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vodomira [7]
3 years ago
9

What is the surface area of this right rectangular prism? Enter your answer in the box. in² A rectangular prism with a length of

3 inches, a width of 1 inch, and a height of 2 inches.
Mathematics
1 answer:
Cerrena [4.2K]3 years ago
3 0

Answer:

Surface Area of Rectangular Prism is  22 in^2

Step-by-step explanation:

Given: Dimensions of Rectangular prism are Length = 3 inches, width = 1 inch and height = 2 inches.

To find: Surface Area of Rectangular Prism

Formula Used for Surface Area of Rectangualr Prism

= 2 × ( Lenght × Width + Width × Height + Height × Length )

⇒ Surface Area = 2 × ( 3 × 1 + 1 × 2 + 2 × 3 )

                          = 2 × ( 3 + 2 + 6 )

                          = 2 × ( 11 )

                          = 22 in^2

Therefore, Surface Area of Rectangular Prism is  22 in^2

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4 0
3 years ago
PLEASE HELP
Sholpan [36]
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2) Similarly, we have that the equation is x=3y^2 \\  \frac{1}{4p} =3. Thus, p=1/12. In this case, the parabola opens along the x-axis and the focus is at (1/12, 0). Also, the directrix is at x=-1/12. Hence the correct answer is B.
3) We are given that the parabola has a p of 9. Also, the focus lies along the y-axis, hence the parabola is opening along the y-axis. Finally, the focus is on the positive half, so the parabola is opening upwards. The equation for this case is y=y=\frac{1}{4p} x^2= \frac{1}{36 } x^2.
4) Similarly as above. The directrix is superfluous, we only need the p-value. THe same comments about the parabola apply and if we substitute p=8 in the formula: y= \frac{1}{4p} x^2 we get y=\frac{1}{32} x^2.
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7 0
3 years ago
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Consumer products are required by law to contain at least as much as the amount printed on the package. For example, a bag of po
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Answer:

The average bag weight must be used to achieve at least 99 percent of the bags having 10 or more ounces in the bag=9.802

Step-by-step explanation:

We are given that

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We know that

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Using the value of z

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\mu=10-0.99\times 0.2

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Aleksandr [31]

Answer:

I' would say A but C could be a possibility.

Step-by-step explanation:

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