answer: THIS IS CORRECT I TOOK THE TEST D: BOTH A AND C
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B. The amount of NO and SO3 would decrease.
C. The amount of NO and SO3 would increase.
D. The amount of NO2 and SO2 would increase.
The equilibrium of this chemical reaction would change if NO₂ were added because: C. the amount of NO and SO₃ would increase.
An equilibrium can be defined as a condition in which there is no net change in the amounts of both reactants and products with respect to time, during a reversible chemical reaction.
This ultimately implies that, the rate of the forwardchemical reaction is equal to the rate of the backwardchemical reaction at equilibrium.
In this context, we can infer and logically conclude that the equilibrium of this chemical reaction would change when NO₂ is added because the amount of NO and SO₃ would increase:
SO₂(g) + NO₂(g) ⇆ NO(g) + SO₃(g) + heat
Read more on equilibrium here: brainly.com/question/5081082
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B. attracted to the anode of the voltage source.
C. considered an impurity in the crystal.
D. incapable of carrying a charge.
(D. is wrong)
Answer:
A. attracted to the negative terminal of the voltage source.
Explanation:
bc that is what the hole that's left behind does
B. the small intestine
C. the heart
D. the large intestine
The differential relationship has been .
The gas has been termed to be the ideal gas. For an ideal gas at a constant temperature, the relationship of the change in pressure and volume can be given as constant. The relationship has been given with the application of Boyle's law.
The product of the pressure and volume has been a constant quantity for a reaction.
Pressure Volume = Constant
PV = C
V =
Differentiating the equation:
The differential relationship has been .
For more information about pressure at a constant temperature, refer to the link:
Answer:
A differential equation that could describe the relationship of the rate of change of the volume of gas with respect to the pressure is;
V' = .
Explanation:
Boyle's law states that at constant temperature, the pressure of a given mass of gas is inversely proportional to its volume.
That is;
P₁×V₁ = P₂×V₂ or
P×V = Constant, C
That is V =
Therefore, the rate of change of volume of a gas is given as
which gives
That is the rate of change of the volume of gas with respect to the pressure is proportional to the reciprocal of the square of the pressure.
.
V' = .