2.012 2.010 Tol Virtual Feature ø.002 MA Size Zone Size Ø2.012 .002 Ø2.011 .003ØZ.014 02.010 Ø.004 Pilot 1 Feature Tol Virtual 2.014 2.010 Size Zone Size Lø.000 MA P2.014 D.000 2.013 Ø.0oz ØZ.014 D.003 Ø2.010 D. D04 Ø2.012 Ø2.011 Pilot 2
2.012 2.010 Tol Virtual Feature ø.002 MA Size Zone Size Ø2.012 .002 Ø2.011 .003ØZ.014 02.010 Ø.004 Pilot 1 Feature Tol Virtual 2.014 2.010 Size Zone Size Lø.000 MA P2.014 D.000 2.013 Ø.0oz ØZ.014 D.003 Ø2.010 D. D04 Ø2.012 Ø2.011 Pilot 2
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
Related questions
Question
What part provides the most manufacturing tolerance and is easiest to work with, part 1 or part 2? Explain why.
![The image depicts two engineering diagrams labeled "Pilot 1" and "Pilot 2," each with associated dimensions and tolerance zones.
For **Pilot 1**:
- Two diameters are shown: 2.012 and 2.010.
- A geometric characteristic symbol indicates a tolerance with a maximum material condition (MMC) modifier.
- The tolerance is specified as \(\diameter 0.002\).
Adjacent to the diagram is a table listing the following:
- **Feature Size:** Ranges from \(\diameter 2.012\) to \(\diameter 2.010\)
- **Tol Zone:** 0.002 to 0.004
- **Virtual Size:** \(\diameter 2.014\)
For **Pilot 2**:
- Two diameters are shown: 2.014 and 2.010.
- A similar geometric characteristic symbol with MMC modifier is used.
- The tolerance is specified as \(\diameter 0.000\).
The adjacent table lists:
- **Feature Size:** Ranges from \(\diameter 2.014\) to \(\diameter 2.010\)
- **Tol Zone:** 0.000 to 0.004
- **Virtual Size:** \(\diameter 2.014\)
Below the diagrams, a question is presented:
"20. Which part provides the most manufacturing tolerance and is easiest to work with, part 1 or part 2? Explain why."
The differences in tolerance specifications indicate varying levels of ease in manufacturing based on the required precision and feature allowances.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff997ca4c-ecc6-4765-8bc8-bcf8ae5d4b83%2Fbbecc43d-3298-469e-9c1f-59462ab0fb9b%2Ft20ee5f_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The image depicts two engineering diagrams labeled "Pilot 1" and "Pilot 2," each with associated dimensions and tolerance zones.
For **Pilot 1**:
- Two diameters are shown: 2.012 and 2.010.
- A geometric characteristic symbol indicates a tolerance with a maximum material condition (MMC) modifier.
- The tolerance is specified as \(\diameter 0.002\).
Adjacent to the diagram is a table listing the following:
- **Feature Size:** Ranges from \(\diameter 2.012\) to \(\diameter 2.010\)
- **Tol Zone:** 0.002 to 0.004
- **Virtual Size:** \(\diameter 2.014\)
For **Pilot 2**:
- Two diameters are shown: 2.014 and 2.010.
- A similar geometric characteristic symbol with MMC modifier is used.
- The tolerance is specified as \(\diameter 0.000\).
The adjacent table lists:
- **Feature Size:** Ranges from \(\diameter 2.014\) to \(\diameter 2.010\)
- **Tol Zone:** 0.000 to 0.004
- **Virtual Size:** \(\diameter 2.014\)
Below the diagrams, a question is presented:
"20. Which part provides the most manufacturing tolerance and is easiest to work with, part 1 or part 2? Explain why."
The differences in tolerance specifications indicate varying levels of ease in manufacturing based on the required precision and feature allowances.
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