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Question Number 168114 by Beginner last updated on 03/Apr/22

Answered by MJS_new last updated on 04/Apr/22

7

$$\mathrm{7} \\ $$

Commented by Beginner last updated on 04/Apr/22

how?

$${how}? \\ $$

Answered by MJS_new last updated on 04/Apr/22

f_1 (x)=∣∣x∣−1∣= { ((−2<x<−1; −x−1)),((−1≤x<0; x+1)),((0≤x<1; 1−x)),((1≤x<2; x−1)) :}  f_2 (x)=∣cos πx∣= { ((−2<x≤−(3/2); cos πx)),((−(3/2)<x≤−(1/2); −cos πx)),((−(1/2)<x≤(1/2); cos πx)),(((1/2)<x≤(3/2); −cos πx)),(((3/2)<x<2: cos πx)) :}  ⇒  f_1 (x) not continuous at x∈{−1; 9; 1}  f_2 (x) not continuous at x∈{−(3/2); −(1/2); (1/2); (3/2)}  ⇒  f(x) not continuous at 7 points within (−2; 2)

$${f}_{\mathrm{1}} \left({x}\right)=\mid\mid{x}\mid−\mathrm{1}\mid=\begin{cases}{−\mathrm{2}<{x}<−\mathrm{1};\:−{x}−\mathrm{1}}\\{−\mathrm{1}\leqslant{x}<\mathrm{0};\:{x}+\mathrm{1}}\\{\mathrm{0}\leqslant{x}<\mathrm{1};\:\mathrm{1}−{x}}\\{\mathrm{1}\leqslant{x}<\mathrm{2};\:{x}−\mathrm{1}}\end{cases} \\ $$$${f}_{\mathrm{2}} \left({x}\right)=\mid\mathrm{cos}\:\pi{x}\mid=\begin{cases}{−\mathrm{2}<{x}\leqslant−\frac{\mathrm{3}}{\mathrm{2}};\:\mathrm{cos}\:\pi{x}}\\{−\frac{\mathrm{3}}{\mathrm{2}}<{x}\leqslant−\frac{\mathrm{1}}{\mathrm{2}};\:−\mathrm{cos}\:\pi{x}}\\{−\frac{\mathrm{1}}{\mathrm{2}}<{x}\leqslant\frac{\mathrm{1}}{\mathrm{2}};\:\mathrm{cos}\:\pi{x}}\\{\frac{\mathrm{1}}{\mathrm{2}}<{x}\leqslant\frac{\mathrm{3}}{\mathrm{2}};\:−\mathrm{cos}\:\pi{x}}\\{\frac{\mathrm{3}}{\mathrm{2}}<{x}<\mathrm{2}:\:\mathrm{cos}\:\pi{x}}\end{cases} \\ $$$$\Rightarrow \\ $$$${f}_{\mathrm{1}} \left({x}\right)\:\mathrm{not}\:\mathrm{continuous}\:\mathrm{at}\:{x}\in\left\{−\mathrm{1};\:\mathrm{9};\:\mathrm{1}\right\} \\ $$$${f}_{\mathrm{2}} \left({x}\right)\:\mathrm{not}\:\mathrm{continuous}\:\mathrm{at}\:{x}\in\left\{−\frac{\mathrm{3}}{\mathrm{2}};\:−\frac{\mathrm{1}}{\mathrm{2}};\:\frac{\mathrm{1}}{\mathrm{2}};\:\frac{\mathrm{3}}{\mathrm{2}}\right\} \\ $$$$\Rightarrow \\ $$$${f}\left({x}\right)\:\mathrm{not}\:\mathrm{continuous}\:\mathrm{at}\:\mathrm{7}\:\mathrm{points}\:\mathrm{within}\:\left(−\mathrm{2};\:\mathrm{2}\right) \\ $$

Commented by Beginner last updated on 04/Apr/22

Nice approach thx

$${Nice}\:{approach}\:{thx} \\ $$

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