(a) Interpretation: To determine γ in the low-temperature and the high temperature limits for CO 2 (g). Concept introduction: The heat capacity of the system between any two temperatures is defined as the quantity of heat required to raise the temperature from lower to higher temperature divide by the temperature difference. And if the mass of the system is one mole then the system of the heat capacity is called the molar heat capacity.
(a) Interpretation: To determine γ in the low-temperature and the high temperature limits for CO 2 (g). Concept introduction: The heat capacity of the system between any two temperatures is defined as the quantity of heat required to raise the temperature from lower to higher temperature divide by the temperature difference. And if the mass of the system is one mole then the system of the heat capacity is called the molar heat capacity.
To determine γ in the low-temperature and the high temperature limits for CO2 (g).
Concept introduction:
The heat capacity of the system between any two temperatures is defined as the quantity of heat required to raise the temperature from lower to higher temperature divide by the temperature difference. And if the mass of the system is one mole then the system of the heat capacity is called the molar heat capacity.
Interpretation Introduction
(b)
Interpretation:
To determine γ in the low-temperature and the high temperature limits for H2O (g).
Concept introduction:
The heat capacity of the system between any two temperatures is defined as the quantity of heat required to raise the temperature from lower to higher temperature divide by the temperature difference. And if the mass of the system is one mole then the system of the heat capacity is called the molar heat capacity.
In the following molecule, indicate the hybridization and shape of the indicated atoms.
CH3
N
CH3
HÖ:
H3C
CI:
::
Q3: Draw the Lewis structures for nitromethane (CH3NO2) and methyl nitrite (CH3ONO). Draw at
least two resonance forms for each. Determine which form for each is the major resonance
contributor.
Q1: Draw a valid Lewis structures for the following molecules. Include appropriate charges and
lone pair electrons. If there is more than one Lewis structure available, draw the best structure.
NH3
Sulfate
Boron tetrahydride.
C3H8 (linear isomer)
OCN
NO3
CH3CN
SO2Cl2
CH3OH2*