The equilibrium partial pressure of NH 3 (g) has to be calculated. Concept Introduction: Equilibrium constant ( K p ) : In gas phase reactions, partial pressure is used to write equilibrium equation than molar concentration. Equilibrium constant ( K p ) is defined as ratio of partial pressure of products to partial pressure of reactants. Each partial pressure term is raised to a power, which is same as the coefficients in the chemical reaction Consider the reaction where A reacts to give B. aA ⇌ bB Rate of forward reaction = Rate of reverse reaction k f P A a =k r P B a On rearranging, P B b P A a = k f k r =K p Where, k f is the rate constant of the forward reaction. k r is the rate constant of the reverse reaction. K p is the equilibrium constant.
The equilibrium partial pressure of NH 3 (g) has to be calculated. Concept Introduction: Equilibrium constant ( K p ) : In gas phase reactions, partial pressure is used to write equilibrium equation than molar concentration. Equilibrium constant ( K p ) is defined as ratio of partial pressure of products to partial pressure of reactants. Each partial pressure term is raised to a power, which is same as the coefficients in the chemical reaction Consider the reaction where A reacts to give B. aA ⇌ bB Rate of forward reaction = Rate of reverse reaction k f P A a =k r P B a On rearranging, P B b P A a = k f k r =K p Where, k f is the rate constant of the forward reaction. k r is the rate constant of the reverse reaction. K p is the equilibrium constant.
Definition Definition Study of the speed of chemical reactions and other factors that affect the rate of reaction. It also extends toward the mechanism involved in the reaction.
Chapter 17, Problem 17.48P
Interpretation Introduction
Interpretation:
The equilibrium partial pressure of NH3(g) has to be calculated.
Concept Introduction:
Equilibrium constant(Kp):
In gas phase reactions, partial pressure is used to write equilibrium equation than molar concentration. Equilibrium constant (Kp) is defined as ratio of partial pressure of products to partial pressure of reactants. Each partial pressure term is raised to a power, which is same as the coefficients in the chemical reaction
Consider the reaction where A reacts to give B.
aA⇌bB
Rate of forward reaction = Rate of reverse reactionkfPAa=krPBa
What impact would adding twice as much Na2CO3 than required for stoichiometric quantities have on the quantity of product produced? Initial results attached
Given that a theoretical yield for isolating Calcium Carbonate in this experiment would be 100%. From that information and based on the results you obtained in this experiment, describe your success in the recovery of calcium carbonate and suggest two possible sources of error that would have caused you to not obtain 100% yield.
Results are attached form experiment
5) Calculate the flux of oxygen between the ocean and the atmosphere(2 pts), given that:
(from Box 5.1, pg. 88 of your text):
Temp = 18°C
Salinity = 35 ppt
Density = 1025 kg/m3
Oxygen concentration measured in bulk water = 263.84 mmol/m3
Wind speed = 7.4 m/s
Oxygen is observed to be about 10% initially supersaturated
What is flux if the temperature is 10°C ? (2 pts) (Hint: use the same density in your calculations). Why do your calculated values make sense (or not) based on what you know about the relationship between gas solubility and temperature (1 pt)?
Chapter 17 Solutions
CONNECT ACCESS CARD FOR CHEMISTRY: MOLECULAR NATURE OF MATTER AND CHANGE
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