Deck 5: Gas Laws and Thermodynamics
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Deck 5: Gas Laws and Thermodynamics
1
The amount of heat absorbed by a system at lower temperature is
A)coeff. of performance
B)efficiency
C)work supplied
D)refrigerating effect
A)coeff. of performance
B)efficiency
C)work supplied
D)refrigerating effect
work supplied
2
In an ideal gas the partial pressure of a component is
A)inversely proportional to the square of the molefraction
B)directly proportional to the mole fraction
C)inversely proportional to the mole fraction
D)equal to the mole fraction
A)inversely proportional to the square of the molefraction
B)directly proportional to the mole fraction
C)inversely proportional to the mole fraction
D)equal to the mole fraction
directly proportional to the mole fraction
3
The value of the univesal gas constant is
A)0.314 j/kg k
B)83.14 kj/kg k
C)848 kj/kg k
D)8.314 kj/kg k
A)0.314 j/kg k
B)83.14 kj/kg k
C)848 kj/kg k
D)8.314 kj/kg k
8.314 kj/kg k
4
Choose the correct answer
A)a perfect gas does not obey the law pv=rt
B)a perfect gas obeys the law pv=rt & has constant specific heat
C)a perfect gas obeys the law pv=rt but have variable specific heat capacities
D)all of the above
A)a perfect gas does not obey the law pv=rt
B)a perfect gas obeys the law pv=rt & has constant specific heat
C)a perfect gas obeys the law pv=rt but have variable specific heat capacities
D)all of the above
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5
Boyle's law states that, when tempearture is constant, the volume of a given mass of a perfect gas
A)varies directly as the absolute pressure
B)varies inversely as the absolute pressure
C)varies as square of the absolute pressue
D)does not vary with the absolute pressure
A)varies directly as the absolute pressure
B)varies inversely as the absolute pressure
C)varies as square of the absolute pressue
D)does not vary with the absolute pressure
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6
Charle's law states that if any gas is heated at constant pressure, its volume
A)changes directly as it absolute temperature
B)changes inversely as its absolute temperature
C)changes as square of the absolute temperature
D)does not change with absolute temperature
A)changes directly as it absolute temperature
B)changes inversely as its absolute temperature
C)changes as square of the absolute temperature
D)does not change with absolute temperature
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7
The equation of state of an ideal gas is a relationship between the variables:
A)pressure & volume
B)pressure & temperature
C)pressure, volume & temperature
D)none of the above
A)pressure & volume
B)pressure & temperature
C)pressure, volume & temperature
D)none of the above
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8
Joule's law states that the specific internal energy of a gas depends only on
A)the pressure of the gas
B)the volume of the gas
C)the temperature of the gas
D)none of the above
A)the pressure of the gas
B)the volume of the gas
C)the temperature of the gas
D)none of the above
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9
The change of entropy is considered to be ……… when heat is absorbed by the gas
A)positive
B)negative
C)zero
D)none of the above
A)positive
B)negative
C)zero
D)none of the above
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10
………. Is one in which neither any heat enters nor leaves the system
A)isochoric process
B)isobaric process
C)isentropic process
D)isothermal process
A)isochoric process
B)isobaric process
C)isentropic process
D)isothermal process
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11
Entropy of the universe
A)tends to zero
B)tends to a minimum
C)tends to a maximum
D)none of the above
A)tends to zero
B)tends to a minimum
C)tends to a maximum
D)none of the above
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12
A gas can never be liquid
A)above criticaltemperature
B)when it is diatomic
C)when it is impure
D)above roomtemperature
A)above criticaltemperature
B)when it is diatomic
C)when it is impure
D)above roomtemperature
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13
Which of the following remains constant during an adiabatic expansion
A)entropy
B)temperature
C)internal energy
D)none of the above
A)entropy
B)temperature
C)internal energy
D)none of the above
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14
In which of the following processes the change in internal energy of a gas is equal to the work done
A)adiabatic process
B)isothermal process
C)constant volume process
D)constant pressure process
A)adiabatic process
B)isothermal process
C)constant volume process
D)constant pressure process
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15
The specific heat of a gas is a function of
A)temperature only
B)temperature & pressure
C)temperature & entropy
D)temperature, pressure& entropy
A)temperature only
B)temperature & pressure
C)temperature & entropy
D)temperature, pressure& entropy
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16
In a Carnot cycle which of the following processez must be carried out at extremely slow speed?
A)isothermal compression
B)adiabatic expansion
C)adiabatic compression
D)none of the above
A)isothermal compression
B)adiabatic expansion
C)adiabatic compression
D)none of the above
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17
In the case of real gases, cp will be equal to cv
A)at absolute zero
B)at triple point
C)at critical temperature
D)above criticaltempeature
A)at absolute zero
B)at triple point
C)at critical temperature
D)above criticaltempeature
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18
The physical properties of a perfect gas are controlled by which of the following variables?
A)volume
B)temperature
C)pressure
D)all of the above
A)volume
B)temperature
C)pressure
D)all of the above
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19
Universal gas constant is defined as equal to the product of the molecular weight of the gas &
A)gas constant
B)specific heat at constant volume
C)specific heat a constant pressure
D)ratio of two specific heats
A)gas constant
B)specific heat at constant volume
C)specific heat a constant pressure
D)ratio of two specific heats
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20
All engineering process, strictly speaking are
A)reversible cycle
B)irreversible
C)quasti-static
D)thermodynamically inequillibrium
A)reversible cycle
B)irreversible
C)quasti-static
D)thermodynamically inequillibrium
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21
Isothermal, isobaric, isochoric & adiabatic processes, under ideal conditions, are …. Processes
A)thermodynamic
B)stable
C)dynamic
D)quasi-static
A)thermodynamic
B)stable
C)dynamic
D)quasi-static
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22
Change of entropy depends upon which of the following?
A)change of heat
B)change of specific heats
C)change of pressure &volume
D)none of the above
A)change of heat
B)change of specific heats
C)change of pressure &volume
D)none of the above
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23
In a reversible adiabatic process head added is equal to
A)zero
B)positive value
A)zero
B)positive value
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