In the design of a timing mechanism, the motion of pin P in the fixed circular slot is controlled by the guide A, which is being elevated by its lead screw. Guide A starts from rest with pin P at the lowest point in the circular slot, and accelerates upward at a constant rate until it reaches a speed of 110 mm/s at the halfway point of its vertical displacement. The guide then decelerates at a constant rate and comes to a stop with pin P at the uppermost point in the circular slot. Determine the n- and t-components of acceleration of pin Ponce the pin has traveled 33° around the slot from the starting position. Answers: an = 16% at = i i 265 mm P mm/s² mm/s²
In the design of a timing mechanism, the motion of pin P in the fixed circular slot is controlled by the guide A, which is being elevated by its lead screw. Guide A starts from rest with pin P at the lowest point in the circular slot, and accelerates upward at a constant rate until it reaches a speed of 110 mm/s at the halfway point of its vertical displacement. The guide then decelerates at a constant rate and comes to a stop with pin P at the uppermost point in the circular slot. Determine the n- and t-components of acceleration of pin Ponce the pin has traveled 33° around the slot from the starting position. Answers: an = 16% at = i i 265 mm P mm/s² mm/s²
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
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![In the design of a timing mechanism, the motion of pin P in the fixed circular slot is controlled by the guide A, which is being elevated by
its lead screw. Guide A starts from rest with pin P at the lowest point in the circular slot, and accelerates upward at a constant rate until
it reaches a speed of 110 mm/s at the halfway point of its vertical displacement. The guide then decelerates at a constant rate and
comes to a stop with pin P at the uppermost point in the circular slot. Determine the n- and t-components of acceleration of pin Ponce
the pin has traveled 33° around the slot from the starting position.
Answers:
an =
16%
at =
265 mm
A
mm/s²
mm/s²](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8e969aac-b8ec-4d7d-9b88-f251c361ea6b%2F155c8ea2-f5e5-4eff-a66f-68ef88ab8f16%2Fgk1e9v5_processed.jpeg&w=3840&q=75)
Transcribed Image Text:In the design of a timing mechanism, the motion of pin P in the fixed circular slot is controlled by the guide A, which is being elevated by
its lead screw. Guide A starts from rest with pin P at the lowest point in the circular slot, and accelerates upward at a constant rate until
it reaches a speed of 110 mm/s at the halfway point of its vertical displacement. The guide then decelerates at a constant rate and
comes to a stop with pin P at the uppermost point in the circular slot. Determine the n- and t-components of acceleration of pin Ponce
the pin has traveled 33° around the slot from the starting position.
Answers:
an =
16%
at =
265 mm
A
mm/s²
mm/s²
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