:4x-y-11=0
domain of f(x)= 5/(t^2-1)
domain\:f(x)=\frac{5}{t^{2}-1}
inverse of f(x)=e^{x/(x-1)}
inverse\:f(x)=e^{\frac{x}{x-1}}
line m=-1/3 ,(-2,4)
line\:m=-\frac{1}{3},(-2,4)
inflection (1+x)/(1+x^2)
inflection\:\frac{1+x}{1+x^{2}}
parity (x^2+2x+3)/(x^3+x)
parity\:\frac{x^{2}+2x+3}{x^{3}+x}
range of f(x)=(x+9)/(x^2+5)
range\:f(x)=\frac{x+9}{x^{2}+5}
domain of log_{0.5}(x)
domain\:\log_{0.5}(x)
range of f(x)=(-x)/(x-7)
range\:f(x)=\frac{-x}{x-7}
domain of f(x)=\sqrt[3]{x^2-5x+6}
domain\:f(x)=\sqrt[3]{x^{2}-5x+6}
range of f(x)=sqrt((x-2))
range\:f(x)=\sqrt{(x-2)}
domain of f(x)=sqrt(1/3 (x-1))
domain\:f(x)=\sqrt{\frac{1}{3}(x-1)}
domain of f(x)=((-58x+265)/(-16x+64))
domain\:f(x)=(\frac{-58x+265}{-16x+64})
inflection f(x)= 4/(x^2+1)
inflection\:f(x)=\frac{4}{x^{2}+1}
domain of (x-1)/(x^2)
domain\:\frac{x-1}{x^{2}}
domain of-16t^2+256
domain\:-16t^{2}+256
asymptotes of (3x^2-9x+12)/(x^2-10x+25)
asymptotes\:\frac{3x^{2}-9x+12}{x^{2}-10x+25}
inverse of f(x)=\sqrt[5]{(x+5)/9}
inverse\:f(x)=\sqrt[5]{\frac{x+5}{9}}
critical f(x)=x^x
critical\:f(x)=x^{x}
domain of 1/(7x+7)
domain\:\frac{1}{7x+7}
slope ofintercept y=-x-10,(-6,-4)
slopeintercept\:y=-x-10,(-6,-4)
range of 1/(sqrt(81-x))
range\:\frac{1}{\sqrt{81-x}}
extreme f(x)=x^3(x-8)
extreme\:f(x)=x^{3}(x-8)
inverse of f(x)=(2x+3)/(3x-1)
inverse\:f(x)=\frac{2x+3}{3x-1}
domain of f(x)=x^2-2x-9
domain\:f(x)=x^{2}-2x-9
domain of f(x)=(x-1)/(2x-1)
domain\:f(x)=\frac{x-1}{2x-1}
domain of f(x)=(x+3)^2
domain\:f(x)=(x+3)^{2}
domain of f(x)=(x+4)/(5-3x)
domain\:f(x)=\frac{x+4}{5-3x}
extreme f(x)=(4-x)*e^{2x}
extreme\:f(x)=(4-x)\cdot\:e^{2x}
domain of f(x)= 9/(x+3)
domain\:f(x)=\frac{9}{x+3}
slope of y=-1/2 x+4
slope\:y=-\frac{1}{2}x+4
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