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