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- 1) c) A block on a frictionless surface is connected to a 10N/m spring. A velocity vs. time graph is given below. Sketch position vs. time and acceleration vs. time graphs with appropriate details. Determine the maximum displacement and maximum acceleration using forces and/or energy principles (i.e. not calculus). Include appropriate diagrams and/or bar charts for determining these quantities. Determine the equations that correspond to each of the graphs including numerical values where appropriate. Determine the mass of the block. Show your work. Position: Velocity (cm/s) vs. time (s): Velocity vs. time (cm/s) na 2.5 1.5 9.5 -0.5 -1.5 V= Acceleration:What is elasctic moduli and Young's Modulus?A spring with a spring constant of k=157N/m is initially compressed by a block a distance d=0.21m. The block is on horizontal surface with coefficient of kinetic friction yk static friction ys and has a mass of m=6kg B)Assuming the block is released from the initial position and begins to move to the right input an expression for the sum of the force in the x- direction in the configuration.
- Can you help me with this problem, can you do this step by step so I can understand it better and not skip any steps and can you label them19.) A tetherboll iš connectool to the top of pole uith Ond swings that is 2.58 m long around the pole at an omple of om ongle o = 33.4 degrees between the pole and He reps (alculate the but only ented in the nomori cal valve , do not onter geced specd of He tetter ball in m/3 units.What would be the final answer for B, I am confused on what they are asking for?