Chemistry: Matter and Change
Chemistry: Matter and Change
1st Edition
ISBN: 9780078746376
Author: Dinah Zike, Laurel Dingrando, Nicholas Hainen, Cheryl Wistrom
Publisher: Glencoe/McGraw-Hill School Pub Co
Question
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Chapter 14.1, Problem 8SSC
Interpretation Introduction

Interpretation:

Properties of suspension, colloids and solutions have to be written in tabular form.

Concept introduction:

A solution is a homogeneous mixture of two or more components. The solute particles are fully dissolved in the dispersion medium. The components of a solution are atoms, ions, or molecules which are smaller in diameter.

A colloid is a heterogeneous mixture in which the dispersed particles are intermediate in size between those of a solution and a suspension. The particles are spread evenly throughout the dispersion medium, which can be a solid, liquid, or gas. The dispersed particles of a colloid are intermediate in size between those of a solution and a suspension. Due to intermediate size of the dispersed particles, they do not settle out from the dispersion medium upon standing.

A suspension is a heterogeneous mixture in which some of the particles settle out of the mixture upon standing. The particle size in a suspension are much larger than those of a solution, so they easily settle out from the dispersion medium due to the gravity.

Expert Solution & Answer
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Answer to Problem 8SSC

A solution is a homogeneous mixture of two or more components.

A colloid is a heterogeneous mixture in which the dispersed particles are intermediate in size between those of a solution and a suspension.

A suspension is a heterogeneous mixture in which some of the particles settle out of the mixture upon standing.

Explanation:

Solution Colloids Suspensions
Homogeneous mixture Heterogeneous mixture Heterogeneous mixture
Particle size: 0.01 – 1nm ; atoms, ions or molecules Particle size: 1 – 100nm, dispersed; large molecules or aggregates Particle size: over 100nm, suspended: large particles or aggregates
Pass easily through ordinary filter paper and also through the animal membrane Pass easily through ordinary filter paper but not through the animal membrane Do not even pass through ordinary filter paper
Do not settle down on standing Do not settle downon standing Particles settle out on standing
Cannot be separated by filtration Cannot be separated by filtration Can be separated by filtration
Do not show Brownian motion Show Brownian motion Do not show Brownian motion
Do not scatter light Scatter light (Tyndall effect) May either scatter light or be opaque
Diffuse quickly Diffuse slowly Do not diffuse
Salt dissolved in water is an example of true solution Milk is an example of colloid Muddy water is an example of suspension
  • A solution is a homogeneous mixture.
  • A colloid is a heterogeneous mixture.
  • A suspension is a heterogeneous mixture.

Explanation of Solution

Solution Colloids Suspensions
Homogeneous mixture Heterogeneous mixture Heterogeneous mixture
Particle size: 0.01 – 1nm ; atoms, ions or molecules Particle size: 1 – 100nm, dispersed; large molecules or aggregates Particle size: over 100nm, suspended: large particles or aggregates
Pass easily through ordinary filter paper and also through the animal membrane Pass easily through ordinary filter paper but not through the animal membrane Do not even pass through ordinary filter paper
Do not settle down on standing Do not settle downon standing Particles settle out on standing
Cannot be separated by filtration Cannot be separated by filtration Can be separated by filtration
Do not show Brownian motion Show Brownian motion Do not show Brownian motion
Do not scatter light Scatter light (Tyndall effect) May either scatter light or be opaque
Diffuse quickly Diffuse slowly Do not diffuse
Salt dissolved in water is an example of true solution Milk is an example of colloid Muddy water is an example of suspension
Conclusion
  • A solution is a homogeneous mixture.
  • A colloid is a heterogeneous mixture.
  • A suspension is a heterogeneous mixture.

