subject
Physics, 22.04.2020 01:53 Rock3422

The parallel axis theorem provides a useful way to calculate the moment of inertia I about an arbitrary axis. The theorem states that I = Icm + Mh2, where Icm is the moment of inertia of the object relative to an axis that passes through the center of mass and is parallel to the axis of interest, M is the total mass of the object, and h is the perpendicular distance between the two axes. Use this theorem and information to determine the moment of inertia (kg·m2) of a solid cylinder of mass M = 5.50 kg and radius R = 6.40 m relative to an axis that lies on the surface of the cylinder and is perpendicular to the circular ends.

ansver
Answers: 2

Another question on Physics

question
Physics, 22.06.2019 10:30
Apulley with mass mp and a radius rp is attached to the ceiling, in a gravity field of 9.81 m/s2 and rotates with no friction about its pivot.
Answers: 3
question
Physics, 23.06.2019 06:00
Which of the following could represent a single-replacement reaction? a. element + compound = element + compound b. element + element = compound c. compound +compound = compound + compound d. compound = element + element
Answers: 3
question
Physics, 23.06.2019 11:10
How does an insulator stop the flow of an electric current? insulators convert electric energy to other forms of energy
Answers: 1
question
Physics, 23.06.2019 12:30
What is the prp when using 5 mhz acoustic waves through soft tissue, imaging a death of 20 cm?
Answers: 1
You know the right answer?
The parallel axis theorem provides a useful way to calculate the moment of inertia I about an arbitr...
Questions
question
Mathematics, 17.06.2021 14:00
question
History, 17.06.2021 14:00
question
History, 17.06.2021 14:00
question
Mathematics, 17.06.2021 14:00
question
Physics, 17.06.2021 14:00
Questions on the website: 13722361