Multiple Choice Circle the best answer to each statement. 1. Which statement describes parallelism? A. All points of a surface perpendicular to the axis are equidistant from that axis B. A surface is equidistant at all points from a datum plane or axis C. A surface of revolution having all points equidis- tant from a common axis D. None of the above 2. A real-world application of a parallelism tolerance is: A. Assembly (maintain a uniform gap) B. Seal (lip seal on a shaft) C. Balance (high speed rotating parts) D. None of the above 3. Where a parallelism tolerance is applied to a surface, of the surface must be located within the tolerance zone. A. The highest points B. The tangent plane C. All points D. The three high points 4. What is the effect of specifying the modifier in a parallelism tolerance? A. The flatness of the toleranced surface is controlled B. The flatness of the toleranced surface is not con- trolled C. The tolerance zone becomes a tangent plane D. The tangent plane of the toleranced surface may be outside the tolerance zone 5. A ism control. tolerance can be an indirect parallel- A. Profile of a surface B. Flatness C. Perpendicularity D. None of the above 6. When verifying a parallelism tolerance, the relation- ship between the part and established. A. Datum reference frame B. Tolerance zone C. Implied datums D. Location of the toleranced surface must be
Multiple Choice Circle the best answer to each statement. 1. Which statement describes parallelism? A. All points of a surface perpendicular to the axis are equidistant from that axis B. A surface is equidistant at all points from a datum plane or axis C. A surface of revolution having all points equidis- tant from a common axis D. None of the above 2. A real-world application of a parallelism tolerance is: A. Assembly (maintain a uniform gap) B. Seal (lip seal on a shaft) C. Balance (high speed rotating parts) D. None of the above 3. Where a parallelism tolerance is applied to a surface, of the surface must be located within the tolerance zone. A. The highest points B. The tangent plane C. All points D. The three high points 4. What is the effect of specifying the modifier in a parallelism tolerance? A. The flatness of the toleranced surface is controlled B. The flatness of the toleranced surface is not con- trolled C. The tolerance zone becomes a tangent plane D. The tangent plane of the toleranced surface may be outside the tolerance zone 5. A ism control. tolerance can be an indirect parallel- A. Profile of a surface B. Flatness C. Perpendicularity D. None of the above 6. When verifying a parallelism tolerance, the relation- ship between the part and established. A. Datum reference frame B. Tolerance zone C. Implied datums D. Location of the toleranced surface must be
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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![Multiple Choice
Circle the best answer to each statement.
1. Which statement describes parallelism?
A. All points of a surface perpendicular to the axis
are equidistant from that axis
B. A surface is equidistant at all points from a datum
plane or axis
C. A surface of revolution having all points equidis-
tant from a common axis
D. None of the above
2. A real-world application of a parallelism tolerance is:
A. Assembly (maintain a uniform gap)
B. Seal (lip seal on a shaft)
C. Balance (high speed rotating parts)
D. None of the above
3. Where a parallelism tolerance is applied to a surface,
of the surface must be located within
the tolerance zone.
A. The highest points
B. The tangent plane
C. All points
D. The three high points
4. What is the effect of specifying the modifier in a
parallelism tolerance?
A. The flatness of the toleranced surface is controlled
B. The flatness of the toleranced surface is not con-
trolled
C. The tolerance zone becomes a tangent plane
D. The tangent plane of the toleranced surface may
be outside the tolerance zone
5. A
ism control.
tolerance can be an indirect parallel-
A. Profile of a surface
B. Flatness
C. Perpendicularity
D. None of the above
6. When verifying a parallelism tolerance, the relation-
ship between the part and
established.
A. Datum reference frame
B. Tolerance zone
C. Implied datums
D. Location of the toleranced surface
must be](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F17d29979-5197-43f4-8711-bccd5ddc6baa%2Fdd4c0b8a-eea7-4c89-96b2-dee69cbb76e6%2Fmh5qbev_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Multiple Choice
Circle the best answer to each statement.
1. Which statement describes parallelism?
A. All points of a surface perpendicular to the axis
are equidistant from that axis
B. A surface is equidistant at all points from a datum
plane or axis
C. A surface of revolution having all points equidis-
tant from a common axis
D. None of the above
2. A real-world application of a parallelism tolerance is:
A. Assembly (maintain a uniform gap)
B. Seal (lip seal on a shaft)
C. Balance (high speed rotating parts)
D. None of the above
3. Where a parallelism tolerance is applied to a surface,
of the surface must be located within
the tolerance zone.
A. The highest points
B. The tangent plane
C. All points
D. The three high points
4. What is the effect of specifying the modifier in a
parallelism tolerance?
A. The flatness of the toleranced surface is controlled
B. The flatness of the toleranced surface is not con-
trolled
C. The tolerance zone becomes a tangent plane
D. The tangent plane of the toleranced surface may
be outside the tolerance zone
5. A
ism control.
tolerance can be an indirect parallel-
A. Profile of a surface
B. Flatness
C. Perpendicularity
D. None of the above
6. When verifying a parallelism tolerance, the relation-
ship between the part and
established.
A. Datum reference frame
B. Tolerance zone
C. Implied datums
D. Location of the toleranced surface
must be
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