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Problem 14

Consider the set of bivariate data shown in the table, and compute the indicated sums. $$\begin{array}{cccccccc} \hline x & 0 & 1 & 2 & 3 & 4 & 5 & 6 \\ y & 5 & 16.5 & 20 & 21.2 & 21.8 & 22.1 & 22.4 \\ \hline \end{array}$$ $$\Sigma x$$

Problem 14

Rewrite the set using set-builder notation. $$D=\\{12,13,14,15,16\\}$$

Problem 14

Let \(U=\\{x | x \text { is a whole number and } 1 \leq x \leq 15\\}\) \(A=\\{1,2,3,4,5\\}, B=\\{2,4,6,8,10\\},\) and \(C=\\{11,12,13,14,15\\} .\) Determine the cardinality of the indicated sets. $$n(C)$$

Problem 14

Use the Multiplication Principle to determine the total number of choices that can be made.License plates in a certain state have three numbers followed by three letters. How many different license plates can be made?

Problem 15

Evaluate the given factorial.$$0 !$$

Problem 15

Let \(U=\\{x | x \text { is a whole number and } 1 \leq x \leq 15\\}\) \(A=\\{1,2,3,4,5\\}, B=\\{2,4,6,8,10\\},\) and \(C=\\{11,12,13,14,15\\} .\) Determine the cardinality of the indicated sets. $$n(A \cap B)$$

Problem 15

Consider the set of bivariate data shown in the table, and compute the indicated sums. $$\begin{array}{cccccccc} \hline x & 0 & 1 & 2 & 3 & 4 & 5 & 6 \\ y & 5 & 16.5 & 20 & 21.2 & 21.8 & 22.1 & 22.4 \\ \hline \end{array}$$ $$(\Sigma x)^{2}$$

Problem 15

Rewrite the set using set-builder notation. $$E=\\{-2,-1,0,1,2\\}$$

Problem 16

Rewrite the set using set-builder notation. $$F=\\{-1,0,1,2,3,4,5\\}$$

Problem 16

Consider the set of bivariate data shown in the table, and compute the indicated sums. $$\begin{array}{cccccccc} \hline x & 0 & 1 & 2 & 3 & 4 & 5 & 6 \\ y & 5 & 16.5 & 20 & 21.2 & 21.8 & 22.1 & 22.4 \\ \hline \end{array}$$ $$\Sigma y$$

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