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Tamiku [17]
3 years ago
7

Iron (III) oxide, also known as rust can be removed from iron by reacting it with hydrochloric acid to produce iron (III) chlori

de and water. Fe2O3 (s) + 6HCl (aq) ---> 2FeCl3 + 3H2O (l) What mass of hydrogen chloride is required to react with 100 g of rust? a. 371g HCl b. 137g HCl c. 130g HCl d. 147g HCl
Chemistry
1 answer:
Leya [2.2K]3 years ago
4 0

Answer:

b. 137 g.

Explanation:

  • The balanced equation for the mentioned reaction is:

<em>Fe₂O₃(s) + 6HCl(aq) → 2FeCl₃(s) + 3H₂O(l),</em>

It is clear that 1.0 mole of Fe₂O₃ react with 6.0 mol of HCl to produce 2.0 moles of FeCl₃ and 3.0 moles of H₂O.

  • We need to calculate the no. of moles of rust (100.0 g):

n = mass/molar mass = (100.0 g)/(159.69 g/mol) = 0.6262 mol.

<u><em>Using cross multiplication:</em></u>

1.0 mol of Fe₂O₃ react completely with → 6.0 mol of HCl, from stichiometry.

0.6262 mol of Fe₂O₃ produced with → ??? mol of HCl.

∴ The no. of moles of HCl = (6.0 mol)(0.6262 mol)/(1.0 mol) = 3.757 mol.

∴ The mass of HCl needed = no. of moles x molar mass = (3.757 mol)(36.46 g/mol) = 137.0 g.

<em>So, the right choice is: b. 137 g.</em>

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Answer:

1.9×10^20

Explanation:

ϕ = number of reaction events /number of photons absorbed

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Energy= power× time

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Therefore

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ϕ = number of reaction events /number of photons absorbed

Number of reaction events= 0.26×7.5×10^20

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4 years ago
How many grams of 48.0 wt% NaOH (FM 40.00) should be diluted to 1.00 L to make 0.11 M NaOH? (Enter your answer using two digits.
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Answer:

The answer is 916.67 g

Explanation:

48.0 wt% NaOH means that there are 48 g of NaOH in 100 g of solution. With this information and the molecular weight of NaOH (40 g/mol), we can calculate the number of mol there are in 100 g of this solution:

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We have to weigh 916.67 g of 48.0%wt NaOH and dilute it in a final volume of 1 L of water to obtain a 0.11 M NaOH solution.

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