1. The midpoint of a two-point measurement is known as: A. A center point B. A midpoint C. A median point D. A datum point 2. Concentricity is the condition where: A. Two or more cylindrical features are shown on the same center line B. The axis of the related actual mating envelope is related to the datum axis C. Median points of diametrically opposed elements are congruent with a datum axis D. The axis of an unrelated actual mating envelope is aligned to a datum axis 3. Two types of geometry attributes affected by a concen- tricity or symmetry tolerance are: A. Location and orientation B. Size and form C. Concentricity and symmetry D. None of the above 4. The modifiers that can be specified in a concentricity tolerance are: A. Mand (ST) B. C. and (ST) and ST D. All of the above 5. A real-world application for a concentricity tolerance is: A. Assembly B. Support C. Balance of a high-speed rotating part D. Seal on a rotating part 6. A difference between a concentricity tolerance and a position tolerance at RFS is: A. The shape of the tolerance zones B. What the tolerance zone applies to C. The part deviations being controlled D. None of the above 7. Verifying a concentricity tolerance has two parts: estab lishing the datum axis and verifying that the is within the tolerance zone. A. Surface B. Axis C. Median points D. None of the above. 8. The tolerance zone for a symmetry tolerance is: A. The space between two parallel planes B. The space within a cylinder C. A worst-case boundary D. None of the above

Elements Of Electromagnetics
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1. The midpoint of a two-point measurement is known as:
A.
A center point
B. A midpoint
C.
A median point
D. A datum point
2. Concentricity is the condition where:
A. Two or more cylindrical features are shown on the
same center line
B. The axis of the related actual mating envelope is
related to the datum axis
C. Median points of diametrically opposed elements
are congruent with a datum axis
D. The axis of an unrelated actual mating envelope is
aligned to a datum axis
3. Two types of geometry attributes affected by a concen-
tricity or symmetry tolerance are:
A. Location and orientation
B. Size and form
C. Concentricity and symmetry
D. None of the above
4. The modifiers that can be specified in a concentricity
tolerance are:
A. Mand (ST)
B.
C.
and (ST)
and ST
D. All of the above
5. A real-world application for a concentricity tolerance is:
A. Assembly
B. Support
C. Balance of a high-speed rotating part
D. Seal on a rotating part
6. A difference between a concentricity tolerance and a
position tolerance at RFS is:
A. The shape of the tolerance zones
B. What the tolerance zone applies to
C. The part deviations being controlled
D. None of the above
7. Verifying a concentricity tolerance has two parts: estab
lishing the datum axis and verifying that the
is within the tolerance zone.
A. Surface
B. Axis
C. Median points
D. None of the above.
8. The tolerance zone for a symmetry tolerance is:
A. The space between two parallel planes
B. The space within a cylinder
C. A worst-case boundary
D. None of the above
Transcribed Image Text:1. The midpoint of a two-point measurement is known as: A. A center point B. A midpoint C. A median point D. A datum point 2. Concentricity is the condition where: A. Two or more cylindrical features are shown on the same center line B. The axis of the related actual mating envelope is related to the datum axis C. Median points of diametrically opposed elements are congruent with a datum axis D. The axis of an unrelated actual mating envelope is aligned to a datum axis 3. Two types of geometry attributes affected by a concen- tricity or symmetry tolerance are: A. Location and orientation B. Size and form C. Concentricity and symmetry D. None of the above 4. The modifiers that can be specified in a concentricity tolerance are: A. Mand (ST) B. C. and (ST) and ST D. All of the above 5. A real-world application for a concentricity tolerance is: A. Assembly B. Support C. Balance of a high-speed rotating part D. Seal on a rotating part 6. A difference between a concentricity tolerance and a position tolerance at RFS is: A. The shape of the tolerance zones B. What the tolerance zone applies to C. The part deviations being controlled D. None of the above 7. Verifying a concentricity tolerance has two parts: estab lishing the datum axis and verifying that the is within the tolerance zone. A. Surface B. Axis C. Median points D. None of the above. 8. The tolerance zone for a symmetry tolerance is: A. The space between two parallel planes B. The space within a cylinder C. A worst-case boundary D. None of the above
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