height (h) carefully‚ in which is vertical to the floor. Time the marble several times as you launch it from the ramp; make sure to catch the marble as it leaves the table. Use the data you collected to calculate Vx. Now use Vx and ∆y to get the range of the marble‚ in which is ∆x. Once done calculating‚ place a cup at a spot in which you think the ball will land. Launch the marble three times and record your results. To obtain a new velocity for the marble‚ change the angle of your ramp (lower
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The Physics and Components of Medieval Projectile Launchers Before the age of cannons‚ gunpowder‚ and modern warfare‚ projectiles were fired using machines generally identified as catapults. Civilizations in the middle ages were the ones to use the catapult the most‚ utilizing basic laws of physics to hit their target. We will look at different designs in catapults and how they function. Even today‚ launching projectiles is a lesson in physics. Catapults are no exception. From the great minds of
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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
Free Force Classical mechanics Newton's laws of motion
Safety Range Safety Headquarters Department of the Army Washington‚ DC 4 August 2009 UNCLASSIFIED SUMMARY of CHANGE DA PAM 385–63 Range Safety This administrative revision‚ dated 4 August 2009-o Clarifies procedures for application‚ processing‚ and approval for a Certificate of Risk Acceptance (para 3-9c(6)). Makes administrative changes (throughout). o Headquarters Department of the Army Washington‚ DC 4 August 2009 *Department of the Army Pamphlet 385–63 Safety Range Safety
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Megan McIlvoy Grade: Instructor: JPS Physics I Laboratory Worksheet Lab 4: Projectile Motion Objectives: Using a projectile gun on an incline plane‚ calculate the velocity of the steel ball at ten different distances‚ then find the average velocity. In order to find the velocity of the steel ball two different equations are needed. In order to find the velocity of the steel ball fired from the projectile gun on an inclined plane‚ the first equation must be manipulated and substituted
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A projectile is an object upon which the only force acting is gravity. Many projectiles not only undergo a vertical motion‚ but also undergo a horizontal motion. That is‚ as they move upward or downward they are also moving horizontally. There are the two components of the projectile’s motion - horizontal and vertical motion. And since perpendicular components of motion are independent of each other‚ these two components of motion can be discussed separately. The goal of this part of the lesson is
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Title Projectile Motion Abstract A projectile was fired from atop an elevation and an angle. The initial velocity for each firing was likely to be the same. The distance traveled in the horizontal direction was measured for multiple firings of each trial‚ and the values were averaged. When the initial velocity for each of these averages was calculated it was proved that the initial velocity was relatively constant. These measurements had many possible sources of error including air resistance and
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Kyle Brooks 11/13/12 Angry Birds Projectile Motion Lab How to Perfect Distances Of Birds using Launching Angles Purpose: The Purpose of this Lab is to discover which launch angles give the birds the longest and shortest time in flight. Hypothesis: I believe that the bird will launch the farthest at the 45 degree angle because that’s exactly half of 90 degrees which will give it the maximum height in comparison to length. I also think that the bird will launch the shortest at 0 degrees
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Projectile motion is a form of motion in which an object is thrown near the earth’s surface‚ causing it to move along a curved path under the action of gravity only. An example would be a football quarterback‚ when a quarterback throws the football in the air it goes upward and then travels back downward due to gravity. Gravity is the only force of significance that acts on the object which causes a downward acceleration. For example if Cam Newton throws a football over a long
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Purpose/ Hypothesis: The purpose of the lab is to explore some of the variables that influence projectile motion using a Rubber Band Cannon and launching rubber bands and measuring its horizontal distance and angle at which the rubber bands has been launched.. Materials: Materials used for the lab were a Cardboard Box‚ a 30cm ruler‚ rubber bands‚ a measuring tape‚ tape‚ a pencil‚ a paper protractor cut out‚ and scissors. Procedure: For the lab‚ scissors were used to cut the paper protractor cutout
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