Mister Exam
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Graph of implicit function
Surface defined by equation
Canonical form of a elliptical paraboloid
Canonical form of a double hyperboloid
Canonical form of a imaginary ellipsoid
Canonical form of a degenerate ellipse
Canonical form of a parabola
How to use it?
Canonical form
:
4x^2-3y^2-2xy+z^2+6z+5=0
2y^2−2xy−2xz+2yz+6√3*x−6√3*z−9=0.
x1*x1-4x3*x3-x4*x4-4x1*x2+4x1*x3-6x1*x4-4x3*x4
7x^2+7y^2+40z^2-4xy+20xz+20yz-4x-4y+2z=0
Plot
:
3*cos(x)*sin(y)-sin(x)*cos(y)-4*cos(y)=3*sqrt(3)
x^4*y-x*y^3=-2
x^6+3*x^4*y^2-3*x^4+3*x^2*y^4-x^2*y^3-6*x^2*y^2+3*x^2+y^6-3*y^4+3*y^2-1=0
4x^2-y^2-8x-6y-9=0
Graphing y =
:
(x+3)^3
Derivative of
:
(x+3)^3
Integral of d{x}
:
(x+3)^3
Identical expressions
(x+ three)^ three
(x plus 3) cubed
(x plus three) to the power of three
(x+3)3
x+33
(x+3)³
(x+3) to the power of 3
x+3^3
Similar expressions
(x-3)^3
Canonical form
/
(x+3)^3
(x+3)^3 canonical form
The teacher will be very surprised to see your correct solution 😉
Find the canonical form!
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The solution
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3 (3 + x) = 0
$$\left(x + 3\right)^{3} = 0$$
(x + 3)^3 = 0