combined icebergs exothermic 6 inversely increase melting gas deposition directly proportional random liquid pressure law ice absolute zero attraction are too weak vapor pressure= atmospheric pressure as proportional pressure quickly dry pv=pv temperature and solid pascal of 99% change the more not theory freezing condensation factors that affect gas pressure kinetic vaporization evaporation shapes sublimation doesn't v/t=v/t heat of fusion vibrate in a fixed location plasma kinetic energy more no endothermic lowering matter volumes gas phase change combined icebergs exothermic 6 inversely increase melting gas deposition directly proportional random liquid pressure law ice absolute zero attraction are too weak vapor pressure= atmospheric pressure as proportional pressure quickly dry pv=pv temperature and solid pascal of 99% change the more not theory freezing condensation factors that affect gas pressure kinetic vaporization evaporation shapes sublimation doesn't v/t=v/t heat of fusion vibrate in a fixed location plasma kinetic energy more no endothermic lowering matter volumes gas phase change
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combined
icebergs
exothermic
6
inversely
increase
melting
gas
deposition
directly proportional
random
liquid
pressure
law
ice
absolute zero
attraction are too weak
vapor pressure=
atmospheric pressure
as
proportional
pressure
quickly
dry
pv=pv
temperature
and
solid
pascal
of
99%
change
the
more
not
theory
freezing
condensation
factors that affect gas pressure
kinetic
vaporization
evaporation
shapes
sublimation
doesn't
v/t=v/t
heat of fusion
vibrate in a fixed location
plasma
kinetic energy
more
no
endothermic
lowering
matter
volumes
gas
phase change