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How to use it?
How do you in partial fractions?
:
(c^4)^5*c^8/(c^7)^4
x^3/(x^2-1)
(x+1)/(x^2+1)
((3*x+2)^4+12*(3*x+2)^3*(x-1))/(3*x-2)^4-12*(3*x+2)^4*(x-1)/(3*x-2)^5
Factor polynomial
:
z^3-5*z^2+9*z-45
z^3-3*z^2+7*z-5
z^3-1
z^2*x^2-9*y*y^2/100
Least common denominator
:
y/(3-y)+(3+y)/y
((x/(y-x))^-2)*((x^2+x*y)/(((x+y)^2)+4*x*y))
(x/y^2+x*y+x-y/x^2-x*y)
(x/x^2-4+x/(x-2)^2)*(2-x)^2/2*x-x/x+2
Factor squared
:
y^4-y^2-13
-y^4-7*y^2-7
-y^4+8*y^2-9
y^4+7*y^2-8
Derivative of
:
x^2/(x+6)
Identical expressions
x^ two /(x+ six)
x squared divide by (x plus 6)
x to the power of two divide by (x plus six)
x2/(x+6)
x2/x+6
x²/(x+6)
x to the power of 2/(x+6)
x^2/x+6
x^2 divide by (x+6)
Similar expressions
x^2/(x-6)
Expression simplification
/
Fraction Decomposition into the simple
/
x^2/(x+6)
How do you x^2/(x+6) in partial fractions?
An expression to simplify:
Decompose fraction
The solution
You have entered
[src]
2 x ----- x + 6
$$\frac{x^{2}}{x + 6}$$
x^2/(x + 6)
Fraction decomposition
[src]
-6 + x + 36/(6 + x)
$$x - 6 + \frac{36}{x + 6}$$
36 -6 + x + ----- 6 + x
Numerical answer
[src]
x^2/(6.0 + x)
x^2/(6.0 + x)
Common denominator
[src]
36 -6 + x + ----- 6 + x
$$x - 6 + \frac{36}{x + 6}$$
-6 + x + 36/(6 + x)