Answer : The moles of added will be 1.12 mole.
Solution : Given,
Moles of and at equilibrium = 0.200 mol
Moles of and at equilibrium = 0.600 mol
First we have to calculate the concentration of at equilibrium.
Now we have to calculate the value of equilibrium constant.
The given equilibrium reaction is,
The expression of will be,
Now we have to calculate the moles of added.
Let the moles of added is 'x'.
The given equilibrium reaction is,
Initially 0.200 0.200 0.600 0.600
Added moles 0 0 x 0
Change +0.1 +0.1 -0.1 -0.1
Final 0.3 0.3 (0.5+x) 0.5
The expression of will be,
Therefore, the moles of added will be 1.12 mole.
of are added at constant temperature and volume to increase the amount of carbon monoxide to 0.300 mol.
Further Explanation:
Chemical equilibrium is the state in which the concentration of reactants and products become constant and do not change with time. This is because the rate of forward and backward direction becomes equal. The general equilibrium reaction is as follows:
Equilibrium constant is the constant that relates to the concentration of product and reactant at equilibrium. The formula to calculate the equilibrium constant for the general reaction is as follows:
Here,
K is the equilibrium constant.
P and Q are the reactants.
R and S are the products.
The given reaction is as follows:
The expression for the equilibrium constant for the given reaction is as follows:
......(1)
Here,
K is the equilibrium constant.
is the concentration of carbon dioxide.
is the concentration of hydrogen.
is the concentration of carbon monoxide.
is the concentration of water.
Substitute 0.600 mol/L for , 0.600 mol/L for , 0.200 mol/L for and 0.200 mol/L for in equation (1).
The value of equilibrium constant comes out to be 9 and it remains the same for the given reaction.
Rearrange equation (1) to calculate .
......(2)
Substitute 9 for K, 0.300 mol/L for , 0.200 mol/L for and 0.600 mol/L for in equation (2).
Initially, 0.6 moles of were present in a 1-L container. But now 0.9 moles of are present in it. So the extra amount of can be calculated as follows:
Therefore 0.3 moles of carbon dioxide are added in a 1-L container.
Learn more:
1. Calculation of equilibrium constant of pure water at 25°c: brainly.com/question/3467841
2. Complete equation for the dissociation of (aq): brainly.com/question/5425813
Answer details:
Grade: Senior School
Subject: Chemistry
Chapter: Equilibrium
Keywords: CO, H2, CO2, H2O, 0.9 mol/L, 0.2 mol/L, 0.6 mol/L, 0.3 mol/L, K, carbon dioxide, water, hydrogen, carbon monoxide.
B. slow
C. variable
D. constant
Answer:
correct answer is option C (constant)
Explanation:
Radioactive decay of radioactive element occur at known rates, the unit of radioactive decay is called half-life. The amount of time a radioactive element takes for half of the parent atoms to decay is known as half-life of a radioactive element
During Radioactive decay radioactive elements emits a particle. It's impossible to predict exactly when a given atom of a substance will emit a particular particle, but the decay rate of a radioactive element over a long period of time is constant.
By radioactive decay scientist can determine the age of that particular element. If radioactive decay will vary than age cannot be determined from radioactive decay.
The energy fro the nuclear reaction go on to split other nearby atoms
I hope that's help !
Answer:phone
Explanation:phone
Answer:
do something you love to do, or watch your favorite TV show or series :)
Answer:
SOLID
Explanation: