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yawa3891 [41]
4 years ago
15

A current of 0.44 A is passed through a solution of a ruthenium nitrate salt, causing reduction of the metal ion to the metal. A

fter 25.0 minutes, 0.345 g of Ru(s) has been deposited. What is the oxidation state of ruthenium in the nitrate salt?
Chemistry
1 answer:
kaheart [24]4 years ago
7 0

Answer:

Ruthenium has an oxidation state of +2

Explanation:

Step 1: Data given

A current = 0.44 A

Time = 25.0 minutes

Mass of Ru(s) = 0.345 grams

Step 2: Calculate charge

Charge = current * time

Charge = 0.44 A * 25 min *60 sec/min

Charge = 660 C

Step 3: Calculate moles electrons

1 mol e- = 660 C * (1 mol e-/ 96500 C)

1 mol e- = 6.84 * 10^-3 mol e-

Step 4: Calculate moles of Ru

Moles Ru = mass Ru / molar mass Ru

Moles Ru = 0.345 grams / 101 g/mol

Moles Ru = 3.416 * 10^-3 moles Ru

Step 5: Calculate oxidation state of ruthenium

(6.84e-3 moles e-) / (3.416e-3 moles Ru) = 2 e- / Ru atom (Ru+2)

Ruthenium has an oxidation state of +2

Since a nitrate ion has a charge of -1, ruthenium nitrate would be

Ru(NO3)2

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D. The amount of heat required to increase the temperature of 1 g of a substance by 1 °C.

Explanation:

Specific heat is defined as the amount of heat needed to raise a unit of mass of a compound by one degree on the temperature scale.

The gram is constituted as a unit of mass, and the degree Celsius as a unit of temperature, therefore, the specific heat can be defined as the amount of heat required to increase the temperature of 1 g of a substance by 1 °C.

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Which of these agreements has goals of peace and shared scientific research?
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Option C, Antarctic Treaty System, is the right answer.

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A force of 25 newtons is exerted over an area of 50 square meters. Calculate
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Answer:

the pressure exerted in pascals is 0.5 Pa

Explanation:

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As we know that

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3 years ago
Calculate the mass of Na2O that can be produced by the chemical reaction of 4.0 grams of sodium with excess oxygen in the reacti
e-lub [12.9K]

Answer:

The mass of Na₂O that can be produced by the chemical reaction of 4.0 grams of sodium with excess oxygen in the reaction is 5.39 grams.

Explanation:

You know  the balanced reaction:

4 NA + O₂ ⟶ 2 Na₂O

By stoichiometry of the reaction (that is, the relationship between the amount of reagents and products in a chemical reaction) react and are produced:

  • Na: 4 moles
  • O₂: 1 mole
  • Na₂O: 2 moles

Being:

  • Na: 23 g/ole
  • O: 16 g/mole

the molar mass of the compounds participating in the reaction is:

  • Na: 23 g/mole
  • O₂: 2*16 g/mole= 32 g/mole
  • Na₂O: 2*23 g/mole +16 g/mole=  62 g/mole

Then by stoichiometry of the reaction they react and are produced:

  • Na: 4 moles* 23 g/mole= 92 g
  • O₂: 1 mole*32  g/mole= 32 g
  • Na₂O: 2 moles* 62 g/mole= 124 g

Then you can apply the following rule of three: if 92 grams of Na produce 124 grams of Na₂O, 4 grams of Na, how much mass of Na₂O does it produce?

massofNa_{2}O =\frac{4 grams of Na*124 gramsofNa_{2}O }{92 grams of Na}

mass of Na₂O=5.39 g

<em><u>The mass of Na₂O that can be produced by the chemical reaction of 4.0 grams of sodium with excess oxygen in the reaction is 5.39 grams.</u></em>

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