Lower Temperature
The boiling point is defined as the temperature at which the vapor pressure of a given liquid becomes equal to the external pressure or atmospheric pressure. Boiling point is mainly effected by following factors:
1) Inter-Molecular Interactions:
Greater the intermolecular interactions greater will be the boiling point because more energy is required to overcome these intermolecular interactions.
Example:
Water = 100 °C
Diethyl ether = 34.5 °C
Water requires more energy because it contains hydrogen bond interactions which are considered the strongest intermolecular interactions. While, Diethyl ether lacks Hydrogen bondings.
2) External Pressure:
The boiling point also varies with changing the external pressure for the same solvent. Greater the external pressure greater will be the boiling points and vice versa.
Example:
Water:
External Pressure Boiling Point
1 atm 100 °C
0.921 atm 98 °C
0.425 atm 72 °C
Answer:
The mass of 2 moles of NO₂ is 92 grams.
Explanation:
Given that,
Number of moles, n = 2 moles
We need to find the mass of 2 moles of NO₂. We know that the number of moles is given by the formula as :
m is the given mass
M is the molar mass of NO₂,
So, the mass of 2 moles of NO₂ is 92 grams. Hence, this is the required solution.
The liquid that is placed in an evacuated sealed flask will reach in dynamic equilibrium if the amount of liquid inside the flask will stop converting into vapor. This process is to balanced the amount of substance of both phases inside the flask.
the reduced substance is Cl2.
B. BeAs
C. Be3As2
D. Be2As3
Answer:
Be3As2
Explanation:
Answer:
C) Be3As2
Explanation:
A.P.E.X
Answer:
C. Molecules or ions of a solute spread throughout the water molecules.
Explanation:
C. Molecules or ions of a solute spread throughout the water molecules.