The partial pressure exerted by a gas in a mixture, depends on the mole
fraction of the gas and the pressure exerted by the mixture.
The partial pressure of H₂O is 20 atm.
Reasons:
Given parameters are;
Explosion equation is 4C₃H₅N₃O₉ → 12CO₂(g) + O₂(g) + 6N₂(g) + 10H₂O(g)
Amount of nitroglycerine = 227 g
Molar mass of nitroglycerine = 227 g/mol
Required:
Partial pressure of the water vapor
Solution:
Number of moles of nitroglycerine in the reaction = 1 mole
Therefore;
Number of moles of CO₂ = 12/4 = 3 moles
Number of moles of O₂ = 0.25 moles
Number of nitrogen, N = 1.5 moles
Number of moles of H₂O = 2.5 moles
According to Raoults law, we have;
The partial pressure of H₂O =
Therefore, partial pressure of H₂O = = 20 atm.
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This is an incomplete question, here is a complete question.
Nitroglycerine (C₃H₅N₃O₉) explodes with tremendous force due to the numerous gaseous products. The equation for the explosion of Nitroglycerine is:
A scientist conducts an experiment to characterize a bomb containing nitroglycerine. She uses a steel, ridge container for the test.
Volume of rigid steel container: 1.00 L
Molar mass of Nitroglycerine: 227 g/mol
Temperature: 300 K
Amount of Nitroglycerine tested: 227 g
Value for ideal gas constant, R: 0.0821 L.atm/mol.K
In a second experiment, the total pressure is observed to be 58 atm. what is the partial pressure of the water vapor produced?
Answer : The partial pressure of the water vapor is, 20.01 atm
Explanation :
First we have to calculate the moles of
Now we have to calculate the moles of
The balanced chemical reaction is:
From the balanced chemical reaction we conclude that,
As, 4 moles of react to give 12 moles of
So, 1 moles of react to give
moles of
and,
As, 4 moles of react to give 1 moles of
So, 1 moles of react to give
moles of
and,
As, 4 moles of react to give 6 moles of
So, 1 moles of react to give
moles of
and,
As, 4 moles of react to give 10 moles of
So, 1 moles of react to give
moles of
Now we have to calculate the mole fraction of water.
Now we have to calculate the partial pressure of the water vapor.
According to the Raoult's law,
where,
= partial pressure of water vapor gas = ?
= total pressure of gas = 58 atm
= mole fraction of water vapor gas = 0.345
Now put all the given values in the above formula, we get:
Therefore, the partial pressure of the water vapor is, 20.01 atm
Answer : The total volume of gas in the container will be, 7 liters
Explanation :
The given balanced chemical reaction is,
From the balanced chemical reaction we conclude that
2 mole of ammonia gas decomposes to give 1 mole of nitrogen gas and 3 moles of hydrogen gas.
According to the Avogadro's Law, the volume of the gas is directly proportional to the number of moles of the gas at constant pressure and temperature.
or,
where,
= initial volume of ammonia gas = 3.5 L
= total volume of gas in the container = ?
= initial moles of ammonia gas = 2 mole
= final moles of all gas (nitrogen + hydrogen) = (1 + 3) = 4 moles
Now put all the given values in the above formula, we get the total volume of gas in the container.
Therefore, the total volume of gas in the container will be, 7 liters
Answer:
16 protons and 19 neutrons
Answer:
build better enclosures to decrease overgrazing by livestock.
Explanation:
b. a double bond.
c. ionic.
d. polyatomic.
A covalent bond where electrons are shared unequally is known as a polar bond. This unequal sharing occurs due to differences in electronegativity between the two atoms involved in the bond.
A covalent bond in which electrons are shared unequally is defined as a polar bond. This corresponds to option a) polar. This occurs because one atom is more electronegative and pulls the shared electron pair towards its nucleus making the bond polar, having a partial positive and partial negative end. Option b) a double bond, refers to a covalent bond where two pairs of electrons are shared between atoms. Option c) ionic refers to a bond where electrons are completely transferred from one atom to another and option d) polyatomic refers to a molecule that consists of more than two atoms.
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Answer:
3,5-dimethyl-2-octene
Explanation:
The parent chain will be choosen based on the highest value. In this case, if we count from top to bottom, we'll get seven carbon, however if we count from the second carbon, going left and then down, we'll get eight carbon. So the parent chain is octene
The double bond is located at the second carbon and the methyl groups are located on carbon 3 & 5. Since there are two methyl groups, we add di- in front of methyl to indicate two methyl groups present.
Note: The functional group has to be prioritise and it needed to be a part of the parent chain. In this case, the functional group is the double bond. (alkene)
The compounds are named as 2-ethyl-4-methylheptene, 3,5-dimethyl-2-octene, 2-ethyl-4-methylheptane and 3-methyl-5-propyl-2-hexene based on the IUPAC nomenclature rules for organic compounds.
The compounds presented in your question are named based on the rules of the International Union of Pure and Applied Chemistry (IUPAC), which are used for organic compounds. Here are their names:
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