College Level Chemistry

Page 158

temperature, while molality does not. This makes molality a better measurement when temperature is a factor in the equation.

COLLIGATIVE PROPERTIES The colligative properties of a solution will depend on the numbers of solvent and solute particles and not on the nature of the particles. They involve the vapor pressure decrease, boiling point elevation, freezing point depression, and osmotic pressure. They are based on the solute concentration and a given constant. The colligative property of boiling point elevation fits the relationship of this: boiling point elevation equals the solute concentration (molality) multiplied by a constant, in this case, the boiling point constant. The vapor pressure change is based on the mole fraction of the solute and the vapor pressure of the pure solvent. The freezing point depression is based on the molality of the solute and the freezing point constant. The osmotic pressure is based on the molarity of the solute. Note that the freezing point and boiling point changes are based on molality as this is not temperature-dependent. Boiling points of solutions will all be higher than that of the pure solvent. This difference is proportional to the concentration of the solute particles. The change in boiling point equals the boiling point constant multiplied by the molality of the solute. The boiling point constant is also called the ebullioscopic constant, which is dependent on the properties of the solvent. The freezing point depression is a greater phenomenon than the boiling point elevation; it is also based on the molality of the solute as well as a constant that varies according to the solvent. Like the boiling point elevation, the change in temperature is the constant multiplied by the molality of the solute. Both the freezing point depression and boiling point elevation can be predicted by the phase diagram changes of a solution versus a solvent. The boiling point of any substance is reached when the chemical potential of the pure solvent in liquid form reaches that of the chemical potential of the pure vapor. It will be a higher temperature in the solution versus the solvent form. The freezing point is reached when the chemical potential of the pure solvent as a liquid reaches that of the 150


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Summary

6min
pages 242-245

Quiz

2min
pages 238-241

Key Takeaways

0
page 237

Lipids

0
pages 235-236

Carbohydrates

2min
pages 228-231

Nucleic Acids

1min
pages 232-234

Proteins

1min
pages 226-227

Benzene Derivatives

0
page 218

Basics of Biochemistry

0
page 225

Structural Isomerism

2min
pages 220-222

Isomerism

0
page 219

Alkenes and Alkynes

0
page 217

Nernst Equation

2min
pages 205-206

Quiz

3min
pages 209-212

Key Takeaways

0
page 208

Cycloalkanes

1min
page 216

Electromotive Force

1min
page 207

Quiz

3min
pages 193-196

Key Takeaways

0
page 192

Faraday’s Law

1min
page 204

Hydrolysis

2min
pages 190-191

Buffers

1min
page 189

pH Scale

1min
pages 185-186

Quiz

3min
pages 176-179

Quiz

3min
pages 165-168

Key Takeaways

0
page 175

Redox Reactions in Common Situations

1min
page 174

Key Takeaways

0
page 164

Crystals

3min
pages 133-136

Colloids

1min
pages 162-163

Anomalous Colligative Properties

1min
page 159

Colligative Properties

1min
page 158

Quiz

3min
pages 144-147

Liquid Forces

5min
pages 139-142

Liquids

2min
pages 137-138

Water Condensation, Boiling, and Evaporation

7min
pages 129-132

Key Takeaways

0
page 120

Chemical Equilibrium

4min
pages 117-119

Quiz

3min
pages 121-124

Energy of Activation

1min
page 116

Rates of Reactions

1min
page 115

Limiting Reagents

1min
page 114

Writing Reactions

4min
pages 111-113

Types of Chemical Reactions

1min
page 110

Quiz

2min
pages 105-107

Key Takeaways

0
page 104

Hydrogen Bonding

0
page 102

Bonding in Metals

1min
page 103

Shapes of Molecules

3min
pages 99-101

Covalence

1min
pages 96-97

Molecular Orbital Theory

1min
page 98

Quiz

3min
pages 85-88

Key Takeaways

0
page 84

Rules of Thermochemistry

1min
page 83

Enthalpy and Energy

3min
pages 81-82

Calorimetry

2min
pages 79-80

Heat Capacity

3min
pages 77-78

Laws of Thermodynamics

3min
pages 75-76

Properties of Heat in Chemistry

2min
page 74

Quiz

3min
pages 69-72

Graham’s Law of Effusion

1min
page 67

Key Takeaways

0
page 68

Kinetic Theory

1min
page 66

Partial Pressures in Gases

1min
page 65

Boyle’s Gas Law

1min
page 62

Gas laws

1min
page 61

Pressures and Gases

1min
page 60

Quiz

2min
pages 51-54

Magnetic Properties in Atoms

1min
page 49

Electronegativity

1min
page 46

Key Takeaways

0
page 50

Electron Affinity

3min
pages 44-45

Quiz

2min
pages 32-35

Ionization Energy

1min
page 26

Atomic Mass Number

1min
page 17

Equivalent Weight and Mole Ratio

1min
page 30

Isotopes

1min
page 18

Key Takeaways

0
page 31

Atomic Number

2min
pages 15-16

Preface

6min
pages 9-12

Atomic Radius

1min
page 25
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