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tino4ka555 [31]
2 years ago
7

A sample of 88.0 g CO2 is held at 291 K in a 40.0 L container. What is the pressure this gas exerts on the container. Express yo

ur answer in kPa.
Chemistry
1 answer:
SashulF [63]2 years ago
7 0

Answer:- 121 kPa.

Solution:- mass, temperature and volume are given for carbon dioxide gas asked to calculate the pressure this gas exerts on the container.

It is based on ideal gas law equation, PV = nRT .

Where, P is the pressure in atm, V is the volume in Liters, n is the number of moles of the gas, R is the universal gas constant and it's value is \frac{0.0821atm.L}{mol.K} and T is the kelvin temperature.

Given data:- mass = 88.0 g

T = 291 K

V = 40.0 L

P = ?

We need to convert the mass to moles and for this we divide the mass by molar mass. Molar mass of carbon dioxide gas is 44.01 gram per mol.

n=88.0g(\frac{1mol}{44.01g})

n = 2.00 mol

The equation could be rearranged for pressure as:

P=\frac{nRT}{V}

Let's plug in the values and solve this for P.

P=\frac{2.00mol*(\frac{0.0821atm.L}{mol.K})*291K}{40.0L}

P = 1.1946 atm

Since the answer is asked to report in kPa, let's convert atm to kPa.

1 atm = 101.325 kPa

So, 1.1946atm(\frac{101.325kPa}{1atm})

= 121 kPa

So, the pressure this gas exerts on the container is 121 kPa.

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The question is incomplete , complete question is:

Hydrogen, a potential future fuel, can be produced from carbon (from coal) and steam by the following reaction:

C(s)+ 2 H_2O(g)\rightarrow 2H_2(g)+CO_2(g).\Delta H=?

Note that the average bond energy for the breaking of a bond in CO2 is 799 kJ/mol. Use average bond energies to calculate ΔH of reaction for this reaction.

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The ΔH of the reaction is -626 kJ/mol.

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The ΔH of the reaction is -626 kJ/mol.

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