Answer the following questions based on the given information in the table and further calculation (if needed for any missing parameter, e.g. strain at yield point). Assume all metals started with the same shape and size before the tensile tests occurred. Material A B C D E Yield Strength (MPa) 105 600 430 355 Tensile Strength (MPa) 135 850 535 365 Fracture before yielding The material that experienced the greatest percent reduction in area is material The material that experienced the greatest percent reduction in area has The material that experienced the largest change in shape before plastic deformation occurred is material Strain at Fracture [Choose] [Choose] [Choose ] 0.45 0.15 0.20 0.25 Fracture Strength (MPa) Elastic Modulus (GPa) 110 750 500 280 655 155 295 310 145 345 Strain at Yield Point

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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[Choose ]
the lowest Tensile Strength.
the lowest Fracture Strength.
the lowest Strain at Yield Point.
the highest Strain at Yield Point.
fractured before yielding.
the highest Elastic Modulus.
C.
the highest Strain at Fracture.
the highest Fracture Strength.
E.
the highest Tensile Strength.
A.
D.
B.
Transcribed Image Text:[Choose ] the lowest Tensile Strength. the lowest Fracture Strength. the lowest Strain at Yield Point. the highest Strain at Yield Point. fractured before yielding. the highest Elastic Modulus. C. the highest Strain at Fracture. the highest Fracture Strength. E. the highest Tensile Strength. A. D. B.
Answer the following questions based on the given information in the table and further calculation (if needed for any missing parameter, e.g. strain at yield point). Assume all metals
started with the same shape and size before the tensile tests occurred.
Material
A
B
C
D
E
Yield Strength (MPa)
105
600
430
355
The material that experienced the greatest percent reduction in area is material
The hardest material is material
The hardest material has
Tensile Strength (MPa)
The material that experienced the greatest percent reduction in area has
135
850
The material that experienced the largest change in shape before plastic
deformation occurred is material
The stiffest material is material
The stiffest material has
535
365
Fracture before yielding
The material that experienced the largest change in shape before plastic
deformation occurred has
Strain
at Fracture
[Choose ]
[Choose ]
[Choose ]
[Choose ]
[Choose ]
[Choose ]
[Choose ]
[Choose ]
0.45
0.15
0.20
0.25
Fracture Strength (MPa) Elastic Modulus (GPa)
110
750
500
280
655
155
295
310
145
345
Strain
at Yield Point
Transcribed Image Text:Answer the following questions based on the given information in the table and further calculation (if needed for any missing parameter, e.g. strain at yield point). Assume all metals started with the same shape and size before the tensile tests occurred. Material A B C D E Yield Strength (MPa) 105 600 430 355 The material that experienced the greatest percent reduction in area is material The hardest material is material The hardest material has Tensile Strength (MPa) The material that experienced the greatest percent reduction in area has 135 850 The material that experienced the largest change in shape before plastic deformation occurred is material The stiffest material is material The stiffest material has 535 365 Fracture before yielding The material that experienced the largest change in shape before plastic deformation occurred has Strain at Fracture [Choose ] [Choose ] [Choose ] [Choose ] [Choose ] [Choose ] [Choose ] [Choose ] 0.45 0.15 0.20 0.25 Fracture Strength (MPa) Elastic Modulus (GPa) 110 750 500 280 655 155 295 310 145 345 Strain at Yield Point
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