The rms speed for the CO molecule at given temperature and the ratio between rms speed of CO and argon should be determined. Concept introduction: The root mean square velocity μ is defined as the measure of velocity of particle in gas. It is the method to determine the single velocity value for particles. Root mean square velocity can be determined, μ r m s = ( 3 R T M ) 1 / 2 (1) ( gas constant ) R = 8 . 3 1 4 J K m o l M = M o l a r m a s s Molar mass: The molar mass of a substance is determined by dividing the given mass of substance by the amount of the substance.
The rms speed for the CO molecule at given temperature and the ratio between rms speed of CO and argon should be determined. Concept introduction: The root mean square velocity μ is defined as the measure of velocity of particle in gas. It is the method to determine the single velocity value for particles. Root mean square velocity can be determined, μ r m s = ( 3 R T M ) 1 / 2 (1) ( gas constant ) R = 8 . 3 1 4 J K m o l M = M o l a r m a s s Molar mass: The molar mass of a substance is determined by dividing the given mass of substance by the amount of the substance.
Solution Summary: The author defines the root mean square velocity mu as the measure of velocity of particle in gas and determines the single velocity value for particles.
Interpretation: The rms speed for the CO molecule at given temperature and the ratio between rms speed of CO and argon should be determined.
Concept introduction:
The root mean square velocity μ is defined as the measure of velocity of particle in gas. It is the method to determine the single velocity value for particles.
Root mean square velocity can be determined,
μrms=(3RTM)1/2 (1)
(gas constant)R=8.314JKmolM=Molarmass
Molar mass: The molar mass of a substance is determined by dividing the given mass of substance by the amount of the substance.
4. Calculate the total number of sigma bonds and total number of pi bonds in each of the following
compounds.
a.
HH :D:
+1
I
H-N-C-C-O-H
I
H
b.
HH H
Н
:N=C-C-C=C-CEC-H
:0:
total o
H-C-H
H-C = `C-H
I
H.
11
H-C = C=
CH
H
total o
total π
total π
1
H
In the following reaction, what quantity in moles of CH₃OH are required to give off 4111 kJ of heat? 2 CH₃OH (l) + 3 O₂ (g) → 2 CO₂ (g) + 4 H₂O(g) ∆H° = -1280. kJ
Indicate the processes in the dismutation of Cu2O.
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