Composition Function
Sets, Relation and Function

117226 Let \(f(x)=x^2\) and \(g(x)=2^x\) then the solution set of \(f(x)=\operatorname{gof}(x)\) is

1 \(\mathrm{R}\)
2 \(\{0\}\)
3 \(\{0,2\}\)
4 none of these
Sets, Relation and Function

117228 If \(f(x)\) and \(g(x)\) are two functions with \(g(x)=x\) \(-\frac{1}{x}\) and \(f o g(x)=x^3-\frac{1}{x^3}\), then \(f^{\prime}(x)\) is equal to

1 \(3 x^2+3\)
2 \(\mathrm{x}^2-\frac{1}{x^2}\)
3 \(1+\frac{1}{x^2}\)
4 \(3 x^2+\frac{3}{x^4}\)
Sets, Relation and Function

117230 If \(f: R \rightarrow R\) and \(g: R \rightarrow R\) are defined by \(f(x)=2 x\) +3 and \(g(x)=x^2+7\), then the values of \(x\) for which \(f(g(x))=25\), are

1 \(\pm 1\)
2 \(\pm 2\)
3 \(\pm 3\)
4 \(\pm 4\)
Sets, Relation and Function

117231 If \(f(x)=2 x^2+b x+c, f(0)=3\) and \(f(2)=1\), then (fof) (1) \(=\)

1 0
2 2
3 1
4 3
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
Sets, Relation and Function

117226 Let \(f(x)=x^2\) and \(g(x)=2^x\) then the solution set of \(f(x)=\operatorname{gof}(x)\) is

1 \(\mathrm{R}\)
2 \(\{0\}\)
3 \(\{0,2\}\)
4 none of these
Sets, Relation and Function

117228 If \(f(x)\) and \(g(x)\) are two functions with \(g(x)=x\) \(-\frac{1}{x}\) and \(f o g(x)=x^3-\frac{1}{x^3}\), then \(f^{\prime}(x)\) is equal to

1 \(3 x^2+3\)
2 \(\mathrm{x}^2-\frac{1}{x^2}\)
3 \(1+\frac{1}{x^2}\)
4 \(3 x^2+\frac{3}{x^4}\)
Sets, Relation and Function

117230 If \(f: R \rightarrow R\) and \(g: R \rightarrow R\) are defined by \(f(x)=2 x\) +3 and \(g(x)=x^2+7\), then the values of \(x\) for which \(f(g(x))=25\), are

1 \(\pm 1\)
2 \(\pm 2\)
3 \(\pm 3\)
4 \(\pm 4\)
Sets, Relation and Function

117231 If \(f(x)=2 x^2+b x+c, f(0)=3\) and \(f(2)=1\), then (fof) (1) \(=\)

1 0
2 2
3 1
4 3
Sets, Relation and Function

117226 Let \(f(x)=x^2\) and \(g(x)=2^x\) then the solution set of \(f(x)=\operatorname{gof}(x)\) is

1 \(\mathrm{R}\)
2 \(\{0\}\)
3 \(\{0,2\}\)
4 none of these
Sets, Relation and Function

117228 If \(f(x)\) and \(g(x)\) are two functions with \(g(x)=x\) \(-\frac{1}{x}\) and \(f o g(x)=x^3-\frac{1}{x^3}\), then \(f^{\prime}(x)\) is equal to

1 \(3 x^2+3\)
2 \(\mathrm{x}^2-\frac{1}{x^2}\)
3 \(1+\frac{1}{x^2}\)
4 \(3 x^2+\frac{3}{x^4}\)
Sets, Relation and Function

117230 If \(f: R \rightarrow R\) and \(g: R \rightarrow R\) are defined by \(f(x)=2 x\) +3 and \(g(x)=x^2+7\), then the values of \(x\) for which \(f(g(x))=25\), are

1 \(\pm 1\)
2 \(\pm 2\)
3 \(\pm 3\)
4 \(\pm 4\)
Sets, Relation and Function

117231 If \(f(x)=2 x^2+b x+c, f(0)=3\) and \(f(2)=1\), then (fof) (1) \(=\)

1 0
2 2
3 1
4 3
Sets, Relation and Function

117226 Let \(f(x)=x^2\) and \(g(x)=2^x\) then the solution set of \(f(x)=\operatorname{gof}(x)\) is

1 \(\mathrm{R}\)
2 \(\{0\}\)
3 \(\{0,2\}\)
4 none of these
Sets, Relation and Function

117228 If \(f(x)\) and \(g(x)\) are two functions with \(g(x)=x\) \(-\frac{1}{x}\) and \(f o g(x)=x^3-\frac{1}{x^3}\), then \(f^{\prime}(x)\) is equal to

1 \(3 x^2+3\)
2 \(\mathrm{x}^2-\frac{1}{x^2}\)
3 \(1+\frac{1}{x^2}\)
4 \(3 x^2+\frac{3}{x^4}\)
Sets, Relation and Function

117230 If \(f: R \rightarrow R\) and \(g: R \rightarrow R\) are defined by \(f(x)=2 x\) +3 and \(g(x)=x^2+7\), then the values of \(x\) for which \(f(g(x))=25\), are

1 \(\pm 1\)
2 \(\pm 2\)
3 \(\pm 3\)
4 \(\pm 4\)
Sets, Relation and Function

117231 If \(f(x)=2 x^2+b x+c, f(0)=3\) and \(f(2)=1\), then (fof) (1) \(=\)

1 0
2 2
3 1
4 3