100% satisfaction guarantee Immediately available after payment Both online and in PDF No strings attached
logo-home
Physics 1603 Exam Chapter 5-7 Review $9.49   Add to cart

Study guide

Physics 1603 Exam Chapter 5-7 Review

9 reviews
 526 views  17 purchases

Ch 5-7 textbook information, class notes, and online homework questions are simply blended into this 11-page study guide for the upcoming exam #2. Pictures and equations are included to make everything easier to comprehend. I have also included 16 practice questions with answers and solution (steps...

[Show more]
Last document update: 6 year ago

Preview 2 out of 11  pages

  • October 19, 2018
  • October 21, 2018
  • 11
  • 2018/2019
  • Study guide
book image

Book Title:

Author(s):

  • Edition:
  • ISBN:
  • Edition:
All documents for this subject (1)

9  reviews

review-writer-avatar

By: turubenamisati • 3 year ago

review-writer-avatar

By: katejacobs • 6 year ago

review-writer-avatar

By: annietran • 6 year ago

review-writer-avatar

By: keganpicc • 6 year ago

review-writer-avatar

By: josueguiagarza • 6 year ago

review-writer-avatar

By: marklebaron • 5 year ago

review-writer-avatar

By: manuelkingz10 • 6 year ago

Show more reviews  
avatar-seller
meismejennie
10/20/2018 Untitled document - Google Docs
https://docs.google.com/document/d/13HKw0BPTDcHZU4wwttU0a80YxB8ngAB4hAK9QOdbT30/edit 1/11PHYSICS 1603 CHAPTER 5-7 EXAM #2 STUDY GUIDE CH5: Energy CH6: Momentum, impulse, and collisions CH7: Rotational motion and gravitation CH5: Energy 5.1 W ork ❏Work done is represented by the letter W, unit is Joule (N*m) ❏W = F ∆x, where F = force (in Newtons) and ∆x = displacement (in meters) ❏If there is no displacement, there is no work done ❏Total (net) work done = W Force + W Kinetic friction ❏W Force and W Kinetic friction have different directions (different signs) ❏W Kinetic friction = F Kinetic friction * ∆x ❏If an angle above horizon is given, then W = (Fcosθ)∆x ❏No work is done on an object when it is moved horizontally because the applied force is perpendicular to the displacement ❏Work done can be varied, depends on the θ ❏Work done by gravity = mgh: If an object is being dropped from a point above the ground, W g > 0 because double-negative applies (g is -9.80m/s 2 and h is also negative - going down), vice versa ❏Question 1 : A force F is exerted on an object that undergoes a displacement x to the right. Both the magnitude of the force and the displacement are the same in all four cases. Which of the following is the correct order of the amount of work done by the force F, from most positive to most negative? (See picture) ❏Answer: c,a,d,b ❏Solution: Assuming F=5N and ∆x=2m (you can also use other #) -(a) An angle of 90 ° above the horizontal is given, (5N)(cos 90°)(2m) = 0 because cos 90° = 0 (refer back to block 7! The applied force is perpendicular to the displacement) -(b) No angle is given, (-5N)(2m) = -10J -(c) No angle is given, (5N)(2m) = 10J -(d) An angle of θ (apparently it’s greater 90°) is given, assuming it’s 120°, (5N)(cos 120°)(2m) = -5J since θ is greater than 90° 5.2 Kinetic energy and the W ork-Energy Theorem ❏Work-energy theorem: W net = ∆F * ∆x = (ma)∆x = KE f - KE i = ∆KE ❏Kinetic energy = ½(M*V 2 ), SI unit is Joules 10/20/2018 Untitled document - Google Docs
https://docs.google.com/document/d/13HKw0BPTDcHZU4wwttU0a80YxB8ngAB4hAK9QOdbT30/edit 2/11❏If an object’s speed is doubled, its kinetic energy will be affected by a factor of 4 ❏Constant/unchanged speed = no net work done ❏Question 2 (similar to example 34) : A force of 20.0N is exerted on a 3.0kg object that is moving to the right, has a displacement of 5.0m, while the coefficient of kinetic friction is 0.15. (a) Find the work done by applied force, F (b) Find the work done by the friction (c) What is the net work done on this object? (d) What is the speed of the object after moving 5.0m? ❏Answer: (a) 100J (b) -22.1J (c) 78.0J (d) 7.21m/s ❏Solution: -(a) W force = F∆x = (20.0N)(5.0m) = 100J -(b) W Kinetic friction = (-F Kinetic friction )∆x = (0.15)(3.0kg)(-9.80m/s 2 )(5.0m) = -22.05J ●Why? Because F Kinetic friction = μF normal and F normal = mg -(c) W net = W force + W Kinetic friction = 100+(-22.05) = 77.95 = 78.0J -(d) W net = ∆KE, ½(M*V 2 ) = 78.0J, where M = 3.0kg, you get V 2 = 52m 2 /s 2 = V = 7.21m/s 5.3 Gravitational Potential Energy ❏Potential energy: energy caused by its position, unit is Joules, PE = mgh, h is the height (displacement) ❏Energy cannot be created nor destroyed ❏When an object is thrown up, it has no kinetic energy at its highest point, similarly, when an object is dropped, it has no potential energy (see ex. 35) ❏Applying Conservation of Mechanical Energy to problems 1.Define the system, including all interacting bodies. Verify the absence of nonconservative forces. 2.Choose a location for y=0 , the zero point for gravitational potential energy 3.Select the body of interest and identify two points—one point where you have given information and the other point where you want to find out something about the body of interest 4.Write down the conservation of energy equation for the system. Identify the unknown quantity of interest 5.Solve for the unknown quantity, which is usually either a speed or a position, and substitute known values ❏Question 3 (similar to ex. 37) : A 2.0 kg block is on an 10.0m inclined plane of 30°, assuming the coefficient of kinetic friction is 0.15, find the net work done and the velocity of block at the bottom. ❏Answer: 72.5 J and 8.51m/s ❏Solution: -Height of the inclined plane = 10.0m(cos 30°) = 5.0m - pythagorean theorem -Net work done = W gravity + W Kinetic friction

The benefits of buying summaries with Stuvia:

Guaranteed quality through customer reviews

Guaranteed quality through customer reviews

Stuvia customers have reviewed more than 700,000 summaries. This how you know that you are buying the best documents.

Quick and easy check-out

Quick and easy check-out

You can quickly pay through credit card or Stuvia-credit for the summaries. There is no membership needed.

Focus on what matters

Focus on what matters

Your fellow students write the study notes themselves, which is why the documents are always reliable and up-to-date. This ensures you quickly get to the core!

Frequently asked questions

What do I get when I buy this document?

You get a PDF, available immediately after your purchase. The purchased document is accessible anytime, anywhere and indefinitely through your profile.

Satisfaction guarantee: how does it work?

Our satisfaction guarantee ensures that you always find a study document that suits you well. You fill out a form, and our customer service team takes care of the rest.

Who am I buying these notes from?

Stuvia is a marketplace, so you are not buying this document from us, but from seller meismejennie. Stuvia facilitates payment to the seller.

Will I be stuck with a subscription?

No, you only buy these notes for $9.49. You're not tied to anything after your purchase.

Can Stuvia be trusted?

4.6 stars on Google & Trustpilot (+1000 reviews)

80364 documents were sold in the last 30 days

Founded in 2010, the go-to place to buy study notes for 14 years now

Start selling
$9.49  17x  sold
  • (9)
  Add to cart