Use the computer (i.e. DESMOS - the online graphing calculator) to make a graph of P (in Pa) vs V (in cubic meters) for a mole of diatomic oxygen at 154.6 K. Take your range in volume to go from 0 to 6 × 10-4 m³, and take your range in pressure to go from 0 to 6 × 106 Pa

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4.
when the tempeakue of a gas is
will begin do metice departures fiom
reduced
the ideal
chacactenaed
you
law. These departeres are
gud
by the Van den Waals equatron of
fhen
stake
V-6
RT
when V= Y is the woleume per mole, and
a and b ari the
Table
a(Nm")
" Von der Waals cmstenta"
Van den Weals consdunts
b (m3)
2.38X105
2.65X10
He
3.46 X103
2.47x162
1. 34 x107
1.38x101
Itz
-5
-5
3.87 xi0
Nz
Oz
3.18X10
1
Transcribed Image Text:4. when the tempeakue of a gas is will begin do metice departures fiom reduced the ideal chacactenaed you law. These departeres are gud by the Van den Waals equatron of fhen stake V-6 RT when V= Y is the woleume per mole, and a and b ari the Table a(Nm") " Von der Waals cmstenta" Van den Weals consdunts b (m3) 2.38X105 2.65X10 He 3.46 X103 2.47x162 1. 34 x107 1.38x101 Itz -5 -5 3.87 xi0 Nz Oz 3.18X10 1
Use the computer (i.e. DESMOS - the online graphing calculator) to make
a graph of P (in Pa) vs V (in cubic meters) for a mole of diatomic oxygen at
154.6 K. Take your range in volume to go from 0 to 6 × 10-4 m³, and take your
range in pressure to go from 0 to 6 × 106 Pa
Transcribed Image Text:Use the computer (i.e. DESMOS - the online graphing calculator) to make a graph of P (in Pa) vs V (in cubic meters) for a mole of diatomic oxygen at 154.6 K. Take your range in volume to go from 0 to 6 × 10-4 m³, and take your range in pressure to go from 0 to 6 × 106 Pa
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