6. In general, a third-order system can be approximated by a second-order system's dominant roots if the real part of the dominant roots is less than 1/10 of the real part of the third root. True or False 7. The number of zeros of the forward path transfer function at the origin is called the type number. True or False 8. The rise time is defined as the time required for the system to settle within a certain percentage of the input amplitude. True or False 9. For a second-order system with no zeros, the percent overshoot to a unit step is a function of the damping ratio only. True or False

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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6. In general, a third-order system can be approximated by a second-order system's
dominant roots if the real part of the dominant roots is less than 1/10 of the real part of
the third root.
True or False
7. The number of zeros of the forward path transfer function at the origin is called the type
number.
True or False
8. The rise time is defined as the time required for the system to settle within a certain
percentage of the input amplitude.
True or False
9. For a second-order system with no zeros, the percent overshoot to a unit step is a function
of the damping ratio only.
True or False
10. A type-l system has a zero steady-state tracking error to a ramp input.
True or False
Transcribed Image Text:6. In general, a third-order system can be approximated by a second-order system's dominant roots if the real part of the dominant roots is less than 1/10 of the real part of the third root. True or False 7. The number of zeros of the forward path transfer function at the origin is called the type number. True or False 8. The rise time is defined as the time required for the system to settle within a certain percentage of the input amplitude. True or False 9. For a second-order system with no zeros, the percent overshoot to a unit step is a function of the damping ratio only. True or False 10. A type-l system has a zero steady-state tracking error to a ramp input. True or False
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