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Zorluk: OrtaGas Laws and the Ideal Gas Equation

A rigid scuba diving cylinder contains a fixed mass of compressed air at an initial absolute pressure of 2.00×107 Pa2.00 \times 10^7\text{ Pa} and a temperature of 27C27^\circ\text{C}. The cylinder is left under direct sunlight on a boat deck, causing its temperature to rise to 77C77^\circ\text{C}. Assuming the volume of the cylinder remains constant, what is the new pressure of the air inside the cylinder?

  1. 2.33×107 Pa2.33 \times 10^7\text{ Pa}Cevap
  2. B
    5.70×107 Pa5.70 \times 10^7\text{ Pa}
  3. C
    1.71×107 Pa1.71 \times 10^7\text{ Pa}
  4. D
    5.13×106 Pa5.13 \times 10^6\text{ Pa}

Cevap

The final pressure of the air inside the cylinder is 2.33×107 Pa2.33 \times 10^7\text{ Pa}.
According to the Pressure Law, the pressure of a fixed mass of gas at constant volume is directly proportional to its absolute temperature (PTP \propto T). Converting the given temperatures yields T1=300 KT_1 = 300\text{ K} and T2=350 KT_2 = 350\text{ K}. Substituting these into P2=P1(T2/T1)P_2 = P_1(T_2 / T_1) gives 2.00×107×(350/300)=2.33×107 Pa2.00 \times 10^7 \times (350 / 300) = 2.33 \times 10^7\text{ Pa}.

Adım Adım Çözüm

1
Convert given temperatures from Celsius to Kelvin.
T1=27C+273=300 KT_1 = 27^\circ\text{C} + 273 = 300\text{ K}, and T2=77C+273=350 KT_2 = 77^\circ\text{C} + 273 = 350\text{ K}.
All gas laws strictly require absolute temperature measured in Kelvin.
2
State and rearrange the Pressure Law (Gay-Lussac's Law) for constant volume.
P1T1=P2T2    P2=P1×T2T1\frac{P_1}{T_1} = \frac{P_2}{T_2} \implies P_2 = P_1 \times \frac{T_2}{T_1}
For a fixed mass of gas at constant volume, pressure is directly proportional to absolute temperature.
3
Substitute the known values into the equation to calculate the final pressure.
P2=2.00×107 Pa×350 K300 K2.33×107 PaP_2 = 2.00 \times 10^7\text{ Pa} \times \frac{350\text{ K}}{300\text{ K}} \approx 2.33 \times 10^7\text{ Pa}.
Evaluates the final pressure accurately after heating.

Anahtar Kavram

Pressure Law (Gay-Lussac's Law) for Ideal Gases
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