lar speed of 2.21 rad/s . The cord is then pulled from below, shortening the radius of the circle in which the block revolves to 0.150 m. Model the block as a particle. a) Is angular momentum of the block con- served? How do you know? b) What is the new angular speed? c) Find the change in kinetic energy of the block. d) How much work was done in pulling the cord?
Stellar evolution
We may see thousands of stars in the dark sky. Our universe consists of billions of stars. Stars may appear tiny to us but they are huge balls of gasses. Sun is a star of average size. Some stars are even a thousand times larger than the sun. The stars do not exist forever they have a certain lifetime. The life span of the sun is about 10 billion years. The star undergoes various changes during its lifetime, this process is called stellar evolution. The structure of the sun-like star is shown below.
Red Shift
It is an astronomical phenomenon. In this phenomenon, increase in wavelength with corresponding decrease in photon energy and frequency of radiation of light. It is the displacement of spectrum of any kind of astronomical object to the longer wavelengths (red) side.
How do i solve 5a, 5b, 5c, 5d
![Problem 8
A small block on a frictionless, horizontal sur-
face has a mass of 2.20 x 10-2 kg. It is attached
to a massless cord passing through a hole in the
surface. The block is originally revolving at a
distance of 0.300 m from the hole with an angu-
lar speed of 2.21 rad/s . The cord is then pulled
from below, shortening the radius of the circle in
which the block revolves to 0.150 m. Model the
block as a particle.
a) Is angular momentum of the block con-
served? How do you know?
b) What is the new angular speed?
c) Find the change in kinetic energy of the
block.
d) How much work was done in pulling the
cord?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9272e8ab-5992-4552-8cc0-17bd266cc6bf%2F7e0b49e2-2462-4fa1-be0c-309f532cb6a9%2Fx0zfy3d_processed.png&w=3840&q=75)
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