ATS 350 Final Questions With Complete Solutions
. 9° C Correct Answers Now imagine the air is forced back
down the mountain on the other side. At 0
meters, what is the new dew point temperature?
100% Correct Answers Imagine that the top of the mountain is
at a level of 3000 meters. What is the
relative humidity at this level?
12 mb Correct Answers Given a dew point temperature of 10
degrees C and a temperature of 21 degrees
C, what is the actual water vapor pressure in the air (rounded to
the nearest
number)? (Recall there is a table and plot of saturation vapor
pressure located at
the end of the test)
14.8 mb Correct Answers At an elevation of 0 meters (before
the air rises up the mountain), a parcel of air
has a temperature of 29 °C and dew point temperature of 13 °C.
What is the
actual vapor pressure of the air at this point?
15° C Correct Answers Suppose a parcel of air has a dew point
of 15° C and is saturated. What is the
temperature of the air?
20 mb Correct Answers Given a relative humidity of 50% and
actual water vapor pressure of 10 mb, what
, is the saturation water vapor pressure of the air (rounded to the
nearest number)?
2000 m Correct Answers The air temperature is 24 °C and the
dew point is 8 °C. If thunderstorms are
expected, at what height would you expect the cloud base to lie?
2000 meters Correct Answers As the air rises up the mountain,
at what level would you expect to see clouds
begin to form?
25 mb Correct Answers Given a dew point temperature of 10
degrees C and a temperature of 21 degrees
C, what is the saturation water vapor pressure of the air (rounded
to the nearest
number)?
3° C Correct Answers What is the dew point temperature at
3000 meters?
3° C Correct Answers What is the temperature of the air at
3000 meters?
32° C Correct Answers Given a relative humidity of 50% and
actual water vapor pressure of 24 mb, what
is the temperature of the air (rounded to the nearest number)?
33° C Correct Answers What is the new temperature at 0
meters after the air has descended?
. 9° C Correct Answers Now imagine the air is forced back
down the mountain on the other side. At 0
meters, what is the new dew point temperature?
100% Correct Answers Imagine that the top of the mountain is
at a level of 3000 meters. What is the
relative humidity at this level?
12 mb Correct Answers Given a dew point temperature of 10
degrees C and a temperature of 21 degrees
C, what is the actual water vapor pressure in the air (rounded to
the nearest
number)? (Recall there is a table and plot of saturation vapor
pressure located at
the end of the test)
14.8 mb Correct Answers At an elevation of 0 meters (before
the air rises up the mountain), a parcel of air
has a temperature of 29 °C and dew point temperature of 13 °C.
What is the
actual vapor pressure of the air at this point?
15° C Correct Answers Suppose a parcel of air has a dew point
of 15° C and is saturated. What is the
temperature of the air?
20 mb Correct Answers Given a relative humidity of 50% and
actual water vapor pressure of 10 mb, what
, is the saturation water vapor pressure of the air (rounded to the
nearest number)?
2000 m Correct Answers The air temperature is 24 °C and the
dew point is 8 °C. If thunderstorms are
expected, at what height would you expect the cloud base to lie?
2000 meters Correct Answers As the air rises up the mountain,
at what level would you expect to see clouds
begin to form?
25 mb Correct Answers Given a dew point temperature of 10
degrees C and a temperature of 21 degrees
C, what is the saturation water vapor pressure of the air (rounded
to the nearest
number)?
3° C Correct Answers What is the dew point temperature at
3000 meters?
3° C Correct Answers What is the temperature of the air at
3000 meters?
32° C Correct Answers Given a relative humidity of 50% and
actual water vapor pressure of 24 mb, what
is the temperature of the air (rounded to the nearest number)?
33° C Correct Answers What is the new temperature at 0
meters after the air has descended?