gas is equal to the sum of its partial pressures. 7. A weather balloon is heated from room temperature to 58°C. As a result, the gas inside the weather balloon increases in volume. Which gas law explains this phenomenon? a. Gay-Lussac's Law c, Charles' Law d. Combined Gas Law

Chemistry
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Chapter1: Chemical Foundations
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6. Which of the following best describes Boyle's Law?
a. The volume of a gas is directly proportional to its temperature, if the pressure
is kept constant.
b. The volume of a gas varies inversely with pressure, at a constant
temperature.
c. The pressure of a gas is directly proportional to its temperature, if the volume
is kept constant.
d) At constant volume and temperature, the total pressure of a
gas is equal to the sum of its partial pressures.
7. A weather balloon is heated from room temperature to 58°C. As a result, the
gas inside the weather balloon increases in volume. Which gas law explains
this phenomenon?
a. Gay-Lussac's Law
h. Boyle's Law
c, Charles' Law
d. Combined Gas Law
Transcribed Image Text:6. Which of the following best describes Boyle's Law? a. The volume of a gas is directly proportional to its temperature, if the pressure is kept constant. b. The volume of a gas varies inversely with pressure, at a constant temperature. c. The pressure of a gas is directly proportional to its temperature, if the volume is kept constant. d) At constant volume and temperature, the total pressure of a gas is equal to the sum of its partial pressures. 7. A weather balloon is heated from room temperature to 58°C. As a result, the gas inside the weather balloon increases in volume. Which gas law explains this phenomenon? a. Gay-Lussac's Law h. Boyle's Law c, Charles' Law d. Combined Gas Law
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