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  • m represents the mass of the rod
  • L represents the distance between the centers of mass of the two spheres
  • R represents the radius of each sphere
  • M represents the mass of each sphere

I will leave it as an exercise for the student to assign typical numeric values to each of those variables and to compute the rotational inertia of adumbbell.

Another good exercise for the student would be to replace the spheres with disks having the same mass and compare the rotational inertia of the twoconfigurations.

A pulley and two objects, part 1

In this scenario, a friction-free pulley with a mass M and a rotational inertia I is suspended from a beam. A cord is threaded around the pulley and twoobjects with masses of m1 and m2 are fastened to the ends of the cord.

The cord will not stretch and will not slip on the surface of the pulley.

When the two objects are held at the same level with the cord taut and released simultaneously, one may move up and the other may move down, dependingof the relative mass values of the two objects. Because the cord cannot stretch, the magnitude of the velocity of each object must be the same.

Ignoring air resistance, write a general equation for the magnitude of the velocity of each object after each object has moved a distance h.

Solution:

With no friction and no air resistance, all forces acting on the system are conservative. Therefore, the mechanical energy of the system must be preserved.

deltaU + deltaK = 0

where

  • deltaU is the change in potential energy
  • deltaK is the change in kinetic energy

Since the pulley mechanism is in equilibrium, the only potential energy possessed by the system that can change is the gravitational potential energy ofthe two objects. Therefore, when the objects move, the gravitational potential energy of the two objects is converted into translational kinetic energy of theobjects and rotational kinetic energy of the pulley.

Changes in potential energy of the system

In order to keep our algebraic signs straight, we will assume that m1 is greater than (or possibly equal to) m2. As a result, when the objects move, m1 will move downand m2 will move up.

This will result in the following changes in the potential energy of the system.

deltaU1 = -m1*g*h

deltaU2 = +m2*g*h

where

  • deltaU1 and deltaU2 represent the changes in gravitational potential energy for m1 and m2 respectively.
  • g represents the acceleration of gravity.
  • h represents the magnitude of the change in height of each object.

The mechanical energy of the system

The mechanical energy of the system includes the translational kinetic energy of each of the two objects plus the rotational kinetic energy of the pulley.

deltaK = (1/2)*(m1+m2)*v^2 + (1/2)*I*w^2

where

  • m1 and m2 are the mass values for each object
  • v is the magnitude of the translational velocity of each object
  • I is the rotational inertia of the pulley
  • w is the angular velocity of the pulley

Translational speed versus tangential speed

Because the cord cannot slip on the pulley, the tangential speed of a point on the edge of the pulley must be equal to the translational speed of theobjects.

Questions & Answers

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Lambiv
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appreciation
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In economics, a perfect market refers to a theoretical construct where all participants have perfect information, goods are homogenous, there are no barriers to entry or exit, and prices are determined solely by supply and demand. It's an idealized model used for analysis,
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AI-Robot
When MP₁ becomes negative, TP start to decline. Extuples Suppose that the short-run production function of certain cut-flower firm is given by: Q=4KL-0.6K2 - 0.112 • Where is quantity of cut flower produced, I is labour input and K is fixed capital input (K-5). Determine the average product of lab
Kelo
Extuples Suppose that the short-run production function of certain cut-flower firm is given by: Q=4KL-0.6K2 - 0.112 • Where is quantity of cut flower produced, I is labour input and K is fixed capital input (K-5). Determine the average product of labour (APL) and marginal product of labour (MPL)
Kelo
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Quantity demanded refers to the specific amount of a good or service that consumers are willing and able to purchase at a give price and within a specific time period. Demand, on the other hand, is a broader concept that encompasses the entire relationship between price and quantity demanded
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Economic growth as an increase in the production and consumption of goods and services within an economy.but Economic development as a broader concept that encompasses not only economic growth but also social & human well being.
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In economics, the contract curve refers to the set of points in an Edgeworth box diagram where both parties involved in a trade cannot be made better off without making one of them worse off. It represents the Pareto efficient allocations of goods between two individuals or entities, where neither p
Cornelius
In economics, the contract curve refers to the set of points in an Edgeworth box diagram where both parties involved in a trade cannot be made better off without making one of them worse off. It represents the Pareto efficient allocations of goods between two individuals or entities,
Cornelius
Suppose a consumer consuming two commodities X and Y has The following utility function u=X0.4 Y0.6. If the price of the X and Y are 2 and 3 respectively and income Constraint is birr 50. A,Calculate quantities of x and y which maximize utility. B,Calculate value of Lagrange multiplier. C,Calculate quantities of X and Y consumed with a given price. D,alculate optimum level of output .
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Answer
Feyisa
c
Jabir
the market for lemon has 10 potential consumers, each having an individual demand curve p=101-10Qi, where p is price in dollar's per cup and Qi is the number of cups demanded per week by the i th consumer.Find the market demand curve using algebra. Draw an individual demand curve and the market dema
Gsbwnw Reply
suppose the production function is given by ( L, K)=L¼K¾.assuming capital is fixed find APL and MPL. consider the following short run production function:Q=6L²-0.4L³ a) find the value of L that maximizes output b)find the value of L that maximizes marginal product
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types of unemployment
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What is the difference between perfect competition and monopolistic competition?
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Source:  OpenStax, Accessible physics concepts for blind students. OpenStax CNX. Oct 02, 2015 Download for free at https://legacy.cnx.org/content/col11294/1.36
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