Chapter 14: Problem 18
What is the greatest distance between two vertices of a rectangular solid with a height of \(5,\) a length of \(12,\) and a volume of \(780 ?\) a. 12 b. \(12 \sqrt{2}\) c. 13 d. \(13 \sqrt{2}\) e. \(13 \sqrt{3}\)
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Chapter 14: Problem 18
What is the greatest distance between two vertices of a rectangular solid with a height of \(5,\) a length of \(12,\) and a volume of \(780 ?\) a. 12 b. \(12 \sqrt{2}\) c. 13 d. \(13 \sqrt{2}\) e. \(13 \sqrt{3}\)
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If three boys and three girls sit in a row on a park bench, and no boy can sit on either end of the bench, how many arrangements of the children on the bench are possible? a. 46,656 b. 38,880 c. 1,256 d. 144 e. 38
The test scores for a class have a normal distribution, a mean of \(50,\) and a standard deviation of 4. Quantity \(\mathbf{A}\) Percentage of scores at or above 58 Quantity \(\mathbf{B}\) Percentage of scores at or below 42 a. Quantity A is greater. b. Quantity \(\mathrm{B}\) is greater. c. The two quantities are equal. d. The relationship cannot be determined from the information given.
If \(x, y,\) and \(z\) are consecutive odd integers where \(x
Quantity \(\mathbf{A}\) The greatest odd factor of 78 Quantity \(\mathbf{B}\) The greatest prime factor of 78 a. Quantity A is greater. b. Quantity B is greater c. The two quantities are equal. d. The relationship cannot be determined from the information given.
\(k>0\) \(l>1\) Quantity A \(\frac{1}{\frac{1}{k}+\frac{1}{l}}\) Quantity B \(\frac{k l}{\frac{1}{k}+\frac{1}{l}}\) a. Quantity A is greater. b. Quantity B is greater. c. The two quantities are equal. d. The relationship cannot be determined from the information given.
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