A copper block of mass my is launched into the air with a speed v and an angle A As shown in the figure below, an applied force Facts paralel to the incline to push their pair of blocks until my is in the air. The mass of the other block is m, and the height at which my is launched into the air ish Use the following values m, - 400 kg my - 2000 kg. A- 25.000 degrees. v + 7.500 m/s, h + 1.500m, p, -0.5500 and a-0.3000 Drawa FBD of the block m, auming the spled foce poting up the indine. N The blocks are pushed by the applied force F for 1.650 s before my is launched. I the blocks start from rest, what is the magritude of their aceleration while being pushed? the time starts when the blocks start moving oWhatis the magritude of the applied force F needed to lunch m; at a speed of v, in 1.650 s when the blocks start from rest? (Assume that the magnitude of Fis large enough to start the blocks moving from rest) a What is the velocity of my at its peak height after being launched? lel How far from the edge the incline does my land on the ground? (What is the horizontal distance

College Physics
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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A copper block of mass m, is launched into the air with a speed v, and an angle A. As shown in the figure below, an applied force Facts parallel to the incline
to push their pair of blocks until m, is in the air. The mass of the other block is m, and the height at which m, is launched into the air is h. Use the following
values: m, = 4.000 kg, m2 = 2.000 kg, A = 25.000 degrees, vị = 7.500 m/s, h = 1.500 m, 4, = 0.5500 and 4 = 0.3000.
(a) Draw a FBD of the block m;, assuming the applied force is pushing it up the incline.
(b) The blocks are pushed by the applied force F for 1.650 s before m, is launched. If the blocks start from rest, what is the magnitude of their acceleration
while being pushed? (the time starts when the blocks start moving)
(c) What is the magnitude of the applied force F needed to launch m, at a speed of v, in 1.650 s when the blocks start from rest? (Assume that the magnitude
of F is large enough to start the blocks moving from rest.)
(d) What is the velocity of m, at its peak height after being launched?
(e) How far from the edge the incline does m, land on the ground? (What is the horizontal distance?)
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Transcribed Image Text:Untitled document - Google Doc X:+ A docs.google.com/document/d/1FBOipbty7yLRQ9dV-z1vE1uq-IVDIE4HHfsF22MufYs/edit | Apps A Google Drive Google Docs M GMAIL M Mammoth Mountain Google Translate D Youtube f Facebook YES MOVIES CSUF GLENDALE PASADENA UCLA S SMCC Untitled document a Share File Edit View Insert Format Tools Add-ons Help Last edit was seconds ago A P I U E E / Editing 100% Normal text Arial 11 3 | 7 4 Headings you add to the document will appear here. A copper block of mass m, is launched into the air with a speed v, and an angle A. As shown in the figure below, an applied force Facts parallel to the incline to push their pair of blocks until m, is in the air. The mass of the other block is m, and the height at which m, is launched into the air is h. Use the following values: m, = 4.000 kg, m2 = 2.000 kg, A = 25.000 degrees, vị = 7.500 m/s, h = 1.500 m, 4, = 0.5500 and 4 = 0.3000. (a) Draw a FBD of the block m;, assuming the applied force is pushing it up the incline. (b) The blocks are pushed by the applied force F for 1.650 s before m, is launched. If the blocks start from rest, what is the magnitude of their acceleration while being pushed? (the time starts when the blocks start moving) (c) What is the magnitude of the applied force F needed to launch m, at a speed of v, in 1.650 s when the blocks start from rest? (Assume that the magnitude of F is large enough to start the blocks moving from rest.) (d) What is the velocity of m, at its peak height after being launched? (e) How far from the edge the incline does m, land on the ground? (What is the horizontal distance?) 12:06 PM P Type here to search Ps 3/19/2021 4 !
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