Answer: The number of moles that initially occupied a 250ml container remains the same when it occupied 750ml container but they are freer because the 750ml container is bigger and has more space. So the gases now occupied more space and their movement is less curtailed unlike when they were in 250ml container
2)38.5 g
3)200 g
4)617 g
200 g is the mass of would be used. Hence, option C is correct.
Molarity (M) is the amount of a substance in a certain volume of solution. Molarity is defined as the moles of a solute per litres of a solution. Molarity is also known as the molar concentration of a solution.
Total volume = 10 x 0.250 liters = 2.5 liters
M = n ÷ V
Total moles: n = M x V
= 0.720mol/liter x 2.5 liter
=1.8 mol
Molar mass = grams / n
1.8 mol x 110.98 g/mol
= 199.8 grams
Hence, option C is correct.
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(2) melting of copper
(3) condensation of ethanol vapor
(4) sublimation of iodine
Answer:
The correct answer is option 3.
Explanation:
Condensationof ethanol vapors is an exothermic process. This is because particles in gaseous has highest energy . Some of this energy gets released when these particles or ethanol vapors condenses into a liquid state where they have less amount of energy in comparison to gaseous state.
As we know that exothermic reaction are those reaction in which heat is released into the surroundings.
Where as the other options are example of an endothermic reaction.where heat is absorbed from the surroundings.
Hence, the correct answer is option 3.
Calculate the new partial pressures after equilibrium is reestablished. [in torr]
PPCl3
PPCl2
PPCl5
equilibrium is a situation in which economic forces such as supply and demand are balanced and in the absence of external influences the values of economic variables will not change
The equilibrium constant depends on the following:-
The formula used in the question is as follows:-
, After putting the value, the equilibrium constant is as follows:-
After solving it, the equilibrium constant is 1.245.
The pressure in different systems is as follows:-
Hence, the total pressure is:-
After solving it, the P2 is 32.8torr.
The equilibrium constant in the second case is:-
After putting the value,
After solving, the value of x is 6.402torr
Hence, the partial pressure is 6.798, 26.398, and 223.402 respectively.
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Answer:
The new partial pressures after equilibrium is reestablished for :
The new partial pressures after equilibrium is reestablished :
The new partial pressures after equilibrium is reestablished for :
Explanation:
At equilibrium before adding chlorine gas:
Partial pressure of the
Partial pressure of the
Partial pressure of the
The expression of an equilibrium constant is given by :
At equilibrium after adding chlorine gas:
Partial pressure of the
Partial pressure of the
Partial pressure of the
Total pressure of the system = P = 263.0 Torr
At initail
(13.2) Torr (32.8) Torr (13.2) Torr
At equilbriumm
(13.2-x) Torr (32.8-x) Torr (217.0+x) Torr
Solving for x;
x = 6.402 Torr
The new partial pressures after equilibrium is reestablished for :
The new partial pressures after equilibrium is reestablished :
The new partial pressures after equilibrium is reestablished for :
Nonpolar covalent bonds form when two atoms of the same element or different elements share electrons equally, resulting in a balanced charge distribution. Examples include Methane (CH4) and molecular oxygen (O2). Another case is the CO2 molecule, which is nonpolar because its polar bond moments cancel out.
This leads to a balanced distribution of charges in the molecule, making it nonpolar. Methane, for instance, consists of a carbon atom that shares four electrons equally with four hydrogen atoms, resulting in a bond where the difference in electronegativity between the carbon and hydrogen atoms is minimal.
Another case is CO₂ where the molecule, though consisting of polar bonds, is overall nonpolar because the geometric layout of the molecule allows for the bond moments to cancel each other out, hence no region of the molecule is more positive or negative than any other. Considering the geometry of the molecule is essential when determining the polarity of a molecule with more than one bond.
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Answer:
A figure of the thermometer for this problem is not given so I cannot really give a specific answer. Maybe this would help. The minimum temperature would be the lowest reading possible in the thermometer. Most probably it is option C or D. Hope this helps.