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College Term Papers - Instant Download(sponsored links) Phyllotaxis: It’s Relationship to PhysicsThe following paper will look at phyllotaxis and its relationship to physics. Specifically, the next several pages will look at what phyllotaxis is, what it involves, and some of the important advances that have been made in recent years which aid ... -- 1,500 words; MLA The Physics Of Golf A look at the physics of golf. -- 1,750 words; MLA Pas De Deux - Physics Questions This paper addresses several physics questions. -- 750 words; 1956 Noble Prize Winners in Physics This paper discusses the work of the 1956 Nobel prize winners in physics: William Bradford Shockley, John Bardeen and Walter Houser Brattain. -- 2,140 words; APA Karna And The Physics Of Power Discusses the story of Karna and its relation to the "physics of power" as presented in Arhundhati Roy's "The God of Small Things". -- 900 words; |
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PHYSICS PAPERQuestion: How does the make and model of a shoe influence the m of the shoe? The weight of the four Shoes Ryan's 4 newtons Will's 4.5 newtons Bassel's 4 newtons Behdad's 5 newtons The pulling force of each force Ryan's 140 grams Will's 240 grams Bassel's 230 grams Behdad's 400 grams The Calculations of weight and pulling force Equation m= F pulling F weight Ryan's shoe= 140 grams = .140 newtons times gravity of 10 = 1.4 newtons= .35 newtons 4 newtons Other Shoe Answers Will's shoe =.53 newtons Bassel's shoe = .575 newtons Behdad's shoe = .8 newtons The main errors of our experiment ? Not having an exact point of when it was moving ? We didn't have small weights so we could become more accurate ? The surface we did the experiment was too smooth ? On the weight of the shoe the scale doesn't start at exactly 0 and I rounded up and down. What I would do differently if I did this experiment again ? I would come up with an amount of movement for when it was at its pulling force. ? I would get smaller amount of weight to make it more accurate. ? I would find the pulling force on different surfaces and find the average amount of pulling force. |
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