Complete Physics Assignments by 11PM EST

Completed Posted Nov 4, 2015 Paid on delivery
Completed Paid on delivery

Section 6.1 - Force, Displacement, and Work (Homework)- 6 questions

Due: Wednesday, November 4, 2015 11:00 PM EST

Section 6.2 - Work-Kinetic Energy Theorem (Homework)-5 questions

Due: Wednesday, November 4, 2015 11:00 PM EST

Section 6.3 - Potential Energy (Homework)-6 questions

Due: Monday, November 9, 2015 11:00 PM EST

Section 6.4 - Potential Energy with Springs (Homework)-4 questions

Due: Monday, November 9, 2015 11:00 PM EST

4 Assignments in total, 21 total questions. 2 assignments are due by 11 pm EST. The other two assignments can be done by tomorrow if need be. Each question has 10 total submissions. After 5 the question resets and changes the numbers in the question. That means you have 10 times to enter the answer before its completely wrong which makes it easier. This is on webassign. Please understand algebra based physics again, ALGEBRA based physics. PLEASE ONLY REPLY IF YOU KNOW PHYSICS AND IF YOU KNOW YOU CAN DO THIS.

Sample questions:

A block of mass

m = 5.0 kg

is pulled along a rough horizontal surface by a rope as sketched in the figure below. The tension in the rope is 50 N, and the coefficient of kinetic friction between the block and the surface is

μK = 0.30.

You use an elevator to travel from the first floor

(h = 0)

to the fourteenth floor of a building

(h = 42 m).

If you start from rest and you end up at rest on the fourteenth floor, what is the work done by gravity on you? Assume you have a mass of 72 kg.

The roller coaster in the figure below starts with a velocity of 16 m/s. One of the riders is a small girl of mass 32 kg. Find her apparent weight when the roller coaster is at locations B and C. At these two locations, the track is circular, with the radii of curvature given in the figure. The heights at points A, B, and C are

hA = 10 m,

hB = 20 m,

and

hC = 0.

Assume friction is negligible and ignore the kinetic energy of the wheels. (The figure is not necessarily drawn to scale.) What is the weight at B and C?

Engineering Mathematics Physics

Project ID: #8836149

About the project

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