If the tension, T, is 21.64 N and the magnitude of the acceleration, a, is 3.0 m/s2, what is the mass, m (in kg), of the suspended object? Assume that all surfaces and the pulley are frictionless?
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- (a) Give an example of different net external forces acting on the same system to produce different accelerations. (b) Give an example of the same net external force acting on systems of different masses, producing different accelerations. (c) What law accurately describes both effects? State it in words and as an equation.When you take off in a jet aircraft, there is a sensation of being pushed back into the seat. Explain why you move backward in the seat—is there really a force backward on you? (The same reasoning explains whiplash injuries, in which the head is apparently thrown backward.)Measuring coefficients of friction A coin is placed near one edge of a book lying on a table, and that edge of the book is lifted until the coin just slips down the incline as shown in Figure P4.82. The angle of the incline, C, called the critical angle, is measured. (a) Draw a free-body diagram for the coin when it is on the verge of slipping and identify all forces acting on it. Your free-body diagram should include a force of static friction acting up the incline. (b) Is the magnitude of the friction force equal to sn for angles less than C? Explain. What can you definitely say about the magnitude of the friction force for any angle c? (c) Show that the coefficient of static friction is given by s = tan c. (d) Once the coin starts to slide down the incline, the angle can be adjusted to a new value c c such that the coin moves down the incline with constant speed. How does observation enable you to obtain the coefficient of kinetic friction? Figure P4.82
- New Tab G What impact did Stephen Sondh x nnifer Petit-Frere - Coefficient X ment/d/thY)XGQuzYnLR8M8u5q0QImW5Vjo_LFwZkEqaK8_fBTY/edit fficient of Friction Worksheet-4/14/21 @ Last edit was 2 days ago nat Tools Add-ons Help 14 BIU Heading 1 Arial 6 1. Which of the following is true of the coefficient of static friction? A. It is a number that indicates how difficult two surfaces are to slide past one another. B. It depends on the surface area in contact. C. It is the same for all materials. 2. How is the coefficient of static friction defined and measured? A. Force of sliding friction divided by normal force B. Force of static friction divided by normal force C. Normal force divided by force of static friction 3. Which of the following would change the coefficient of static friction? A. Changing one or both of the materials involved1:06 طائرات ب.pdf University of Technology Mechanical Department 2020/2021 Date :4/3/2021 Time :30 minutes Friction Ass.Prof.Dr.Enass H.Flaieh Block A weighting 1000N rests over block B which weights 2000N as shown in the figure. Block A is tied to the wall with horizontal string. If the coefficient of friction between blocks A and B is 0.25 and A between B and the floor is 0.333. What should be the value of the horizontal force P to move the block B.moodle.nct.eduom/mod/qi -Learning Portal Courses - Reports - e-Services- Academic Departments - ETC - CIMS - A 17kg crate resting on a horizontal surface is pushed as shown. If the coefficient of static friction u, between the surfaces is 0.24, what is the minimum force (F) required to start the motion? O a 4.08N O b. 70.83N Oc 39.98N Od. 694.17N Windows buut An object of mass Skg is sliding with a constant velocity of 10m/s on a frcitionless horizontal table. The force needed to keep the object moving with the same velocity is. 144 4- # 4. 6. V.
- cs (1) Lab. section 1 rd My courses First Semester 2020/2021 Faculty of Arts and Sciences Physics (1) Lab. section 1 Determine the resultant of two forces if EFx= 40g.wt and EFy=100 g.wt, using method of components Select one: O a. 111.8 g.wt, 63.4° O b. 122.1 g.wt, 55° O c. 107.7 g.wt, 68.2° O d. 116.6 g.wt, 59° O e. 104.4 g.wt, 73.3° page Next pag NEXT ACTIV Jump to.. Physics lab 1 2020-20251566|DITO 13.5 DO I:15% 9:09 No service K/s Done 50 X (3) Determine the acceleration and tension in the Atwood Machine. (Assume frictionless Surface) F = 500 N 350 25 kg 10 kg Paste (3) Determine the acceleration and tension in the Atwood Machine. (Assume frictionless Surface) ACTIVITY: (2) Solve the tension on each string (1)Make asimple Tensigrety table/chair with Three supporting legs/string/chain. F- 500 N Submit aclear video of your works. Show that it can withstand with a weight of your phone 45 46 47 48 DO Slide Picture Text Box1. Calculate the weight in newtons and in lbf of an average person on the Earth. 2. During cell migration, fibroblasts can generate traction forces of approximately 2 Å~ 104μdynes. What is the equivalent force in KN?
- ssignment Score: Give Up? 0% Resources O Hint Check Answer uestion 2 of 8 Am = 1.85 kg object hangs in equilibrium at the end of a rope (taken as massless) while a wind pushes the object with 13.5 N horizontal force. Find the magnitude of the a Fw tension in the rope and the rope's angle from the vertical. The acceleration due to gravity is g = 9.81 m/s². tension: angle: ম %2 ३৪ন Windle crat X Projectile (CE12S3).pdf Newtons Law (CE12S3).p X 9 New Tab /quizzes/428624/take/questions/6001569 ysics for Enginee. Calculus 2 NSTP Question 15 2 pts A lemon crate with a weight of 175 N accelerates along a frictionless surface as the crate is pulled with a force of 18.0 N as shown in the drawing. What is the horizontal 25°. acceleration of the crate ? Given 0 O 0.60 O 0.91 0.09 m O 0.06 34°C8. A block is at rest on a rough inclined plane and is connected to an object with the same mass as shown. The rope may be considered massless; and the pulley may be considered frictionless. The coeffi- cient of static friction between the block and the plane is us; and the coefficient of kinetic friction is k 0 A. g D. g - Hk sin(0) m a. What is the magnitude of the static frictional force acting on the block? B.m g [1 - sin(0)] C. mg D. mg cos(0) B. g - Hk cos(0) A. m g sin(0) E. mg [1 - cos(0)] b. If the rope were cut between the block and the pulley, what would be the magnitude of the acceleration of the block down the plane? C. g [sin(0) - μ cos(0)] sin(0)] c. If the mass of the suspended object is doubled, what will be the acceleration of the block up the plane? B. g [2 tan(0) - uk sin(0)] D. 2g [μ sin(0) - cos(0)] m E. g [tan (0) A. g [2 - μk sin(0)] C. g [2 cos(0) - μ sin(0)] E. g [2 sin(0) Hk Cos (0)]. -