O= {-32, -8, -2, -1, 1, 4, 16, 64) N= {1.2.4.8} u- -32, -8, -2, -j, 1, 2, 1002, 8, 1004, 10003, 64) S- 2245, 1000,, B6 1. Write set B in roster notation 2. Write set O in set-builder notation 3. Write the number of subsets of V in binary 4. Write the number of proper subsets of U in hexidecimal 5. Convert each element of S to base-ten (decimal) 6. How many two-way intersections of the sets B. C N·L and Š exist? (e.g. no, ons, etc) 7. If -47
O= {-32, -8, -2, -1, 1, 4, 16, 64) N= {1.2.4.8} u- -32, -8, -2, -j, 1, 2, 1002, 8, 1004, 10003, 64) S- 2245, 1000,, B6 1. Write set B in roster notation 2. Write set O in set-builder notation 3. Write the number of subsets of V in binary 4. Write the number of proper subsets of U in hexidecimal 5. Convert each element of S to base-ten (decimal) 6. How many two-way intersections of the sets B. C N·L and Š exist? (e.g. no, ons, etc) 7. If -47
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Transcribed Image Text:O= {-32, -8, -2, -1, 1, 4, 16, 64)
N= {1.2.4.8}
u- -32, -8, -2, -j, 1, 2, 1002, 8, 1004, 10003, 64)
S- 2245, 1000,, B6
1. Write set B in roster notation
2. Write set O in set-builder notation
3. Write the number of subsets of V in binary
4. Write the number of proper subsets of U in hexidecimal
5. Convert each element of S to base-ten (decimal)
6. How many two-way intersections of the sets B. C N·L and Š exist? (e.g. no, ons, etc)
7. If -47<x 71 and xE Z, What is p(x E 0)?
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