General, Organic, and Biological Chemistry - 4th edition
General, Organic, and Biological Chemistry - 4th edition
4th Edition
ISBN: 9781259883989
Author: by Janice Smith
Publisher: McGraw-Hill Education
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Chapter 5, Problem 72P

What is the mass in grams of each quantity of vitamin D (molar mass 384.7 g/mol), which is needed for forming and maintaining healthy bones?

  1. 3.6 mol
  2. 0.58 mol
  3. 7.3 × 10 24 molecules
  4. 6.56 × 10 22 molecules

Expert Solution
Check Mark
Interpretation Introduction

(a)

Interpretation:

The mass (in grams) of Vitamin D in 3.60 mole of Vitamin D is to be determined.

Concept Introduction:

Following is the formula that will be used to calculate the mass of the substance:

  number of moles=massMolar mass

Or,

  mass=number of moles×Molar mass

Answer to Problem 72P

The mass of Vitamin D present in 3.60 mol of is Vitamin D 1384.9g.

Explanation of Solution

Number of moles of Vitamin D = 3.60 mol

Molar mass of Vitamin D 384.7 g/mol

The formula to be used to calculate the mass of Vitamin D −

  number of moles=massMolar mass

Or,

  mass=number of moles×Molar mass

  mass=3.60mol×384.7g/mol

  mass=1384.9g

Thus, the mass of Vitamin D present in 3.60 mol of Vitamin D is 1384.9g.

Expert Solution
Check Mark
Interpretation Introduction

(b)

Interpretation:

The mass (in grams) of Vitamin D in 0.580 mole of Vitamin D is to be determined .

Concept Introduction:

Following is the formula that will be used to calculate the mass of the substance:

  number of moles=massMolar mass

Or,

  mass=number of moles×Molar mass

Answer to Problem 72P

The mass of Vitamin D present in 0.580 mol of Vitamin D is 223.13 g.

Explanation of Solution

Number of moles of Vitamin D = 0.580 mol

Molar mass of Vitamin D 384.7 g/mol

The formula used to calculate the mass of Vitamin D is −

  number of moles=massMolar mass

Or,

  mass=number of moles×Molar mass

  mass=0.580mol×384.7g/mol

mass=223.13 g

Thus, the mass of Vitamin D present in 0.580 mol of Vitamin D is 223.13 g.

Expert Solution
Check Mark
Interpretation Introduction

(c)

Interpretation:

The mass (in grams) of Vitamin D in 7.3×1024 molecules of Vitamin D is to be determined.

Concept Introduction:

In order to convert the number of molecules into grams, divide the number of molecules by Avogadro's number. This will give the value of the number of moles of that substance. Avogadro's number is 6.023×1023 molecules. Then, the molar mass of the substance is multiplied by the number of moles. This will give the value of amount of substance in grams.

Answer to Problem 72P

The mass of Vitamin D present in 7.3×1024 molecules of Vitamin D is 4663 g.

Explanation of Solution

Molar mass of Vitamin D = 384.7 g/mol

Molecules of Vitamin D= 7.3×1024 molecules

Avogadro's number of =

  6.023×1023 molecules

Since,

  number of moles = number of moleculesAvogadro's numbermass in grams = number of moles×molar mass                                 ormass in grams =number of moleculesAvogadro's number×molar mass

So,

  mass= 7.3×10246.023×1023×384.7g

  mass =4663 g

Thus, the mass of Vitamin D present in 7.3×1024 molecules of Vitamin D is 4663 g.

Expert Solution
Check Mark
Interpretation Introduction

(d)

Interpretation:

The mass (in grams) of Vitamin D in 6.56×1022 molecules of Vitamin D is to be determined.

Concept Introduction:

In order to convert the number of molecules into grams, divide the number of molecules by Avogadro's number. This will give the value of the number of moles of that substance. Avogadro's number is 6.023×1023 molecules. Then, the molar mass of the substance is multiplied by the number of moles. This will give the value of amount of substance in grams.

Answer to Problem 72P

The mass of Vitamin D present in 6.56×1022 molecules of Vitamin D is 41.9g.

Explanation of Solution

Molar mass of Vitamin D 384.7 g/mol

Molecules of Vitamin D = 6.56×1022 molecules

Avogadro's number of =

  6.023×1023 molecules

Since,

  number of moles = number of moleculesAvogadro's numbermass in grams = number of moles×molar mass                                         ormass in grams =number of moleculesAvogadro's number×molar mass

So,

  mass=6.56×10226.023×1023×384.7g

  mass = 41.9g

The mass of Vitamin D present in 6.56×1022 molecules of Vitamin D is 41.9g.

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Chapter 5 Solutions

General, Organic, and Biological Chemistry - 4th edition

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Step by Step Stoichiometry Practice Problems | How to Pass ChemistryMole Conversions Made Easy: How to Convert Between Grams and Moles; Author: Ketzbook;https://www.youtube.com/watch?v=b2raanVWU6c;License: Standard YouTube License, CC-BY