152674
A $500 \Omega$ resistor connected to an external battery is placed inside a thermally insulated cylinder fitted with a frictionless piston. The cylinder contains an ideal gas. A current $i$ of $200 \mathrm{~mA}$ flows through the resistor as shown in the figure. The mass of the piston is $10 \mathrm{~kg}$.
Assuming $g=10 \mathrm{~m} / \mathrm{s}^{2}$, the speed at which the piston will move upward, due to heat dissipated by the resistor, so that the temperature of the gas remains unchanged is
152674
A $500 \Omega$ resistor connected to an external battery is placed inside a thermally insulated cylinder fitted with a frictionless piston. The cylinder contains an ideal gas. A current $i$ of $200 \mathrm{~mA}$ flows through the resistor as shown in the figure. The mass of the piston is $10 \mathrm{~kg}$.
Assuming $g=10 \mathrm{~m} / \mathrm{s}^{2}$, the speed at which the piston will move upward, due to heat dissipated by the resistor, so that the temperature of the gas remains unchanged is
152674
A $500 \Omega$ resistor connected to an external battery is placed inside a thermally insulated cylinder fitted with a frictionless piston. The cylinder contains an ideal gas. A current $i$ of $200 \mathrm{~mA}$ flows through the resistor as shown in the figure. The mass of the piston is $10 \mathrm{~kg}$.
Assuming $g=10 \mathrm{~m} / \mathrm{s}^{2}$, the speed at which the piston will move upward, due to heat dissipated by the resistor, so that the temperature of the gas remains unchanged is
152674
A $500 \Omega$ resistor connected to an external battery is placed inside a thermally insulated cylinder fitted with a frictionless piston. The cylinder contains an ideal gas. A current $i$ of $200 \mathrm{~mA}$ flows through the resistor as shown in the figure. The mass of the piston is $10 \mathrm{~kg}$.
Assuming $g=10 \mathrm{~m} / \mathrm{s}^{2}$, the speed at which the piston will move upward, due to heat dissipated by the resistor, so that the temperature of the gas remains unchanged is
152674
A $500 \Omega$ resistor connected to an external battery is placed inside a thermally insulated cylinder fitted with a frictionless piston. The cylinder contains an ideal gas. A current $i$ of $200 \mathrm{~mA}$ flows through the resistor as shown in the figure. The mass of the piston is $10 \mathrm{~kg}$.
Assuming $g=10 \mathrm{~m} / \mathrm{s}^{2}$, the speed at which the piston will move upward, due to heat dissipated by the resistor, so that the temperature of the gas remains unchanged is