The position-time graph for two joggers, Physics

Assignment Help:

The position-time graph for two joggers, A and B, is shown in the accompanying figure

1950_physics.png

a. How far apart are the two runners at 10.0 min?

1.50 km

b. At what time are they 1.00 km apart?

20.0 min

c. How far apart are they at 50.0 min?

0.50 km

d. At what time do they meet?

40.0 min

 

 


Related Discussions:- The position-time graph for two joggers

Energy transformation for a dart, Energy Transformation for a Dart In t...

Energy Transformation for a Dart In that case of the dart being launched from the spring gun and the just forces doing work upon the dart are internal forces. Initially, the da

Hawking temperature, Hawking temperature: The temperature of a black h...

Hawking temperature: The temperature of a black hole caused through the emission of Hawking radiation. For a black hole along with mass m, it is following T = (hbar c 3 )/(

Explain choroid, Choroid: Inside the sclera it is thin, non transparent...

Choroid: Inside the sclera it is thin, non transparent or opaque. Its front part of iris there is an aperture known as the pupil which control amount of light entering the eye.

Explain torque, A 92-kg man uses a 3.05-m board to attempt to move a boulde...

A 92-kg man uses a 3.05-m board to attempt to move a boulder, as shown in the diagram below. He pulls the end of the board with a force equal to his weight and is able to move it t

Which side of the equation is the cause, Question  Gauss's Law can b...

Question  Gauss's Law can be considered a cause and effect equation. When consequently considered on which side of the equation is the cause and on which side is the effec

Explain avalanche breakdown, At high reverse voltage, due to high electric ...

At high reverse voltage, due to high electric field, the minorities charge carriers, while crossing the junction acquires very high velocities. A chain reaction is prepared, giving

Describe the variation of the radius of bright fringe, Describe the variati...

Describe the variation of the radius of bright fringe of Newton's rings with refractive index of the thin film enclosed between the glass plate and plan-convex lens when observed b

Write Your Message!

Captcha
Free Assignment Quote

Assured A++ Grade

Get guaranteed satisfaction & time on delivery in every assignment order you paid with us! We ensure premium quality solution document along with free turntin report!

All rights reserved! Copyrights ©2019-2020 ExpertsMind IT Educational Pvt Ltd