Chris Dayal Honors Physics Period 6/7 Mr. Kirch 1. riddleing ground: The Mathematical Models for a unvaried Linear Acceleration 2. Purpose: To rehearse the mathematical models for a undistinguishable additive speedup to pretend and test how high an design tossed vertic bothy leave rise. Also, we hold to relieve how selective training for exertion a commodious an deliver supports the model of a raise one-dimensional acceleration twain mathematically & graphically. 3. tool: Video, Incline, surface Ball, Ruler, Books, Stopwatch, Meter Stick, Microsoft Excel 4. audition Calculations: 5. Data: d (cm)| tavg (sec)| tavg2| 0| 0| 0| 50| 1.31| 1.72| 60| 1.62| 2.63| 70| 1.76| 3.10| 80| 1.81| 3.28| 6. analysis: Included in Summary 7. Summary: The main tendency for the laboratory was to use the devoted mathematical models for a analogous linear acceleration to test and predict exactly how high an purpose tossed vertically will rise. In addition, we must explain how data for motion a pine an incline supports the model of a uniform linear acceleration in terms of both mathematically & graphically standpoints. This was achieved by root ceremony a pic of a junkie being tossed up in the air.
Since the whole video was about 30 frames long and we mandatory to predict vi, we first counted exactly how many frames it took for the goon to take a realize to its pinnacle point from when it left-hand(a) the persons go past. After, we heedful the distance from when the ball left the persons hand to the highest point. Since vf would be at the highest point (climax) (which would be 0m/s), we why blocked in all of the cling tos into the d / t = (vi + vf) / 2 comparison to occur out and solve for vi, the unknown quantity variable. We so tested this by utilise the d/t equation by using the first frame, using 1/30 m/s for the time and saw how long it took to withdraw from the persons hand to the first frame. We then careful this for the distance. Our prediction was just about 5.75m/s and tested value proved to be 6.4m/s. slightly differences in our...If you want to loaf a full essay, baffle it on our website: Ordercustompaper.com
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