A thin washer of internal radius 5 cm and external radius of 12 cm carries a load of 15mC distributed evenly on its surface located on the Y axis. A small 7.5g sphere with a load of 3mC is placed exactly in the center. A small push is given along the axis of the washer (the x-axis) to remove it from rest. How fast will the sphere be moving when it is 2m from the center of the washer? (hint, ignore gravity and energy is conserved)
Q: You push a .50kg block against a spring (k=3100 N/m),compressing it by .12m. The block is then…
A: The mass of the block, m1=0.50 kg The spring constant, k=3100 N/m The compression of the spring,…
Q: A solid block in the shape of a cube is sliding on a horizontal table with negligible friction at a…
A: Given that solid cube move with velocity (v) and strike the tip. After that cube starts rotating…
Q: on a collision course. (a) In terms of G, ME, m, and r, find the total mechanical energy of the…
A: 4) a) The mechanical energy of satellite A and B can be represented as, Here, G, ME, m, r, and vA…
Q: Lana Kane, Archer’s spy companion, is a 70 kg pole-vaulter. She falls from a peak height of 5.90 m…
A:
Q: A solid block in the shape of a cube is sliding on a horizontal table with negligible friction at a…
A: Moment of inertia of the block about the lip is, I0=I+Mr2 r is the distance…
Q: A thin cylindrical shell of M = 4.00 kg and radius R = 2.50 m is rolling down an inclide. If it is…
A:
Q: Part (b) How fast, in meters per second, is object A moving at the end of the ramp if it's mass is…
A: It is given in the question that two cylindrical objects having same mass and radius But object is a…
Q: Eire is tied to a rope that is tied to the branch of a tree so that the tire swings in a circular…
A: u= initial velocity when child was at platform.
Q: A solid cylinder is released from the top of an inclined plane of height 0.39 m. From what height,…
A:
Q: A solid block in the shape of a cube is sliding on a horizontal table with negligible friction at a…
A:
Q: A solid, uniform, cylindrical wheel of mass M=5.00 kg, and radius R=0.300 m is used to draw water…
A:
Q: A homogeneous, 10 m-long beam has a total weight of 80N and is divided to 10 equal segments. Object…
A: Given:- A homogeneous, 10 m-long beam has a total weight of 80 N and is divided into 10 equal…
Q: A bowling ball in the shape of a uniform, solid sphere, that is travelling on a level surface, has a…
A: let the mass = m Let the radius = r the linear speed at the bottom of plane incline = 3 m/sθ = 15o
Q: Consider the following mass distribution: 3 kg at (4 m, −4 m), 2.8 kg at (0 m, 4.2 m), and 3.7kg…
A:
Q: A 30 g block sits at the center of a turntable that rotates at 65 rpm. A compressed spring shoots…
A:
Q: M1 M2 اسلس لسلب السلسلسلب 4.7
A: M1=10g. M2=m. Distance of M1 from mid=3 cm. Distance of M2 from mid=4.7-3=1.7 cm
Q: CM of a Solid Cone Find the CM position for the uniform solid cone of mass m, radius R and height h…
A: Given information:
Q: 3. A roller of weight 500 N has a radius of 120 mm and is pulled over a step of height 60 mm by a…
A:
Q: A double-decker London bus might be in danger of rolling over in a highway accident, but at the low…
A: Given that the, track width w is 2.05 m, the height h of com is 1.45 m when unloaded, and when…
Q: A device used for mixing consists of three identical thin rods extending from a central axle, all in…
A:
Q: John is performing an isometric contraction of the quadriceps to hold a 500 N weight at an angle of…
A: Given, weight W=500angle θ=450l=42.5 cmd=10mm
Q: A uniform meter stick has a mass of 200 grams. One hundred grams is suspended at the 20 cm mark and…
A: Given: A uniform meter stick 100 cm Mass = 200 gram and 100 gram. Concept of center of gravity: In…
Q: The 300-kg uniform I-beam supports the load shown. Determine the reactions at the supports. Answers:…
A:
Q: Answer the question in full details, thank you very much, Answer on the correct significant figures:…
A:
Q: A cube with the dimensions bxbxb and a mass, m, lies on a horizontal surface. The cube is subjected…
A: To determine: The distance travelled by the cube on the horizontal surface.The mass of the cube is…
Q: Consider a cantilever viewing platform extending over the rim of a cliff as shown below. In an…
A: Given, The following quantities are assumed known: L (m), M (kg), m (kg), and x (m). The gravity…
Q: A hammer with mass m is dropped from rest from a height h above the earth’s surface. This height is…
A: In this case Energy should be conserved i.e. Total initial energy is equal to total final energy…
Q: A student playing with a spring of negligible mass and a spring constant of 655 N/m decided to swing…
A:
Q: In a physics experiment, a metal bar is balanced on a fulcrum. A 5.0 kg mass is placed on the bar,…
A:
Q: The Cavendish balance shown in the figure below has two large lead balls, each of mass M = 1.5 kg,…
A: The given values are,
Q: Under what conditions, is linear momentum conserved? Check all that apply. There are no frictional…
A: To determine Conditions when linear momentum is conserved
Q: solid sphere of uniform density (weight = 3.0 lbs starts from rest and rolls down a ramp (H = 1.57…
A:
Q: You have probably noticed that the lower the tire pressure, the larger the contact area between the…
A: The formula for pressure is P=FA, where, P=pressure A=area
A thin washer of internal radius 5 cm and external radius of 12 cm carries a load of 15mC distributed evenly on its surface located on the Y axis. A small 7.5g sphere with a load of 3mC is placed exactly in the center. A small push is given along the axis of the washer (the x-axis) to remove it from rest. How fast will the sphere be moving when it is 2m from the center of the washer? (hint, ignore gravity and energy is conserved)
