Use the periodic table to determine the molar mass of each of the following elements. Use the correct number of significant figures.

Potassium (K):
g/mol
Osmium (Os):
g/mol
Manganese (Mn):
g/mol

Answers

Answer 1

Answer:

Potassium (K):   39.10 g/mol

Osmium (Os):   190.23 g/mol

Manganese (Mn):   54.94 g/mol

Explanation:

Just got it right on Edge 2021

Answer 2

The molar mass of the following elements are

Potassium (K): 39.10 g/mol

Osmium (Os): 190.23 g/mol

Manganese (Mn): 54.94 g/mol

What is molar mass?

The molar mass of a substance is grams of one mole of that substance.

It can be calculated by dividing the atomic weight of the element, and the number of atoms found in that element.

Manganese is a transition metal with the atomic number 25.

Potassium is an essential mineral that is an alkali metal and its atomic number is 19.

Osmium is also a transition metal whose atomic number is 76.

Thus, the molar mass of the elements are, Potassium (K): 39.10 g/mol

Osmium (Os): 190.23 g/mol

Manganese (Mn): 54.94 g/mol

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Answer:

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Answers

The net ionic equation for the reaction between SnSO₄ and NaOH is:

Sn²⁺(aq) + 2OH¯(aq) —> Sn(OH)₂(s)

We'll begin by writing the dissociation equation for SnSO₄ and NaOH.

SnSO₄(aq) —> Sn²⁺(aq) + SO₄²¯(aq)

NaOH(aq) —> Na⁺(aq) + OH¯(aq)

In solution, the reaction will proceed as follow:

SnSO₄(aq) + NaOH(aq) —>

Sn²⁺(aq) + SO₄²¯(aq) + Na⁺(aq) + OH¯(aq) —> Sn(OH)₂(s) + Na⁺(aq) + SO₄²¯(aq)

Cancel the spectator ions (i.e Na⁺ and SO₄²¯) and write 2 before OH¯ to obtain the net ionic equation.

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Answers

Answer:

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Explanation:

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Answers

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Further explanation

Given

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Solution

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Answer:

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Answer:

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Answers

Answer:

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Answers

Answer:

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Answers

Mol after reaction :

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Further explanation

Given

2 mol Fe

48 g O

Required

Fill BCA table

Solution

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Before   2          1.5            0

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After       0           0              1

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Answers

Answer:

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Answers

Explanation:

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Answers

Answer:

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