
suppose a book is sliding up an incline plane until it comes to a complete stop....
Exercise #2 Suppose a book is sliding up an incline plane until it comes to complete stop. a) Draw the free-body diagram (FBD) of the book right at the moment when it is being pushed up the incline plane. Suppose the book is still not moving and there is no air friction. Hints: Do not forget to include an appropriate coordinate system in the FBD. Epush b) Draw the free-body diagram of the book as it slides up the slightly...
In
the figure at right, a 1.00-kg book on an inclined table is
connected by a string to a 500-gram cup. The book is given a push
up the incline and released with an initial speed of 3.00m/s. The
coefficient of kinetic friction between the book and the table are
µk = 0.200 . Assume that the pullet is a uniform solid cylinder
with a radius of 2.00cm . The magnitude of the acceleration of the
book and cup is...
Exercise #3—Suppose a person is pulling a box to the right via a massless rope (see below figure). Draw the free-body diagrams of the box, the rope, and the ground. Neglect air resistance. The force vectors do not necessarily need to be drawn to scale. Hints: Do not forget to include appropriate coordinate systems in the FBDs.
Exercise #3-Suppose a person is pulling a box to the right via a massless rope (see below figure). Draw the free-body diagrams of the box, the rope, and the ground. Neglect air resistance. The force vectors do not necessarily need to be drawn to scale. Hints: Do not forget to include appropriate coordinate systems in the FBDs.
A crate is given initial speed 3 m/s up along incline plane creating 25° with horizontal. Coefficient of kinetic friction between crate and incline µ=0.17. a) Draw the free body diagram for the crate moving up the incline. Specify all forces acting on the crate. b) Find acceleration of crate on its way up. c) Find time which it takes for crate to come to stop.
A crate is given initial speed 3 m/s up along incline plane creating 25 degree with horizontal. Coefficient of kinetic friction between crate and incline = 0.17 a) draw the free body diagram for the crate moving up along the incline. specify all the force acting on the crate b) find acceleration of crate on its way up c) find time which it take for crate to come to stop.
Assignment:-GCA-CH07A work-KE Theory Pg12 SCALE-UP Table: Station: A block of mass M is launched up a rough plane that makes an angle θ with the horizontal by placing (not attached) it against a massless spring compressed by a distance d and releasing it from rest (see "Initial stage" in the figure at right). The block slides a distance L (>d) up the plane and comes off the plane with an unknown speed v (see "Final stage" in the figure at...
Consider a block of wood given an initial velocity directed up an incline of angle θ. It reaches some maximum distance up the incline, turns around, and slides back down. There is friction present. Take the motion of the block to be after any push necessary to provide the initial velocity. (a) Draw and label separate free body diagrams (FBDs) for (i) the motion up the incline and (ii) the motion back down. Include coordinate axes and indicate acceleration. (b)...
Cart on an Incline plane. Start up the Dynamics Track apparatus. Set the µKS? # stepper to zero (µk = 0.12 and µs = 0.18 by default). Please notice that the dynamic track has a feature to be tilted by dragging when the mouse cursor is in the colored part of either end of the track. The message box informs that the track can be tilted up or down. With the brake off, turn on the friction pad and put...
14. A physics instructor (m= 60 kg) is being pulled up an incline plane. Draw a free body diagram and label all of the forces acting on the instructor. Then calculate the coefficient of friction if a = 13 m/s?. T= 300N 0=320 15. You drive 85 miles West, 112 miles East, and then 45 miles South again in 1652 s. a) What is your distance traveled? b) What is your displacement? c) What is your speed in cm/hr? d)...