Step by step
Solved in 4 steps with 4 images
- If you are to add another box with a mass of 5kg, how far from the pivot point should you put for the system to be in equilibrium? * 0.9m 15kg 8kg 5kg 2.2m 1.8m 1.67 m 1.76 m 2.47 m 2.84 m Correct answer not foundA tire, which is mounted on a car, has a radius of 0.23m0.23m. A nail with a mass of 11.4g11.4g is stuck in the tread of the tire, and it is held there with a maximum frictional force of 0.53N0.53N. The car has been elevated on a mechanic lift so that the tire is no longer in contact with the pavement. Part (a) What is the tire tread’s lowest tangential speed, in meters per second, at which the nail will pull free from the tire? (How does gravity affect the net force on the nail at various positions in the rotation of the tire.) Part (b) At what tangential speed, in meters per second, would the nail pull free when it is at the top of the tire? (This is a mildly silly question because the nail would have already pulled free at some other point in the rotation.)The 100 kg sphere A is released from rest at an angle of α from the vertical, and hits the 10 kg block B (initially at rest), causing block B to have an initial velocity of 5 m/s as it enters the circular ramp (radius = 5 m) and stop temporarily at a final height h. The coefficient of restitution between sphere A and the block B is 0.6. Assume all surfaces are frictionless. Also assume direct impact between A and B. What is the velocity of A just before it hits block B? Choices:2.94 m/s11.25 m/s5.00 m/s3.44 m/s
- 4. A rod is L meters long and the center of mass of the rod is at the point L meters from the left end. If the measure of the linear density at a point is proportional to a power of the measure of the distance of the point from the left end and the linear density at the right end is 20 kg/m, find the linear density at a point x meters from the left end. (Leithold, 1996)if global warming continues it is likely that some ice from the polar ice caps of the Earth will melt and the water will be distributed closer to the equator. If this occurs , what would happen to the length of the day?The cylindrical plug A of mass ma-2.9 kg is released from rest at B and slides down the smooth circular guide. The plug strikes the block C of mass me 1.8 kg and becomes embedded in it. Calculate the distances which the block and plug slide before coming to rest. The coefficient of kinetic friction between the block and the horizontal surface is 0.38 and the distance r= 1.62m. Answer: s m
- -3. ssm The hammer throw is a track-and-field event in which a 7.3 kg ball (the “hammer"), starting from rest, is whirled around in a circle sev- eral times and released. It then moves upward on the familiar curving path of projectile motion. In one throw, the hammer is given a speed of 29 m/s. For comparison, a .22 caliber bullet has a mass of 2.6 g and, start- ing from rest, exits the barrel of a gun at a speed of 410 m/s. Determine the work done to launch the motion of (a) the hammer and (b) the bullet.A block of mass M with a semicircular track of radius R, rests on a horizontal frictionless surface. A uniform cylinder of radius r and mass m is released from rest at the top point A (see fig.). The cylinder slips on the semicircular frictionless track. (a) How far has the block moved when the cylinder reaches the bottom (point B) of the track ? (b) How fast is the block moving when the cylinder reaches the bottom of the track? 105 100 gubwe A А m ck?) I noites R ITIS IS M B A min yd snobA 250g meter stick extends over the edge of the lab bench as shown below. Find the maximum position from the edge of the bench at which a 250g coin can be placed which maintains the system’s state of equilibrium.
- A skateboarder with his board can be modeled as a particle of mass 70.0 kg, located at his center of mass. As shown in the figure below, the skateboarder starts from rest in a crouching position at one lip of a half-pipe (point 4). On his descent, the skateboarder moves without friction so that his center of mass moves through one quarter of a circle of radius 5.70 m. (a) Find his speed at the bottom of the half-pipe (point B) m/s (b) Immediately after passing point®, he stands up and raises his arms, lifting his center of mass and essentially "pumping" energy into the system. Next, the skateboarder glides upward with his center of mass moving in a quarter circle of radius 5.34 m, reaching point D. As he passes through point, the speed of the skateboarder is 4.60 m/s. How much chemical potential energy in the body of the skateboarder was converted to mechanical energy when he stood up at point Ⓡ? (c) How high above point does he rise? mThe stem of a mushroom is right circular cylinder of diameter 1 and length 2 and its cap is a hemisphere of a radius “a”. If the mushroom is a homogeneous solid with axial symmetry and if its center of mass lies in the plane where the stem joins the cap, find “a”. (let the center of mass be at the origin)Countries with excellent wind energy sources decide on national projects for the development of wind energy. Ten percent of the land area will be devoted to 1.5 kW wind energy per person, roughly the amount of electricity used by one person in an industrialized country. 2 MW wind turbine with a rotor of 80 m diameter is placed in the average layout space of the figure. Depending on the wind conditions, the average output is 650 kW per turbine. Calculate the maximum density of a single sphere consistent with this business plan. Align geographic information with Germany, Spain, India and Denmark (they all have active wind power programs), and discuss the possibilities for achieving this goal in each of these countries.