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Since the curve is designed for a speed of 85 km/h, traveling at that speed would mean no friction is needed to round the curve. From Example 5-15 in the textbook, the no-friction banking angle is given by
Driving at a higher speed with the same radius means that more
Equate the two expressions for the normal force, and solve for the speed.
(III) A curve of radius 68 m is banked for a design speed of 85 km/h. If the coefficient of static friction is 0.30 (wet pavement), at what range of speeds can a car safely make the curve? [Hint: Consider the direction of the
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- A pendulum consists of a small object called a bob hanging from a light cord of fixed length, with the top end of the cord fixed, as represented in Figure OQ5.6. The bob moves without friction, swinging equally high on both sides. It moves from its turning point A through point B and reaches its maximum speed at point C. (a) Of these points, is there a point where the bob has nonzero radial acceleration and zero tangential acceleration? If so, which point? What is the direction of its total acceleration at this point? (b) Of these points, is there a point where the bob has nonzero tangential acceleration and zero radial acceleration? If so, which point? What is the direction of its total acceleration at this point? (c) Is there a point where the bob has no acceleration? If so, which point? (d) Is there a point where the bob has both nonzero tangential and radial acceleration? If so, which point? What is the direction of its total acceleration at this point? Figure OQ5.6arrow_forwardA block of mass 2 kg begins with velocity 2.1 m/s at the top of a curved track at a height h= 8.5m and travels around a circular loop of radius R. There is negligible friction between the block and the track between points A and D, but the coefficient of kinetic friction on the horizontal surface between points D and E is u=0.4. If the block of stops at point E, what is the distance (in m) between points D and E? A 2Rarrow_forwardA carousal has a radius R=7 m, with cables tying the seats being L=10 m long. What should be the speed of the seats so that the cables make an angle of A= 19 degrees with the vertical.arrow_forward
- A block of mass 2 kg begins with velocity 2.3 m/s at the top of a curved track at a height h= 9.9 m and travels around a circular loop of radius R. There is negligible friction between the block and the track between points A and D, but the coefficient of kinetic friction on the horizontal surface between points D and E is u=0.4. If the block stops at point E, what is the distance (in m) between points D and E? A 2R Вarrow_forwardA block with mass m is placed on the top of a smooth cline. The cline is h=4.3m high. The block is released from the cline and the moves across a horizontal surface. The region of the horizontal surface between A and B is tough and the kinetic friction coefficient is u = 0.47 and the distance between A and B is 0.6 meters. The remained region of the horizontal surface is smooth. Then the block goes to a quarter circle with radius R = 2.1m, The quarter circle is also smooth. Finally, the block collide elastically with an identical mass, and the second mass flies from the quarter circle and hits the ground. When the block hits the ground what is the horizontal distance does it move in meters since it flies from the quarter circle?(g 9.81m s-2. Round to the nearest hundredth.) h R A B my marrow_forwardWhen a body slides down an inclined plane, does the work of friction depend on the body’s initial speed? Answer the same question for a body sliding down a curved surface.arrow_forward
- A roller-coaster car has a mass of 1000 kg when fully loaded with passengers. As the car passes over the top of a circular hill of radius 23 m, its speed is not changing. (a) At the top of the hill, what is the normal force (using the negative sign for the downward direction) FN on the car from the track if the car's speed is v = 7.8 m/s? (b) What is FN if v = 20 m/s? Use g=9.81 m/s?. (a) Number ! Units (b) Number i Unitsarrow_forwardFind the maximum speed of a car which can be safely driven along a curve of radius 100 m and the co-efficient of friction between the tyres and road is 0.2.arrow_forwardA 0.5 kg object moves in a horizontal circular track with a radius of 2.5 m. An external force of 3.0 N, acting always tangent to the track, causes the object to speed up as it goes around. If it starts from rest, its speed at the end of one revolution is:arrow_forward
- A 0.40 kg small box starts from rest and slides down a frictionless curved surface ( ¼ of a circle ) of radius = 2.00 meters, at the bottom of the ramp there is a level surface , length = 2.00 meters, with a coefficient of friction µ= 0.4 , after the level surface it slide up another frictionless curved surface on the other side (1/4 of a circle). How high up the second curved surface does the box go? 2, The potential energy function for a force, F, is U = α x3 where α is a positive constant. What is the Force? B) If the total energy of the system is 240 joules and α = 1.60, Where are the turning points? c) What is the maximum kinetic energy of the object?arrow_forwardA raindrop of radius 2 mm falls from a height of 500 m above the ground. It falls with decreasing acceleration (due to viscous resistance of the air) until at half its original height, it attains its maximum (terminal) speed, and moves with uniform speed thereafter. What is the work done by the gravitational force on the drop in the first and second half of its journey? What is the work done by the resistive force in the entire journey if its speed on reaching the ground is 10 ms-1?arrow_forwardA cookie jar is moving up a 40 incline. At a point 55 cm from the bottom of the incline (measured along the incline), the jar has a speed of 1.4 m/s. The coefficient of kinetic friction between jar and incline is 0.15. (a) How much farther up the incline will the jar move? (b) How fast will it be going when it has slid back to the bottom of the incline? (c) Do the answers to (a) and (b) increase, decrease, or remain the same if we decrease the coefficient of kinetic friction (but do not change the given speed or location)?arrow_forward
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