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mojhsa [17]
3 years ago
9

In one or two sentences, describe a scenario using the combined gas law in which changes occur in the pressure and temperature o

f an enclosed gas but the volume does not change.
Chemistry
1 answer:
MrRa [10]3 years ago
7 0

There are many scenarios in which the situation in question may take place, the rule is that for this to happen, the temperature and pressure of the gas must <em><u>change </u></em><em><u>by the same amount. </u></em>

As stated, the temperature and the pressure of the enclosed gas may change, in which they may <em><u>increase </u></em>or <em><u>decrease</u></em>, but the change must be by the same magnitude for each value. What this means is that is temperature increases by 5, so then must the pressure.

This is due to the relationship between the temperature and the pressure of an enclosed gas when using the combined gas law. The law takes the form of a fraction in which the pressure is found as part of the <u>numerator </u>and the temperature is part of the <u>denominator</u>, therefore, by increasing at the same rate, the final product and the volume will not be affected.

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Answer:

34%

Explanation:

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3 years ago
A container of gas is initially at 0.25 atm and 0 ˚C. What will the pressure be at 125 ˚C?
Pani-rosa [81]

Answer:

0.37atm

Explanation:

Given parameters:

Initial pressure  = 0.25atm

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Unknown:

Final pressure  = ?

Solution:

To solve this problem, we use a derivative of the combined gas law;

           \frac{P1}{T1}  = \frac{P2}{T2}

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  1 and 2 are initial and final values

        \frac{0.25}{273}   = \frac{P2}{398}  

         P2  = 0.37atm

3 0
2 years ago
"acid is responsible for the odor in rancid butter. a solution of 0.25 m butyric acid has a ph of 2.71. what is the ka for"
Salsk061 [2.6K]

Answer:- The Ka for the acid is 1.53*10^-^5 .

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HA(aq)\rightarrow H^+(aq) + A^-(aq)

Now, we make the ice table for this equation as:

HA(aq)\rightarrow H^+(aq) + A^-(aq)

I 0.25 0 0

C -X +X +X

E (0.25 - X) X X

where, I stands for initial concentration, C stands for change in concentration and E stands for equilibrium concentration.

X is the change in concentration and from ice table it's same as the concentration of hydrogen ion that is calculated from given pH.

Ka = [H^+][A^-]\frac{1}{HA}

Where, Ka is the acid ionization constant. Let's plug in the values.

Ka = \frac{X^2}{0.25-X}

Let's calculate the value of X first using the equation:

pH = -log[H^+][/tex]

on taking antilog ob above equation we get:

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[H^+]=10^-^2^.^7^1

[H^+] = 0.00195

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Let's plug in this value of X in the equation:-

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Ka=1.53*10^-^5

So, the value of Ka for butyric acid is 1.53*10^-^5 .

8 0
3 years ago
Read 2 more answers
(c) He, Na, Mg (increasing order of melting point).​
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Answer:

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Explanation:

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