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"Chemistry midterm 1"

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Words
(p1v1)/t1 = (p2v2)/t2
1/3*pi*r^2*h
101.325 kpa
2pi*r
4*pi*r^2
4/3*pi*r^3
760.00 torr
760.00mm hg
a change directly from a gas to a solid
a change directly from a solid to a gas
acceleration
all compounds (c2h3o2)- with exception with ag+
all compounds clo3-
all compounds clo4-
all compounds containing f- with exception of mg2+, ca2+, sr2+,
all compounds of (so4)2- with exception with sr2+, (hg2)2+, ba
all compounds of br- with exception with ag+, (hg2)2+, and pb2
all compounds of cl- with exception with ag+, (hg2)2+, and pb2+
all compounds of i- with exception with ag+, (hg2)2+, and pb2+
all compounds of alkali metals (1a)
all compounds of nh4+
all compounds of no3-
all salt of (c2o4)2- with exception of alkali metals, nh4+
all salt of (cro4)2- with exception of alkali metals, nh4+
all salt of (so3)2- with exception of salts of alkali metals, nh
all salt of s2- with exception of alkali metals, nh4+
all salts of (co3)2- with exception of alkali metals, nh4+
all salts of (po4)2- with exception of alkali metals, nh4+
attraction between ion and polar molecules - ex/ nacl+h2o
attraction between ions ex/nacl, mgso4
attraction where the unsymmetrical electron density in one molec
ba(oh)2
binds a substance to a surface
binds similar molecule to one another
boiling from liquid to gas
ca(oh)2
center
ch3nh2
change in energy = q + w
change in h = m * cp * change in t
continuity test fail at 1
continuity test fail at 2
continuity test fail at 3
corner
dipole-dipole attraction involving hydrogen and n,o,f
edge
energy gained by system
energy lost by system
face
from a gas to a liquid
gas molecules increases
h2co3
h2so3
h2so4
h3po4
hbr
hc2h3o2
hcl
hclo3
hcn
hf
hi
hno3
ideal gas law and density
koh
lim of q approaches 0 (1 - cosq)/q
lim of q approaches 0 (sinq/q)
lioh
liquid to solid
naoh
nh3
oh- compounds with exceptions with alkali metals (1a) and nh4+,
oxide compounds o2- with exceptions with alkali metals (1a) and
p1/t1 = p2/t2
p1v1=p2v2
partially positive end attracted to partially negative end ex/h2
pi*r^2
solid to liquid
solids to liquids
solids/liquids to gas
sr(oh)2
system gains heat
system loses heat
temperature above 0 degree celsius
temperature below 0 degree celsius
temperature is exactly 0 degree celsius
temperature, volume, number of moving particles
v = (nrt)/p
v1/t1 = v2/t2
vaporization at the surface, reduces volumes; rate increases wit
velocity
weak attractive forces between non-polar molecules
work done by the system
work done on system
y' cosx
y' cotx
y' cscx
y' secx
y' sinx
y' tanx