Match the function written as a rule to the function written as a subset of the Cartesian product of the domain and codomain. Efla) = 3, f(b) = 1, f(c) = 2, f(d) = 5, f(e)= 4 a ((a,3),(b,1),(c,2),(d,5),(e,4)) Ef(1) = b, f(2) = c, f(3) = a, f(4)= e, f(5)=d b. ((3,a),(1,b),(2,c),(5,d),(4,e)) fla) = 3, f(b) = 1, f(c)=5, f(d) =2, f(e)= 4 c. (a,3),(b,1),(c,5),(d,2),(e,4)} Ef(1) = b, f(2) =Dd, f(3)=a, f(4)= e, f(5) =c d. ((3,a),(1,b),(5,c),(2,d),(4,e)) Efla) = 3, f(b)= 1, f(c)=2, f(d) = 4, f(e) =5 e. ((a,3),(b,1),(c,2),(d,4),(e,5)

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter3: Functions And Graphs
Section3.5: Graphs Of Functions
Problem 27E
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QUESTION 27
Match the function written as a rule to the function written as a subset of the Cartesian product of the domain and codomain.
Ef(a) = 3, f(b) = 1, f(c) = 2, f(d) = 5, f(e)= 4
a. ((a,3).(b,1).(c,2),(d,5),(e,4))
- f(1) = b, f(2) = c, f(3) = a, f(4) = e, f(5) = d
b. (3,a),(1,b),(2,c),(5,d).(4,e))
Ef(a) = 3, f(b) = 1, f(c) = 5, f(d) = 2, f(e)= 4
c. (a,3),(b,1),(c,5),(d,2),(e,4)
Ef(1) = b, f(2) = d, f(3) = a, f(4) = e, f(5)= c
d. ((3,a).(1,b),(5,c),(2,d),(4,e))
Efla) = 3, f(b) = 1, f(c)=2, f(d) = 4, f(e)= 5
e. ((a,3),(b,1),(c,2),(d,4),(e,5)
Transcribed Image Text:QUESTION 27 Match the function written as a rule to the function written as a subset of the Cartesian product of the domain and codomain. Ef(a) = 3, f(b) = 1, f(c) = 2, f(d) = 5, f(e)= 4 a. ((a,3).(b,1).(c,2),(d,5),(e,4)) - f(1) = b, f(2) = c, f(3) = a, f(4) = e, f(5) = d b. (3,a),(1,b),(2,c),(5,d).(4,e)) Ef(a) = 3, f(b) = 1, f(c) = 5, f(d) = 2, f(e)= 4 c. (a,3),(b,1),(c,5),(d,2),(e,4) Ef(1) = b, f(2) = d, f(3) = a, f(4) = e, f(5)= c d. ((3,a).(1,b),(5,c),(2,d),(4,e)) Efla) = 3, f(b) = 1, f(c)=2, f(d) = 4, f(e)= 5 e. ((a,3),(b,1),(c,2),(d,4),(e,5)
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