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