ICE NUCLEATION
ICE GROWTH
WARM vs. COLD
ALL ABOUT TEMPERATURE
100

primary ice formation mechanism at -15 degrees C?

immersion freezing

homogenous nucleation from vapor

homogenous nucleation from liquid

immersion freezing

100

TRUE if air at water saturation, T=-15 deg C?

air is sub-saturated with respect to ice

air is supersaturated with respect to ice

air is at ice saturation

cannot know based on information provided

air is supersaturated with respect to ice

100

*HAPPENS* in our atmosphere?

Homogenous liquid drop formation from vapor

Melting of snow above 0 degrees C

Homogenous water nucleation from vapor

Freezing of water above 0 degrees C

Melting of snow above 0 degrees C

100

homogenous nucleation of ice in liquid drops can occur

below 0 deg C

below -15 deg C

below -20 deg C

below -35 deg C

below -35 deg C

200

pen and pencil theory can constrain?

immersion freezing

contact nucleation

homogenous nucleation from liquid

homogenous nucleation from liquid

200

TRUE if above ice saturation but below water saturation

both liquid drops and ice crystals grow

both liquid drops and ice crystals shrink

ice crystals grow at expense of liquid drops

liquid drops grow at expense of ice crystals

ice crystals grow at expense of liquid drops

200

TRUE for both ice and water saturation vapor pressure

increases linearly with temperature

increases exponentially with temperature

decreases linearly with temperature

decreases exponentially with temperature

increases exponentially with temperature

200

largest difference between saturation vapor pressures over ice and water

0 degrees C

-12 degrees C

-20 degrees C

-30 degrees C

-12 degrees C

300

characteristics of a good ice nuclei?

small and ice-like crystalline structure

large and ice-like crystalline structure

large and soluble

small and soluble

large and ice-like crystalline structure

300

Grows large by collecting supercooled liquid?

graupel

aggregate

dendrite

plate

graupel

300

Largest terminal velocity?

rain

graupel

dendritic snow

snow aggregate

rain

300

Mixed phase regime

0 to 10 degrees C

-38 to 0 degrees C

-20 to 0 degrees C

-1 to 1 degrees C

0 to 10 degrees C

400

ice formation without liquid?

Deposition nucleation

Immersion freezing

Contact nucleation

Homogenous freezing of aerosol

Deposition nucleation

400

Assuming water saturation, temperature for maximum ice depositional growth?

0 degrees C

-15 degrees C

-30 degrees C

-45 degrees C

-15 degrees C

400

only in cold clouds?

riming

accretion

collection

growth from vapor

riming

400

majority of snow melts to rain?

0 deg C

1 deg C

2 deg C

4 deg C

2 deg C

500

Ice nuclei active at -2 degree C?

silver iodide

volcanic ash

soot

bacteria

bacteria

500

assists aggregational growth of ice?

sintering

temperatures below -20 deg C

slow fall speed

supercooled liquid water

sintering

500

largest radar reflectivity?

melting snow crystals

rain

ice cloud particle

liquid drop

melting snow crystals

500

aggregation most effective due to sintering

0 degrees C

-10 degrees C

-20 degrees C

-30 degrees C

0 degrees C

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