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Let R be a relation defined on the se...

Let `R` be a relation defined on the set of natural numbers `N` as `R={(x , y): x , yN ,2x+y=41}` Find the domain and range of `Rdot` Also, verify whether `R` is (i) reflexive, (ii) symmetric (iii) transitive.

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Let R be a relation defined on the set of natural numbers N as R={(x , y): x , y in N ,2x+y=41} Find the domain and range of R. Also, verify whether R is (i) reflexive, (ii) symmetric (iii) transitive.

Let R be a relation defined on the set of natural numbers N as R={(x ,\ y): x ,\ y in N ,\ 2x+y=41} Find the domain and range of R . Also, verify whether R is (i) reflexive, (ii) symmetric (iii) transitive.

Let R be a relation defined on the set of natural numbers N as R={(x ,\ y): x ,\ y in N ,\ 2x+y=41} Find the domain and range of R . Also, verify whether R is (i) reflexive, (ii) symmetric (iii) transitive.

Let R be a relation defined on the set of natural numbers N as R={(x , y): x , y in N ,2x+y=41} Find the domain and range of R. Also, verify whether R is (i) reflexive, (ii) symmetric (iii) transitive.

If R={(x , y): x , y in W ,2x+y=8} ., then write the domain and range of Rdot

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