A description of alloy has to be given. The structural differences between substituted alloys and interstitial alloys have to be explained. Example for both the type of alloys has to be cited. Concept introduction: An alloy is a mixture of metals or metals with non-metals . The so formed alloy exhibit excellent properties like durability and finds various applications. Example : Bell metal is an alloy made of 77% copper and 23% Tin. There are two types of alloys - substitutional alloy and interstitial alloy. In substituted alloys, one type of metal atoms occupies the lattice sites of the other metal atom. In interstitial alloys, one type of metal atoms occupies the interstitial spaces in the lattice of another metal.
A description of alloy has to be given. The structural differences between substituted alloys and interstitial alloys have to be explained. Example for both the type of alloys has to be cited. Concept introduction: An alloy is a mixture of metals or metals with non-metals . The so formed alloy exhibit excellent properties like durability and finds various applications. Example : Bell metal is an alloy made of 77% copper and 23% Tin. There are two types of alloys - substitutional alloy and interstitial alloy. In substituted alloys, one type of metal atoms occupies the lattice sites of the other metal atom. In interstitial alloys, one type of metal atoms occupies the interstitial spaces in the lattice of another metal.
Solution Summary: The author explains that an alloy is a homogeneous mixture of metals with non-metals.
The structural differences between substituted alloys and interstitial alloys have to be explained.
Example for both the type of alloys has to be cited.
Concept introduction:
An alloy is a mixture of metals or metals with non-metals. The so formed alloy exhibit excellent properties like durability and finds various applications. Example: Bell metal is an alloy made of 77% copper and 23% Tin.
There are two types of alloys - substitutional alloy and interstitial alloy. In substituted alloys, one type of metal atoms occupies the lattice sites of the other metal atom. In interstitial alloys, one type of metal atoms occupies the interstitial spaces in the lattice of another metal.
You are trying to decide if there is a single reagent you can add that will make the following synthesis possible without any other major side products:
xi
1. ☑
2. H₂O
хе
i
Draw the missing reagent X you think will make this synthesis work in the drawing area below.
If there is no reagent that will make your desired product in good yield or without complications, just check the box under the drawing area and leave it blank.
Click and drag to start drawing a
structure.
There is no reagent that will make this synthesis work without complications.
: ☐
S
☐
Predict the major products of this organic reaction:
H
OH
1. LiAlH4
2. H₂O
?
Note: be sure you use dash and wedge bonds when necessary, for example to distinguish between major products with different stereochemistry.
Click and drag to start drawing a
structure.
G
C
टे
For each reaction below, decide if the first stable organic product that forms in solution will create a new C-C bond, and check the appropriate box.
Next, for each reaction to which you answered "Yes" to in the table, draw this product in the drawing area below.
Note for advanced students: for this problem, don't worry if you think this product will continue to react under the current conditions - just focus on the first
stable product you expect to form in solution.
NH2
CI
MgCl
?
Will the first product that forms in this reaction
create a new CC bond?
Yes
No
MgBr
?
Will the first product that forms in this reaction
create a new CC bond?
Yes
No
G
टे
Chapter 10 Solutions
Bundle: Chemistry, 10th + Laboratory Handbook for General Chemistry, 3rd + Student Resource Center Printed Access Card + Student Solutions Manual for ... Access Card for Zumdahl/Zumdahl/DeCoste