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xenn [34]
2 years ago
12

Changes in which measurements do not shift the equilibrium of a chemical system

Chemistry
1 answer:
erastova [34]2 years ago
4 0

Any Change in the amount of an inert gas into a gas-phase equilibrium at constant volume does not result in a shift of the equilibrium of a chemical system. This follows the equilibrium law.

<h3>What is Equilibrium law ?</h3>

According to this principle, Adding an inert gas into a gas-phase equilibrium at constant volume does not result in a shift.

This is because the addition of a non-reactive gas does not change the partial pressures of the other gases in the container.


While the total pressure of the system increases, the total pressure does not have any effect on the equilibrium constant.

Learn more about chemical equilibrium here;
brainly.com/question/5537989

#SPJ1

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Calculate the pH after the addition of 10.0 mL of 0.240 M sodium hydroxide to 50.0 mL of 0.120 M acetic acid.
Goryan [66]

Answer:

pH = 4.58

Explanation:

The reaction of NaOH with acetic acid, CH₃COOH occurs as follows:

NaOH + CH₃COOH → CH₃COO⁻Na⁺ + H₂O

<em>Moles that react:</em>

NaOH = 10mL = 0.010L * (0,240mol / L) = 0.0024 moles NaOH

CH₃COOH = 50.0mL = 0.050L * (0.120mol / L) = 0.0060 moles CH₃COOH

That means after the reaction you will have:

CH₃COOH: 0.0060 mol - 0.0024 mol = 0.0036 moles

CH₃COO⁻Na⁺: 0.0024 moles

in solution, you will have the mixture of a weak acid (Acetic acid), with its conjugate base (sodium acetate, CH₃COO⁻Na⁺). And pH of this buffer can be determined using H-H equation:

pH = pKa + log [A⁻] / [HA]

For Acetic buffer pKa = 4.76:

pH = 4.76 + log [CH₃COO⁻Na⁺] / [CH₃COOH]

<em>Where [] is molarity of each species or moles</em>

<em />

Replacing:

pH = 4.76 + log [0.0024 moles] / [0.0036 moles]

<h3>pH = 4.58</h3>

<em />

6 0
3 years ago
Help please !! im not very good at science ):
frez [133]
Vas happenin!!

1-
A: 4

B: 48

C: 10


2-

A: 20

B: 18

C: 27

D: 16

Hope this helps!


-Zayn Malik
4 0
2 years ago
A student who did the same experiment that you did determined the specific heat for all of the metals. His values were all 0.10
Alona [7]

Answers are:

1) The metals were not heated to 100°C.

2) The metals cooled before they were added to the water.

3) The thermometer was not completely submerged in the water while reading.

4) The calorimeter was not sealed properly, so heat escaped.

First Law of Thermodynamics - any heat lost by the system must be absorbed by the surroundings.

-qsystem = qsurroundings.

Heat spontaneously flows from a hotter (in this example hot metal) to a colder body (in this example water).

Student did not have mistake in determining the specific heat of metals, because there is heat lost during experiment.

Heat capacity of a sample is expressed in units of thermal energy per degree temperature (J/K).

Heat capacity is often defined relative to a unit of mass (J/kg·K or J/g·K), prefixed with the term specific.

For example, specific heat capacity of water is 4.184 J/g·K (Cp(H₂O) = 4.184 J/g·K).

7 0
3 years ago
Read 2 more answers
PLZZZZZZZZZZZZZZZZZZZZZZZZZZZ HELLLLLLLLLP
Pavlova-9 [17]

Answer:

C. Precipitation

Explanation:

6 0
3 years ago
Read 2 more answers
18.) What is the reading of the liquid in this<br> graduated cylinder
MissTica

Answer:

24

Explanation:

You read at the bottom of the meniscus or curve and count.

7 0
3 years ago
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