50-N external force applied parallel to the path. The coefficient of kinetic friction is 0.50. a) draw clearly the FBD of the block. b) How much is the normal force (in Newtons) on the block? c) How much work is done by the spring (in Joules) on the block? d) How much work is done by the block (in Joules) on the spring? e) How much work is done by the applied pull on the block? f) How much work is done by friction? Jo
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- Pls help ASAPThe force shown in the figure (Figure 1) moves an object from a=0 to z = 0.75 m. Figure Force, F (N) 0.8 0.6 0.4 0.2 0 0.25 0.50 Position, x (m) 0.75▾ Part A A system of two objects has AKtot 7 J and AUnt=-3 J. = Vocals Search B N How much work is done by interaction forces? Express your answer in joules. Wint ΜΕ ΑΣΦ Submit Previous Answers Request Answer X Incorrect; Try Again; 3 attempts remaining Part B How much work is done by external forces? Express your answer in joules. Wat ΜΕ ΑΣΦ Submit Request Answer Provide Feedback msi ENTER SHIFT ? J J NO.
- A 2.11 kg cart moving along a horizontal track in the positive x direction has a changing force exerted on it. The force exerted on the cart is plotted in the graph shown. In the plot, Fmax has a value of 5.95 Newtons. Note that the friction between the cart and track is negligible. a.-Calculate the work done on the cart when it has reached a displacement of 21.3 cm along the track. b.- If the cart starts from rest, calculate how fast the cart is going when it has reached a displacement of 21.3 cm along the track.Work and Kinetic Energy- WE-1 Two forces act on a 15.0kg block that is displaced 3.00m along a frictionless surface in the --x direction as shown below. Final Position Initial Position F1=15.0N > F2=10.0N V24 3.00m frictionless a) Calculate the work done by F1. b) Calculate the work done by F2. c) Calculate the net work done on the block. d) Find the change in kinetic energy of the block. Show alpart D only needing help with, thanks !
- For a constant force, work is defined as the: Cross product between the force and the displacement. O Magnitude of the force multiplied by the distance travelled. O The squared product between the force and the distance O Scalar product between the force and the displacementForce (N) SF-2 The force required to stretch (elongate) a spring is shown in the graph to the right. 40 a) Find the spring constant K for this spring. b) The work required to stretch the- spring an infinitesimal distance dx is given by: dWk-Fdx where F-Kx. Do the integral to find an expression for the work required to stretch the spring from elongation x, to elongation x2. c) Find the work in joules to stretch the spring 5.00cm from its unloaded length. d) Find the work in joules to stretch the spring from x=5.00cm to X2=10.00cm. 35 30 25 20 15 10 0. 0 1 2 3. 4 6. 7 9 10 (cm) Spring Elongation, x Cip 45 立F please