Правка разделов «Statement», «Answer»

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### Statement
−$5.6.26.$ [Insert the problem statement]
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−### Solution
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−### Statement
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$5.6.26^*.$ A horizontally placed cylinder, containing $1$ mole of gas at an initial temperature $T_{0}$ and pressure $P_{0}$, is closed by a piston of cross-section $S$. To the right of the piston is a constant atmospheric pressure $P_{0}$. The gas is heated by a coil. When the piston moves, a friction force $F$ acts on it from the cylinder walls. Half of the heat generated by the friction of the piston against the cylinder walls goes into the gas. The internal energy of the gas is $U = cT$. How does the temperature of the gas depend on the amount of heat transferred to the gas by the coil? Plot the graph of this dependence.
![For problem $5.6.26$|522x312, 50%](../../img/5.6.26/5_6_26_problem_statement_2.png)
@@ -160,8 +154,4 @@Answer
$$ T = \\left[ \\begin{array}{ll} T_0 + \\dfrac{Q}{c}, & Q \\le Q_1, \\\\ \\dfrac{Q + T_0\\left(R + c + \\dfrac{RF}{2p_0S}\\right)}{R + c - \\dfrac{FR}{2(p_0S+F)}}, & Q \\ge Q_1. \\end{array} \\right] $$
−![For answer $5.6.26$|989x590, 120%](../../img/5.6.26/загружено.png)
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−#### Answer
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−[Insert a concise answer or boxed result]
+![For answer $5.6.26$|989x590, 120%](../../img/5.6.26/загружено.png)