Projectile motion into physics Objective: Our purpose for this lab was to observe projectile motion and use the equations of motion to predict the objects location in different instances of time. We used a projectile launcher and a ball to observe these properties of motion. The main equation used in this lab was d=Vit+1/2at^2 where Vit will produce the distance due to constant motion and 1/2at^2 will produce distance traveled due to accelerated motion or gravity in this case. Introduction:
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Data Table 2: Temperature measurements. Water Temperature (°C) Temperature (°F) Temperature (K) Hot from tap 42c 107.6f 315 k Boiling 99 c 210.0 f 372 k Boiling for 5 minutes 100 c 212 f 373 k Cold from tap 18 c 64.4 f 291 k Ice water – 1 minute 10 c 50 f 283 k Ice water – 5 minutes 5 c 41 f 278 k Data Table 3: Mass measurements Object Estimated Mass (g) Actual Mass (g) Actual mass (kg) Pen or pencil 5g 5.1 g .0051 kg 3 Pennies 9g 8.1 g .0081 kg 1 Quarter 5g 5.6 g .0056 kg 2 Quarters‚
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applications. Object tracking has high priorities in religious places‚ market buildings‚ courts‚ train stations and airports. Various other applications include military‚ astronomy‚ road traffic regulation‚ robotics‚ medical imaging. Gesture recognition for human-machine interfaces is one of today’s hottest applications. Air traffic control is another typical application of video object tracking‚ where aircrafts are more or less continuously visible on radar‚ but in case the transponders are absent‚ the identity
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Projectile Motion PHYS111 Formal Report 2 University of Canterbury Campbell Moulder Abstract The force of gravity is said to be a constant of 9.81 ms-2 (3). This can be proved by measuring the projectile motion of a bouncy ball and plotting a ∆Vertical Velocity vs. Time graph‚ the gradient of which should equal the constant force (acceleration due to) of gravity. Our gradient value of 10.26±0.49 ms-2 is consistent with the actual value of 9.81 ms-2. Introduction A projectile is an
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The technology for Leap Motion was first developed in 2008‚ while co-founder David Holz was studying for a Ph.D. in mathematics. Following an initial angel investment‚ Holz co-founded the company in 2010 with his childhood friend Michael Buckwald. The company raised a $1.3M seed financing round in June 2011 with investments from venture capital firms Andreessen Horowitz‚ Founders Fund‚ and SOSventures‚ as well as several angel investors.[3] In May 2012‚ Leap Motion announced a $12.75M Series A funding
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historical development of the models of the universe from the time of Aristotle to the time of Newton. Aristotle: Geocentric model of the universe involved a series of 56 concentric spheres to which celestial objects were attached. The Earth was not in motion as the stars showed no measureable parallax. Each planet‚ the Sun‚ and the Moon were in their own sphere and the stars were positioned on a larger sphere surrounding all the others. Ptolemy: Geocentric model of the universe placed the Earth at
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marble are shown below. Notice that the size of the vector remains the same but the direction is constantly changing. Because the direction is changing‚ there is a ∆v and ∆v = vf - vi ‚ and since velocity is changing‚ circular motion must also be accelerated motion. vi ∆v vf -vi vf2 If the ∆t in-between initial velocity and final velocity is small‚ the direction of ∆v is nearly radial (i.e. directed along the radius). As ∆t approaches 0‚ ∆v becomes exactly radial‚ or centripetal.
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___________________________________ ) MOTION IN LIMINE TO EXCLUDE TESTIMONIAL EVIDENCE OF ALLEGED GANG AFFILIATED COMMENTS BECAUSE OF THE PREJUDICIAL EFFECT OUTWEIGHS THE PROBATIVE VALUE OF THE EVIDENCE COMES NOW the Defendant‚ William Lloyd‚ by and through counsel‚ Laura Poschen‚ and requests the Court to exclude from evidence at the trial of this matter the alleged statement “Street Vice Lords rule” as overheard by Ms. Mary Martinez. In support of this motion in limine‚ the Defendant offers the
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Running Head: MOTION AND GRAPHICAL ANALYSIS Motion and Graphical Analysis Lab 3 Qiling Yang PHY 101‚ Online Professor Gregory Stafford July 21‚ 2013 Motion and Graphical Analysis Laboratory exercise 3 covers two experiments which are intended to analyze application of laws of motion. Objectives By the end of this two-experiment laboratory‚ students ideally will know how to analyze displacement‚ velocity
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INVESTIGATING CIRCULAR MOTION 11/3/04 AIM To examine some of the factors affecting the motion of an object undergoing uniform circular motion‚ and then to determine the quantitative relationship between the variables of force‚ velocity and radius. APPARATUS Rubber bung Metre rule 50 gram slot masses Glass tube 50-gram mass carrier 50-gram slot masses Metre rule Stopwatch Sticky tape Metre rule String THEORY As in Jacaranda HSC Science Physics 2 p.54 In this experiment when the rubber bung
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