What is the derivative of 1?
Answer
532.8k+ views
Hint: For solving this question you should know about the differentiation of integer and how to calculate the derivatives. In this question we will differentiate to 1 with respect to any variable. But as we know that \[{{e}^{1}}\] is a constant value and the differentiation of constant is 0. Because it will never change so the rate of change of function will be always zero.
Complete step by step answer:
According to our question if we see that it is asked to us to determine the derivative of 1.
And we know that the differentiation of the constant is always zero.
And the derivatives of constants are always zero because they do not change with the variable in whose respect they are going to differentiate.
So, the differentiation of 1,
\[\begin{align}
& \Rightarrow \dfrac{d}{dx}\left( 1 \right)=? \\
& \Rightarrow \dfrac{d}{dx}\left( 1 \right)=0 \\
\end{align}\]
So, the derivative of 1 is equal to zero.
Note: During solving the differentiation of any term we always have to be assure that the term which we are differentiating and the variable with whose respect we differentiate to this, are always have same variable, unless this will be a constant for that and the differentiation will be zero.
Complete step by step answer:
According to our question if we see that it is asked to us to determine the derivative of 1.
And we know that the differentiation of the constant is always zero.
And the derivatives of constants are always zero because they do not change with the variable in whose respect they are going to differentiate.
So, the differentiation of 1,
\[\begin{align}
& \Rightarrow \dfrac{d}{dx}\left( 1 \right)=? \\
& \Rightarrow \dfrac{d}{dx}\left( 1 \right)=0 \\
\end{align}\]
So, the derivative of 1 is equal to zero.
Note: During solving the differentiation of any term we always have to be assure that the term which we are differentiating and the variable with whose respect we differentiate to this, are always have same variable, unless this will be a constant for that and the differentiation will be zero.
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