Exam 2: Sets

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Determine whether the number used is a cardinal or an ordinal number. -The novel has 594 pages.

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If the statement is true for all sets C and D, write ʺtrue.ʺ If it is not true for all sets C and D, write ʺfalse.ʺ Assume that C C \not = \varnothing ,and CU C \subset U . - A\varnothing \subseteq A

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Find n(A) for the set. -A = {x | x is a number on a clock face}

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Identify the set as finite or infinite - {1,12,14,18,}\left\{ 1 , \frac { 1 } { 2 } , \frac { 1 } { 4 } , \frac { 1 } { 8 } , \ldots \right\}

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If the statement is true for all sets C and D, write ʺtrue.ʺ If it is not true for all sets C and D, write ʺfalse.ʺ Assume that C C \not = \varnothing ,and CU C \subset U . - \varnothing \subseteq \varnothing

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Identify the set as finite or infinite -The set of stars in the Milky Way Galaxy at 12:00 A.M. on January 1, 2012

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Identify the set as finite or infinite -The set of even whole numbers less than 100

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Solve the problem. -Use the following table, which shows the average price for a new beverage that is served at a Coffee chain. Let the 10 selected regions represent the universal set. Use the list to represent the set In roster form. Region Price \ 7.76 \ 6.53 \ 6.46 \ 5.87 \ 4.12 \ 3.56 \ 3.03 \ 2.60 \ 2.38 \ 1.75 The set of regions in which the average price for the new beverage is less than $3.50.

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Solve the problem. -Use the following table, which shows the average price for a new beverage that is served at a Coffee chain. Let the 10 selected regions represent the universal set. Use the list to represent the set In roster form. Region Price \ 7.24 \ 6.68 \ 6.01 \ 5.82 \ 4.66 \ 3.64 \ 3.37 \ 2.58 \ 2.31 \ 1.90 {x|x is a region in which the average price of the new beverage is at most $6.00}

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Identify the set as finite or infinite -The set of multiples of 5 between 0 and 1000

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Answer the question. -Joe goes to a mexican restaurant and order nachos. He can have just cheese or add any of the Following: steak, green peppers, salsa or refried beans. How many different variations of nachos Are possible?

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Use ,, \subseteq, \nsubseteq, \subset , or both \subset and \subseteq to make a true statement. - {0} \{0\} _____ \varnothing

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Let A = {1, 3, 5, 7} B = {5, 6, 7, 8} C = {5, 8} D = {2, 5, 8} U = {1, 2, 3, 4, 5, 6, 7, 8}. Determine whether the statement is true or false. -{0} ⊆ U

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Write a description of the set. -E = {x x ∈ I and -3 < x ≤ 5}

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Determine whether the sets are equal, equivalent, both, or neither. -{brake} and {break}

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Write the set in set-builder notation. -The set of all cars owned by students

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Determine whether the sets are equal, equivalent, both, or neither. -{x | x is a whole number} and {x | x is an integer}

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Determine whether the sets are equal, equivalent, both, or neither. -{2, 41, 14} and {41, 14, 2}

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Write a description of the set. -S = {4, 8, 12, 16, 20, . . .}

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If the statement is true for all sets C and D, write ʺtrue.ʺ If it is not true for all sets C and D, write ʺfalse.ʺ Assume that C C \not = \varnothing ,and CU C \subset U . - U\mathrm { U } \subset \varnothing

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