The 100 kg spool is at rest on the inclined surface as shown in Figure 3.2. Given that the radius of gyration about the mass center is kG=210 mm and the kinetic friction between spool and surface is ur= 0.3. If cable P is subjected to a force F = 400 N, determine the time required for the spool to achieve an angular velocity of 30 rad/s using the principle of impulse and momentum method.

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
icon
Related questions
Question

my question as attachment

The 100 kg spool is at rest on the inclined surface as shown in Figure 3.2.
Given that the radius of gyration about the mass center is kG=210 mm and the
kinetic friction between spool and surface is ur= 0.3. If cable P is subjected to a
force F = 400 N, determine the time required for the spool to achieve an
angular velocity of 30 rad/s using the principle of impulse and momentum
method.
0.6 m
0.3 m
F = 400 N
0.1 m
3
4
Spool on the inclined surface
Transcribed Image Text:The 100 kg spool is at rest on the inclined surface as shown in Figure 3.2. Given that the radius of gyration about the mass center is kG=210 mm and the kinetic friction between spool and surface is ur= 0.3. If cable P is subjected to a force F = 400 N, determine the time required for the spool to achieve an angular velocity of 30 rad/s using the principle of impulse and momentum method. 0.6 m 0.3 m F = 400 N 0.1 m 3 4 Spool on the inclined surface
Expert Solution
steps

Step by step

Solved in 2 steps

Blurred answer
Knowledge Booster
Process Planning
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, mechanical-engineering and related others by exploring similar questions and additional content below.
Similar questions
  • SEE MORE QUESTIONS
Recommended textbooks for you
Elements Of Electromagnetics
Elements Of Electromagnetics
Mechanical Engineering
ISBN:
9780190698614
Author:
Sadiku, Matthew N. O.
Publisher:
Oxford University Press
Mechanics of Materials (10th Edition)
Mechanics of Materials (10th Edition)
Mechanical Engineering
ISBN:
9780134319650
Author:
Russell C. Hibbeler
Publisher:
PEARSON
Thermodynamics: An Engineering Approach
Thermodynamics: An Engineering Approach
Mechanical Engineering
ISBN:
9781259822674
Author:
Yunus A. Cengel Dr., Michael A. Boles
Publisher:
McGraw-Hill Education
Control Systems Engineering
Control Systems Engineering
Mechanical Engineering
ISBN:
9781118170519
Author:
Norman S. Nise
Publisher:
WILEY
Mechanics of Materials (MindTap Course List)
Mechanics of Materials (MindTap Course List)
Mechanical Engineering
ISBN:
9781337093347
Author:
Barry J. Goodno, James M. Gere
Publisher:
Cengage Learning
Engineering Mechanics: Statics
Engineering Mechanics: Statics
Mechanical Engineering
ISBN:
9781118807330
Author:
James L. Meriam, L. G. Kraige, J. N. Bolton
Publisher:
WILEY