Let \( f(x)=\left\{\begin{array}{ll}|[x]|, & 0 \leq\{x\}\frac{1}{2}... VIDEO
Let \( f(x)=\left\{\begin{array}{ll}|[x]|, & 0 \leq\{x\}\frac{1}{2} \\ |x|, & \frac{1}{2} \leq\{x\}1\end{array}, \forall x \in\left[\frac{-7}{2}, \frac{7}{2}\right]\right. \). If \( L \) is number of point of discontinuity
\( \mathrm{P} \)
W and \( M \) is the number of point on non-differentiability of the function \( f(x) \), then find the value of \( (L+M) \).
[Note : \( [y] \) and \( \{y\} \) denotes greatest integer function less than or equal to \( y \) and fractional part of \( y \) respectively.]
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