Question: Opera File Edit View History Bookmarks Developer Window Help G Q Sun Jun 12 4:55 PM DO. M Mathway | Physics Problem Solv Courses oPhysics

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Opera File Edit View History Bookmarks Developer Window Help G Q Sun Jun 12 4:55 PM DO. M Mathway | Physics Problem Solv Courses oPhysics + C 8: ophysics.com/e2.html Momentum & Energy: Elastic and Inelastic Collisions Animation Speed C Run slower faster V Pause Elasticity (enter a number between 0 and 1) 0.5 Reset inelastic Vred Vblue VCOM Initial KE red = 90 J V Show Energy & Momentum Values Initial KE blue = 96 J Initial p red = 30 kgm/s Initial p blue = -24 kgm/s Velocity of red box = 6 m/s Velocity of blue box = -8 m/s COM Pred Pblue (+) Positive Direction Show Center of Mass Initial velocity of red box (m/s) =6 Initial velocity of blue box (m/s) =-8 Relative velocity initial = 14 (towards) Mass of red box (kg) = 5 Show Relative Velocity Mass of blue box (kg) =3 Description This is a simulation of a collision in one dimension between two masses initially sliding toward each other on a frictionless surface. Explore conservation of energy and momentum, as well as elasticity and relative velocity. Adjust the initial velocities, masses of the boxes, and elasticity with the sliders. Use the buttons to run, pause, 12Opera File Edit View History Bookmarks Developer Window G Q Sun Jun 12 4:56 PM . . . M Mathway | Physics Problem Sol | |Courses oPhysics + C 88 ophysics.com/e2.html Momentum & Energy: Elastic and Inelastic Collisions Animation Speed Run slower faster V Pause Elasticity (enter a number between 0 and 1) 0.5 Reset inelastic Vred V blue VCOM Initial KE red = 90 J V Show Energy & Momentum Values Initial KE blue = 96 J Initial p red = 30 kgm/s Initial p blue = -24 kgm/s Velocity of red box = -1.875 m/s Velocity of blue box = 5.125 m/s p Final p red = -9.375 kgm/s Final p blue = 15.375 kgm/s Final KE red = 8.789 J Final KE blue = 39.398 J COM Pred blue Ep Kinetic energy converted to other forms during the collision = 137.813 J (+) Positive Direction Show Center of Mass Initial velocity of red box (m/s) =6 Initial velocity of blue box (m/s) =-8 Relative velocity initial = 14 (towards) Relative velocity final = 7 (away) Mass of red box (kg) =5 Show Relative Velocity Mass of blue box (kg) = 3 Description This is a simulation of a collision in one dimension between two masses initially sliding toward each other on a frictionless surface. Explore conservation of energy and momentum, as well as elasticity and relative velocity. Adjust the initial velocities, masses of the boxes, and elasticity with the sliders. Use the buttons to run, pause, " 40 12Preview File Edit View Tools Window Help G Q Sun Jun 12 7:02 PM physic . . Mathway | Physics Problem Sol Blackboard Learn oPhysics *Course Hero + .. . EV IMG_8662.HEIC Q Q > > Q ero.com/qa/wait/41893409/ Care3600 Which one of the following is characteristic of an inelastic collision? A) Total mass is not conserved. k help O B) Total energy is not conserved C) Linear momentum is not conserved. D) Kinetic energy is not conserved. a verified expert tutor 24/7 E) The change in momentum is less than the total impulse. Ask a question Connect with Tutor works on d explanation in as few as 30 minutes Learn more an expert your question Use Video Lab Simulation to complete part 2, Inelastic Collision. Set values of the mass and the initial velocity of the Red and Blue boxes as it entered in the table. Set "elasticity" equal 0.5. Part 2. Inelastic Collision p= my 30 kam/s + (- 24 kym/s) = 6 kym/S Run INital KE Box Mass, Velocity before Momentum Total Total KE Pause Elasticity ( enter a number between 0 and 1)(0.5 kg collision, m/s before collision, momentum before

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