Chapter 14 Solutions

Chemistry: Matter and Change

Ch. 14.2 - Prob. 11PPCh. 14.2 - Prob. 12PPCh. 14.2 - Prob. 13PPCh. 14.2 - Prob. 14PPCh. 14.2 - Prob. 15PPCh. 14.2 - Prob. 16PPCh. 14.2 - Prob. 17PPCh. 14.2 - Prob. 18PPCh. 14.2 - Prob. 19PPCh. 14.2 - Prob. 20PPCh. 14.2 - Prob. 21PPCh. 14.2 - Prob. 22PPCh. 14.2 - Prob. 23PPCh. 14.2 - Prob. 24PPCh. 14.2 - Prob. 25PPCh. 14.2 - Prob. 26PPCh. 14.2 - Prob. 27PPCh. 14.2 - Prob. 28PPCh. 14.2 - Prob. 29PPCh. 14.2 - Prob. 30PPCh. 14.2 - Prob. 31SSCCh. 14.2 - Prob. 32SSCCh. 14.2 - Prob. 33SSCCh. 14.2 - Prob. 34SSCCh. 14.2 - Prob. 35SSCCh. 14.3 - Prob. 36PPCh. 14.3 - Prob. 37PPCh. 14.3 - Prob. 38PPCh. 14.3 - Prob. 39SSCCh. 14.3 - Prob. 40SSCCh. 14.3 - Prob. 41SSCCh. 14.3 - Prob. 42SSCCh. 14.3 - Prob. 43SSCCh. 14.3 - Prob. 44SSCCh. 14.4 - Prob. 45PPCh. 14.4 - Prob. 46PPCh. 14.4 - Prob. 47PPCh. 14.4 - Prob. 48SSCCh. 14.4 - Prob. 49SSCCh. 14.4 - Prob. 50SSCCh. 14.4 - Prob. 51SSCCh. 14.4 - Prob. 52SSCCh. 14.4 - Prob. 53SSCCh. 14 - Prob. 54ACh. 14 - What is the difference between a solute and a...Ch. 14 - Prob. 56ACh. 14 - Prob. 57ACh. 14 - Prob. 58ACh. 14 - Prob. 59ACh. 14 - Prob. 60ACh. 14 - Prob. 61ACh. 14 - Prob. 62ACh. 14 - Prob. 63ACh. 14 - Prob. 64ACh. 14 - How do 0.5M and 2.0M aqueous solutions of NaCl...Ch. 14 - Prob. 66ACh. 14 - Prob. 67ACh. 14 - Prob. 68ACh. 14 - Prob. 69ACh. 14 - Prob. 70ACh. 14 - Prob. 71ACh. 14 - Prob. 72ACh. 14 - Prob. 73ACh. 14 - How much CaCl2 , in grams, is needed to make 2.0 L...Ch. 14 - Stock solutions of HCl with various molarities are...Ch. 14 - Prob. 76ACh. 14 - Prob. 77ACh. 14 - Prob. 78ACh. 14 - If you dilute 20.0 mL of a 3.5M solution to...Ch. 14 - Prob. 80ACh. 14 - Prob. 81ACh. 14 - Prob. 82ACh. 14 - Prob. 83ACh. 14 - What is the mole fraction of H 2 S O 4 in a...Ch. 14 - Prob. 85ACh. 14 - Prob. 86ACh. 14 - Prob. 87ACh. 14 - Prob. 88ACh. 14 - Prob. 89ACh. 14 - Prob. 90ACh. 14 - Prob. 91ACh. 14 - Prob. 92ACh. 14 - Prob. 93ACh. 14 - Prob. 94ACh. 14 - Prob. 95ACh. 14 - Prob. 96ACh. 14 - Prob. 97ACh. 14 - Prob. 98ACh. 14 - Prob. 99ACh. 14 - In the lab, you dissolve 179 g of MgCl2 into1.00 L...Ch. 14 - Cooking A cook prepares a solution for boiling by...Ch. 14 - Prob. 102ACh. 14 - Ice Cream A rock salt (NaCl), ice, and water...Ch. 14 - Apply your knowledge of polarity and solubility...Ch. 14 - Prob. 105ACh. 14 - Which solute has the greatest effect on the...Ch. 14 - Study Table 14.4. Analyze solubility and...Ch. 14 - Prob. 108ACh. 14 - If you prepared a saturated aqueous solution of...Ch. 14 - How many grams of calcium nitrate (Ca(NO3)2)...Ch. 14 - Prob. 111ACh. 14 - Prob. 112ACh. 14 - Prob. 113ACh. 14 - Prob. 114ACh. 14 - Infer Dehydration occurs when more fluid is lost...Ch. 14 - Graph Table 14.10 shows solubility data that was...Ch. 14 - Design an Experiment You are given a sample of a...Ch. 14 - Compare Which of the following solutions has...Ch. 14 - Prob. 119ACh. 14 - Prob. 120ACh. 14 - Prob. 121ACh. 14 - Prob. 122ACh. 14 - Prob. 123ACh. 14 - Prob. 124ACh. 14 - Prob. 125ACh. 14 - Prob. 126ACh. 14 - Prob. 127ACh. 14 - Prob. 128ACh. 14 - Prob. 129ACh. 14 - Prob. 1STPCh. 14 - Prob. 2STPCh. 14 - Prob. 3STPCh. 14 - Prob. 4STPCh. 14 - Prob. 5STPCh. 14 - Prob. 6STPCh. 14 - Prob. 7STPCh. 14 - Prob. 8STPCh. 14 - Prob. 9STPCh. 14 - Prob. 10STPCh. 14 - Prob. 11STPCh. 14 - Prob. 12STPCh. 14 - Prob. 13STPCh. 14 - Prob. 14STPCh. 14 - Prob. 15STPCh. 14 - Prob. 16STPCh. 14 - Prob. 17STPCh. 14 - Prob. 18STPCh. 14 - Prob. 19STP
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