How do you write #y = 3(x+1)^2 - 27# in standard form?

Answer 1

Really, you could just expand it out.

#(x+1)^2 = (x+1)(x+1) = x^2 + 2x + 1#
#y = 3(x^2 + 2x + 1) - 27#
#y = 3x^2 + 6x + 3 - 27#
#y = 3x^2 + 6x - 24#
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Answer 2

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( y = 3(x^2 + 2To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2xTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 +To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x +To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

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[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

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[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3xTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

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( y = 3x^2 + 6To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

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( y = 3x^2 + 6x + 3 - 27To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

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( y = 3x^2 + 6x + 3 - 27 )

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[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

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( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3xTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 \To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 +To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ yTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

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( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, theTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6xTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equationTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x -To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation (To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( yTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y =To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 \To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

SoTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(xTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

So, theTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(x+To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

So, the equation in standard form is ( y = 3x^2 + To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(x+1To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

So, the equation in standard form is ( y = 3x^2 + 6To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(x+1)^To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

So, the equation in standard form is ( y = 3x^2 + 6xTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(x+1)^2To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

So, the equation in standard form is ( y = 3x^2 + 6x -To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(x+1)^2 -To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

So, the equation in standard form is ( y = 3x^2 + 6x - To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(x+1)^2 - To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

So, the equation in standard form is ( y = 3x^2 + 6x - 24To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(x+1)^2 - 27To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

So, the equation in standard form is ( y = 3x^2 + 6x - 24 \To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(x+1)^2 - 27 \To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

So, the equation in standard form is ( y = 3x^2 + 6x - 24 ).To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(x+1)^2 - 27 ) inTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

So, the equation in standard form is ( y = 3x^2 + 6x - 24 ).To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(x+1)^2 - 27 ) in standardTo write ( y = 3(x+1)^2 - 27 ) in standard form, expand the expression and simplify:

( y = 3(x^2 + 2x + 1) - 27 )

( y = 3x^2 + 6x + 3 - 27 )

( y = 3x^2 + 6x - 24 )

So, the equation in standard form is ( y = 3x^2 + 6x - 24 ).To write ( y = 3(x+1)^2 - 27 ) in standard form, expand the square, distribute the coefficient, and then combine like terms:

[ y = 3(x^2 + 2x + 1) - 27 ] [ y = 3x^2 + 6x + 3 - 27 ] [ y = 3x^2 + 6x - 24 ]

Thus, the equation ( y = 3(x+1)^2 - 27 ) in standard form is ( y = 3x^2 + 6x - 24 ).

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When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

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