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    Calculus Study Set 2
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    Exam 14: Functions of Several Variables and Partial Differentiation
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    A Box Is to Be Constructed Out of 16 Square
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A Box Is to Be Constructed Out of 16 Square

Question 53

Question 53

Multiple Choice

A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box.


A) A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft, A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft, A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft
B) A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft, A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft, A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft
C) A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft, A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft, A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft
D) A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft, A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft, A box is to be constructed out of 16 square feet of material. Suppose the bottom of the box must be reinforced by doubling up the material (essentially, there are two bottoms of the box) . Find the dimensions l, w, and h that maximizes the volume of the box. A)    ft,   ft,   ft B)    ft,   ft,   ft C)    ft,   ft,   ft D)    ft,   ft,   ft ft

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