The 45° strain rosette is mounted on a steel shaft. The following readings are obtained from each gage: € – 400(10 *). 4--200(10%), and --400(10*). (Figure 1) Part A Determine the in-plane principal strains. Express your answer using three significant figures separated by a comma. for Partado Part A for Part A keyboard shortcuts for Part A help for Part A Vdo for P for Part Part A Part A Templates Submit Request Answer ▼Part B Determine the maximum in-plane shear strain. Express your answer using three significant figures. vec r Part or Part B Part forPart B Vdo for Part redo to Part B or F for Part B keyboard shortcuts for Part B help for Part B Submit Request Answer ▼Part C Determine the average normal strain. Express your answer using three significant figures. Pár Parde part for Part CVdo for Part rado toan etor for Part C keyboard shortcuts for Part C help for Part C Submit Request Answer 45

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Chapter5: Further Applications Of Newton's Laws: Friction, Drag, And Elasticity
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The 45° strain rosette is mounted on a steel shaft. The following readings are obtained from each gage: € – 400(10 *).
4--200(10%), and --400(10*). (Figure 1)
Part A
Determine the in-plane principal strains.
Express your answer using three significant figures separated by a comma.
for Partado Part A for Part A keyboard shortcuts for Part A help for Part A
Vdo for P
for Part
Part A Part A
Templates
Submit
Request Answer
▼Part B
Determine the maximum in-plane shear strain.
Express your answer using three significant figures.
vec
r Part or Part B
Part forPart B
Vdo for Part
redo to Part B or F
for Part B keyboard shortcuts for Part B help for Part B
Submit
Request Answer
▼Part C
Determine the average normal strain.
Express your answer using three significant figures.
Pár Parde part for Part CVdo for Part rado toan etor
for Part C keyboard shortcuts for Part C help for Part C
Submit
Request Answer
Transcribed Image Text:The 45° strain rosette is mounted on a steel shaft. The following readings are obtained from each gage: € – 400(10 *). 4--200(10%), and --400(10*). (Figure 1) Part A Determine the in-plane principal strains. Express your answer using three significant figures separated by a comma. for Partado Part A for Part A keyboard shortcuts for Part A help for Part A Vdo for P for Part Part A Part A Templates Submit Request Answer ▼Part B Determine the maximum in-plane shear strain. Express your answer using three significant figures. vec r Part or Part B Part forPart B Vdo for Part redo to Part B or F for Part B keyboard shortcuts for Part B help for Part B Submit Request Answer ▼Part C Determine the average normal strain. Express your answer using three significant figures. Pár Parde part for Part CVdo for Part rado toan etor for Part C keyboard shortcuts for Part C help for Part C Submit Request Answer
45
Transcribed Image Text:45
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