Types of Functions
Sets, Relation and Function

117037 If \(f(x)=\frac{2^{2 x}}{2^{2 x}+2}, x \in R\) then
\(\mathbf{f}\left(\frac{1}{2023}\right)+\mathbf{f}\left(\frac{2}{2023}\right)+\mathbf{f}\left(\frac{3}{2023}\right)+\ldots \ldots+\mathbf{f}\left(\frac{2022}{2023}\right)\)
is equal to

1 1011
2 2010
3 1012
4 2011
Sets, Relation and Function

117038 Function \(f: R \rightarrow R\) defined by \(f(x)=x^2+5\) is

1 many-one and onto
2 one-one and onto
3 one-one and into
4 many-one and into
Sets, Relation and Function

117039 Let \(A=\{x: x \in R ; x\) is not a positive integer \(\}\)
Define \(f: A \rightarrow R\) as \(f(x)=\frac{2 x}{x-1}\), then \(f\) is

1 injective but not surjective
2 surjective but not injective
3 bijective
4 neither injective nor surjective
Sets, Relation and Function

117040 For any natural number \(n,\left(15 \times 5^{2 n}\right)+(2 \times\) \(2^{3 \mathrm{n}}\) ) is divisible by

1 7
2 11
3 13
4 17
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Sets, Relation and Function

117037 If \(f(x)=\frac{2^{2 x}}{2^{2 x}+2}, x \in R\) then
\(\mathbf{f}\left(\frac{1}{2023}\right)+\mathbf{f}\left(\frac{2}{2023}\right)+\mathbf{f}\left(\frac{3}{2023}\right)+\ldots \ldots+\mathbf{f}\left(\frac{2022}{2023}\right)\)
is equal to

1 1011
2 2010
3 1012
4 2011
Sets, Relation and Function

117038 Function \(f: R \rightarrow R\) defined by \(f(x)=x^2+5\) is

1 many-one and onto
2 one-one and onto
3 one-one and into
4 many-one and into
Sets, Relation and Function

117039 Let \(A=\{x: x \in R ; x\) is not a positive integer \(\}\)
Define \(f: A \rightarrow R\) as \(f(x)=\frac{2 x}{x-1}\), then \(f\) is

1 injective but not surjective
2 surjective but not injective
3 bijective
4 neither injective nor surjective
Sets, Relation and Function

117040 For any natural number \(n,\left(15 \times 5^{2 n}\right)+(2 \times\) \(2^{3 \mathrm{n}}\) ) is divisible by

1 7
2 11
3 13
4 17
Sets, Relation and Function

117037 If \(f(x)=\frac{2^{2 x}}{2^{2 x}+2}, x \in R\) then
\(\mathbf{f}\left(\frac{1}{2023}\right)+\mathbf{f}\left(\frac{2}{2023}\right)+\mathbf{f}\left(\frac{3}{2023}\right)+\ldots \ldots+\mathbf{f}\left(\frac{2022}{2023}\right)\)
is equal to

1 1011
2 2010
3 1012
4 2011
Sets, Relation and Function

117038 Function \(f: R \rightarrow R\) defined by \(f(x)=x^2+5\) is

1 many-one and onto
2 one-one and onto
3 one-one and into
4 many-one and into
Sets, Relation and Function

117039 Let \(A=\{x: x \in R ; x\) is not a positive integer \(\}\)
Define \(f: A \rightarrow R\) as \(f(x)=\frac{2 x}{x-1}\), then \(f\) is

1 injective but not surjective
2 surjective but not injective
3 bijective
4 neither injective nor surjective
Sets, Relation and Function

117040 For any natural number \(n,\left(15 \times 5^{2 n}\right)+(2 \times\) \(2^{3 \mathrm{n}}\) ) is divisible by

1 7
2 11
3 13
4 17
Sets, Relation and Function

117037 If \(f(x)=\frac{2^{2 x}}{2^{2 x}+2}, x \in R\) then
\(\mathbf{f}\left(\frac{1}{2023}\right)+\mathbf{f}\left(\frac{2}{2023}\right)+\mathbf{f}\left(\frac{3}{2023}\right)+\ldots \ldots+\mathbf{f}\left(\frac{2022}{2023}\right)\)
is equal to

1 1011
2 2010
3 1012
4 2011
Sets, Relation and Function

117038 Function \(f: R \rightarrow R\) defined by \(f(x)=x^2+5\) is

1 many-one and onto
2 one-one and onto
3 one-one and into
4 many-one and into
Sets, Relation and Function

117039 Let \(A=\{x: x \in R ; x\) is not a positive integer \(\}\)
Define \(f: A \rightarrow R\) as \(f(x)=\frac{2 x}{x-1}\), then \(f\) is

1 injective but not surjective
2 surjective but not injective
3 bijective
4 neither injective nor surjective
Sets, Relation and Function

117040 For any natural number \(n,\left(15 \times 5^{2 n}\right)+(2 \times\) \(2^{3 \mathrm{n}}\) ) is divisible by

1 7
2 11
3 13
4 17