subject
Physics, 23.08.2019 20:30 nancyrj3860

Consider a point x = to of stable equilibrium. show that in the vicinity of the point to, the potential energy function is equal (up to an arbitrary constant) to the potential energy of a harmonic oscillator with harmonic constant k = v(20). hint: taylor expand the potential energy function about the point x = lo and keep up to quadratic terms. (b) consider the central force + = (ab sin (be) – mon) ê, with (a, b) positive con- stants, m the mass of the particle and p the polar, radial coordinate on the plane. i. [2 marks] find a potential energy function ii. [3 marks] find the effective potential vefs() from the energy conservation equation. iii. (5 marksconsider a particle moving on a plane with total angular momen- tum per unit mass h = b and total energy e = i. qualitatively sketch the energy diagram (clearly denote the turning points and distinguish the regions where motion is and is not possible). iv. (5 marks) if the particle is found moving in the vicinity of a point of stable equilibrium, denote the apses of its orbit on the energy diagram and find its velocity when it passes by each apsis. assume that the 'maximum/minimum distance pmin/max from the centre of force is known.

ansver
Answers: 3

Another question on Physics

question
Physics, 22.06.2019 14:10
Match these items. 1. coulombs __force 2. ohms __emf 3. centimeters __resistance 4. newtons __charge 5. volts __length
Answers: 1
question
Physics, 22.06.2019 18:00
Write a hypothesis about the effect of increasing resistance on the current in the circuit. use theformat and be sure to answer the lesson question. “how do changes in voltage or resistance affect current in an electric circuit? ”
Answers: 3
question
Physics, 22.06.2019 20:00
An element becomes a positively charged ion when itloses protons.loses electrons.gains electrons.gains neutrons.
Answers: 2
question
Physics, 22.06.2019 23:00
Hunter’s velocity was 4.5 m/s. at the end of his race, his velocity was the same. which best describes his movement? his movement stopped. his acceleration is zero. his time was constant. his acceleration was positive.
Answers: 1
You know the right answer?
Consider a point x = to of stable equilibrium. show that in the vicinity of the point to, the potent...
Questions
question
Mathematics, 13.12.2019 02:31
question
Mathematics, 13.12.2019 02:31
Questions on the website: 13722363