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insens350 [35]
2 years ago
10

A sample of 508.4 grams of copper completely reacted with oxygen to form 572.4 grams of a copper oxide product. how many grams o

f oxygen must have reacted?
Chemistry
1 answer:
Svet_ta [14]2 years ago
7 0

According to law of conservation of mass, mass can neither be destroyed nor created in a chemical reaction. Thus, sum of masses of reactants must be equal to sum of masses of products in a reaction.

The chemical reaction is as follows:

2Cu+O_{2}\rightarrow 2CuO

Here, sum of masses of Cu and oxygen gas should be equal to CuO formed.

2m_{Cu}+m_{O_{2}}=2m_{CuO}

Thus, mass of oxygen will be:

m_{O_{2}}=2(572.4-508.4)g=128 g

This can be further proved as follows:

The balanced chemical reaction is as follows:

2Cu+O_{2}\rightarrow 2CuO

Here, 2 moles of Cu completely reacts with 1 mole of O_{2} to give 2 moles of CuO.

Thus, 1 mole of Cu reacts with 0.5 moles of O_{2} .

The mass of Cu is 508.4 and molar mass is 63.546 g/mol, number of moles can be calculated as follows:

n=\frac{m}{M}=\frac{508.4 g}{63.546 g/mol}=8 mol

Thus, number of moles of  O_{2} reacting will be:

n_{O_{2}}=8\times 0.5 mol=4 mol

Molar mass of oxygen molecule is 32 g/mol thus, mass can be calculated as follows:

m=n×M=4 mol×32 g/mol=128 g/mol

This satisfies the law of conservation of mass.


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0.658 g of a compound containing only carbon, hydrogen, and oxygen is burned in excess O2. CO2(1.285 g) and H20 (0.658g) are pro
mestny [16]

Answer:

The empirical formula is = C_2H_5O

The formula of the compound = C_4H_{10}O_2

Explanation:

Explanation:

Mass of water obtained = 0.658 g

Molar mass of water = 18 g/mol

Moles of H_2O = 0.658 g /18 g/mol = 0.03656 moles

2 moles of hydrogen atoms are present in 1 mole of water. So,

<u>Moles of H = 2 x 0.03656 = 0.07311 moles </u>

Molar mass of H atom = 1.008 g/mol

Mass of H in molecule = 0.07311 x 1.008 = 0.07369 g

Mass of carbon dioxide obtained = 1.285 g

Molar mass of carbon dioxide = 44.01 g/mol

Moles of CO_2 = 1.285 g /44.01 g/mol = 0.029197 moles

1 mole of carbon atoms are present in 1 mole of carbon dioxide. So,

<u>Moles of C = 0.029197 moles </u>

Molar mass of C atom = 12.0107 g/mol

Mass of C in molecule = 0.029197 x 12.0107 = 0.350676 g

Given that the compound only contains hydrogen, oxygen and carbon. So,

Mass of O in the sample = Total mass - Mass of C - Mass of H

Mass of the sample = 0.658 g

Mass of O in sample = 0.658 - 0.350676 - 0.07369 = 0.233634 g

Molar mass of O = 15.999 g/mol

<u>Moles of O = 0.233634 / 15.999 = 0.014603 moles </u>

Taking the simplest ratio for H, O and C as:

0.07311 : 0.014603 : 0.029197

<u>= 5 : 1 : 2</u>

<u>The empirical formula is = C_2H_5O </u>

Molecular formulas is the actual number of atoms of each element in the compound while empirical formulas is the simplest or reduced ratio of the elements in the compound.

Thus,

Molecular mass = n × Empirical mass

Where, n is any positive number from 1, 2, 3...

Mass from the Empirical formula = 2×12 + 5×1 + 1×16= 45 g/mol

Molar mass = 90 g/mol

So,

Molecular mass = n × Empirical mass

90 = n × 45

⇒ n = 2

<u>The formula of the compound = C_4H_{10}O_2 </u>

7 0
2 years ago
3. What is the volume of a salt crystal measuring 2.44 x 10-2 m by 1.4 x 10-3 m by 8.4 x 10-3 m?
AlexFokin [52]

Answer:

2.9× 10⁻⁷ m³

Explanation:

Given data:

Measurements of crystal = 2.44 × 10⁻² m by  1.4 × 10⁻³ m by 8.4  × 10⁻³ m

Volume = ?

Solution:

Volume is equal to the length by width by height.

<em>So from given measurement value:</em>

Volume =  2.44 × 10⁻² m by  1.4 × 10⁻³ m by 8.4  × 10⁻³ m

Volume = 2.9× 10⁻⁷ m³

So the volume from given values is 2.9× 10⁻⁷ m³.

8 0
2 years ago
Small quantities of h2 gas can be collected by adding hcl to zn. a sample of 195 ml of h2 gas was collected over water at 25 c a
Umnica [9.8K]
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2 years ago
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