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Gelneren [198K]
4 years ago
7

Mrs. Pender shows her students 2 sticks measuring 6 inches and 2 sticks measuring 8 inches. She asks the students to arrange the

sticks to make a two-dimensional figure with the greatest possible area. The ways in which Anna and Reggie organize the sticks are shown.
Anna's shape is a kite with a 9.6 inches and a width of 10 inches. Reggie's shape is a rectangle with a base of 8 inches and a height of 6 inches.

Which statement comparing the areas of the figures is true?
Mathematics
2 answers:
zepelin [54]4 years ago
8 0

Answer:

I feeling its Reggie´s because Reggie has a shape with the 8 and 6 inches and Anna has 9.6 and 10 and the teacher gave her 4 sticks 2 6 inches and 2 8 inches.

Alborosie4 years ago
5 0

Answer:

A

Step-by-step explanation:

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3

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The distance of the hiker of a linear function.

The true statement is <em>(d) The y-intercept is (0, 2), and the 2 represents the number of miles  from the car at the start of this time period.</em>

From the graph, we can see that the graph crosses the y-axis at: (0,2)

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3 years ago
Write the polynomial in factored form. <br><br> p(x)=(x+5)(x-___)(x+___)
Rom4ik [11]

Answer:


Step-by-step explanation:

Given : p(x)=x^{3} +6x^{2} -7x-60

Solution :

Part A:

First find the potential roots of p(x) using rational root theorem;

So, \text{Possible roots} =\pm\frac{\text{factors of constant term}}{\text{factors of leading coefficient}}

Since constant term = -60

Leading coefficient = 1

\text{Possible roots} =\pm\frac{\text{factors of 60}}{\text{factors of 1}}

\text{Possible roots} =\pm\frac{1,2,3,4,5,6,10,12,15,20,60}{1}

Thus the possible roots are  \pm1, \pm2, \pm 3, \pm4, \pm5,\pm6, \pm10, \pm12, \pm15, \pm20, \pm60

Thus from the given options the correct answers are -10,-5,3,15

Now For Part B we will use synthetic division

Out of the possible roots we will use the root which gives remainder 0 in synthetic division :

Since we can see in the figure With -5 we are getting 0 remainder.

Refer the attached figure

We have completed the table and have obtained the following resulting coefficients: 1 , 1,−12,0.  All the coefficients except the last one are the coefficients of the quotient, the last coefficient is the remainder.

Thus the quotient is x^{2} +x-12

And remainder is 0 .

So to get the other two factors of the given polynomial we will solve the quotient by middle term splitting

x^{2} +x-12=0

x^{2} +4x-3x-12=0

x(x+4)-3(x+4)=0

(x-3)(x+4)=0

Thus x-3 and x+4 are the other two factors

So , p(x)=(x+5)(x-3)(x+4)





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Answer:

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