MATERIALS SCIENCE & ENGINEERING:AN INTRO
MATERIALS SCIENCE & ENGINEERING:AN INTRO
10th Edition
ISBN: 9798203933584
Author: Callister
Publisher: ZYBOOKS
Question
Book Icon
Chapter 9, Problem 1QAP

(a)

To determine

The mass of sugar dissolved in mw=1500g water at T=90oC .

(a)

Expert Solution
Check Mark

Answer to Problem 1QAP

The mass of sugar dissolved in mw=1500g water at T=90oC is ms=5.022kg .

Explanation of Solution

Given Amount of water is mw=1500g .

Temperature is T=90oC .

Formula used:

  Csugar=msugarmsugar+mwater×100%

Where,

  Csugar is the composition of sugar in weight percent.

  msugar is the mass of sugar.

  mwater is the mass of water.

  MATERIALS SCIENCE & ENGINEERING:AN INTRO, Chapter 9, Problem 1QAP , additional homework tip  1

According to diagram Csugar=77

  %wtsugar

Calculations Put value of Csugar=77 , mass of water= 1500g

  Csugar=msugarmsugar+mwater×100%77=msugarmsugar+1500kgx100%0.77=msugarmsugar+1500kgmsugar=0.77msugar+1500kg0.23msugar=1155kgmsugar=5.022kg

Conclusion So, the mass of sugar dissolved in mw=1500g water at T=90oC .is ms=5.022kg .

(b)

To determine

Composition of saturated liquid solution at T=20°C .

(b)

Expert Solution
Check Mark

Answer to Problem 1QAP

Composition of the saturated liquid solution is C=65%wt .

Explanation of Solution

From the sugar-water phase diagram when the liquid saturated solution from temperature T=90°C is cooled to temperature T=20°C then the composition of the saturated liquid solution is C=65%wt . It is shown in the graph below.

  MATERIALS SCIENCE & ENGINEERING:AN INTRO, Chapter 9, Problem 1QAP , additional homework tip  2

Conclusion Hence, the composition of the saturated liquid solution is C=65%wt .

(c)

To determine

Mass of solid sugar comes out of the solution upon cooling to T=20°C .

(c)

Expert Solution
Check Mark

Answer to Problem 1QAP

Mass of solid sugar comes out of the solution upon cooling to T=20°C is msolidified=2.714kg .

Explanation of Solution

Given Amount of water is mw=1500g .

Cooling Temperature is T=20°C .

Mass of sugar dissolved at T'=90°C is ms=5.022kg .

Formula used:

Solubility of sugar in water is given by:

  CsugarT=20°C=m'sugarm'sugar+mwaterx100%

Where,

  Csugar =Composition of sugar in weight percent

  m'sugar =mass of maximum solubility of sugar at T=20°C .

  mwater =mass of water

Mass of sugar solidifies upon cooling to temperature T=20°C is

  msolidified=msugarT'=90°Cm'sugarT=20°C

  MATERIALS SCIENCE & ENGINEERING:AN INTRO, Chapter 9, Problem 1QAP , additional homework tip  3

According to diagram Csugar=65%wt sugar

Calculations Put value of Csugar=65 , mass of water mw=1500g

  CsugarT=20°C=m'sugarm'sugar+mwater×100%65=m'sugarm'sugar+1500g×100%m'sugarm'sugar+1500g=0.65m'sugar=0.65m'sugar+1500g0.35m'sugar=975gm'sugar=975g0.35m'sugar=2785.72gm'sugar=2.786kg

Mass of sugar solidifies upon cooling to temperature T=20°C is

  msolidified=msugarT'=90°Cm'sugarT=20°Cmsolidified=5.5kg2.786kgmsolidified=2.714kg

Conclusion So, the mass of sugar that solidified upon cooling to temperature T=20°C is msolidified=2.714kg .

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
This is part B Part A's question and answer was find moment of inertia (Ix = 3.90×10^5) and radius of gyration (kx = 21.861) Determine the centroid ( x & y ) of the I-section, Calculate the moment of inertia of the section about itscentroidal x & y axes. How or why is this result different fromthe result of a previous problem?
[5 marks] Give a recursive definition for the language anb2n where n = 1, 2, 3, ... over the alphabet Ó={a, b}. 2) [12 marks] Consider the following languages over the alphabet ƒ={a ,b}, (i) The language of all words that begin and end an a (ii) The language where every a in a word is immediately followed by at least one b. (a) Express each as a Regular Expression (b) Draw an FA for each language (c) For Language (i), draw a TG using at most 3 states (d) For Language (ii), construct a CFG.
Determine by direct integration the moment of inertia of theshaded area of figure with respect to the y axis shown
Knowledge Booster
Background pattern image
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
MATLAB: An Introduction with Applications
Engineering
ISBN:9781119256830
Author:Amos Gilat
Publisher:John Wiley & Sons Inc
Text book image
Essentials Of Materials Science And Engineering
Engineering
ISBN:9781337385497
Author:WRIGHT, Wendelin J.
Publisher:Cengage,
Text book image
Industrial Motor Control
Engineering
ISBN:9781133691808
Author:Stephen Herman
Publisher:Cengage Learning
Text book image
Basics Of Engineering Economy
Engineering
ISBN:9780073376356
Author:Leland Blank, Anthony Tarquin
Publisher:MCGRAW-HILL HIGHER EDUCATION
Text book image
Structural Steel Design (6th Edition)
Engineering
ISBN:9780134589657
Author:Jack C. McCormac, Stephen F. Csernak
Publisher:PEARSON
Text book image
Fundamentals of Materials Science and Engineering...
Engineering
ISBN:9781119175483
Author:William D. Callister Jr., David G. Rethwisch
Publisher:WILEY