Range formula projectile motion

    • [DOC File]Teaching Advanced Physics

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      This explains all projectile motion. You can discuss why this is the case dynamically – but this is best left until later in the study of mechanics. ... From the horizontal range, the horizontal velocity can be calculated. ... Note that the course does not require students to derive or follow the derivation of a formula for the motion which ...

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    • YEAR 12 PHYSICS LESSON 2: PROJECTILE MOTION

      Analysing projectile motion Projectile motion will be analysed using the equations of motion introduced in Year 11 – Module 1: Kinematics. However, projectile motion is two dimensional motion. – For the purpose of our study, we must break up the two–dimensional motion into two one–dimensional motions.

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    • [DOC File]Title: Projectile Motion and Quadratics

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      Projectile Motion Applet. Projectile Launcher. The projectile launcher can be made at home. Materials: 1” x 6” x 2 ft piece of wood. 10” long ½ “ PVC pipe with numbered holes drilled in it (see picture) 2 inch bolt with nut and washer. ½” dowel to serve as projectile (at least one hole drilled in it) compression spring to fit inside ...

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    • [PDF File]Projectile motion on an incline - CNX

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      formula accurately in both cases. 2.1.2 Range of ight First thing that we should note that we do not call horizontal range as the range on the incline is no more ... Let R be the range of projectile motion. The motion along x-axis is no more uniform, but decelerated. This is the major di erence with respect to normal case. x= u xT 1 2 a xT 2

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    • [PDF File]An Analysis of Projectile Motion Projectile Motion Lab Report

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      An Analysis of Projectile Motion Projectile Motion Lab Report PHY 302K: General Physics I (Mechanics/Heat/Sound) I . I n t r o d u c t i o n In the current unit, U nit 2.1 Two-Dimensional Motion , we have explored an applicable extension of 1-D motion as we learned in U nit 1.2 One-Dimensional Motion . By utilizing what

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    • [PDF File]Physics Formulas List

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      [Back to Formula Index] Projectile Motion Here are two important formulas related to projectile motion: (v = velocity of particle, v0 = initial velocity, g is acceleration due to gravity, θ is angle of projection, h is maximum height and l is the range of the projectile.) Maximum height of projectile (h) = v0 2sin2θ 2g

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    • [PDF File]What is Projectile Instructional Objectives: Motion?

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      range range Projectile Motion • When an object is thrown or launched into the air, it undergoes projectile motion. The pathway of any projectile is a parabola (excluding air resistance). Types of Projectile Motion • Horizontal – Motion of a ball rolling freely along a level surface – Horizontal velocity is ALWAYS constant • Vertical

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    • [PDF File]Laboratory 4: Projectile Motion – Prelab

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      Laboratory 4: Projectile Motion – Prelab 1 Projectile launched horizontally Various projectiles are launched horizontally off a table above a horizontal floor. a) Determine the time taken to fall and the horizontal distance from the edge of the table to where the ball lands if the table surface is 1.20m above the floor and the

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    • [DOC File]Projectile Motion - CP Physics

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      1. Derive one equation for the horizontal and vertical coordinates of the ball’s motion in this experiment. 2. Repeat the experiment, using a table that is not horizontal. 3. Derive a general formula for projectile motion with the object launched at an angle. 4. Calibrate the velocity of the ball when released from various positions along the ...

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    • [PDF File]Projectile Motion Short

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      The Projectile Motion Equations These equations tell you everything about the motion of a projectile (neglecting air resistance). If you know the conditions (y. o, v. ox, v. oy ) at t = 0 , then these equations tell you the position (x(t) , y(t)) of the projectile for all future time t > 0. Make sure you understand The Projectile Motion Equations.

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    • [DOC File]Projectile Motion Worksheet - Rod's Home

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      An object is punted at 25.0 m/s [40.0o N of E] on G’s home planet. What is the range of the object on level ground? (Use g = 18.0 m/s2) [34.2 m] An elastic loaded balloon launcher fires balloons at an angle of [38.0o N of E] from the surface of the ground.

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    • [PDF File]PROJECTILE MOTION: EQUATIONS AND GRAPHS

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      PROJECTILE MOTION: EQUATIONS AND GRAPHS 12 FEBRUARY 2013 Lesson Description In this lesson we will Learn that all projectiles fall freely under gravity and accelerate at “g” whether they are moving up or down. Use simple equations of motion to describe their motion.

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    • [DOC File]10 Projectile and Satellite Motion

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      This fact is shown by the range formula, R = (2v sin( cos()(g. Because the sine of an angle is the cosine of the complement of that angle, replacing the angle with its complement results in the same range. ... In accord with the principle of horizontal and vertical projectile motion, the time to hit the floor is independent of the ball’s ...

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    • Physics - Projectile Motion Cheat Sheet by BeeBooBopNerd ...

      projectile motion movement of an object through the air, subject only to the effects of gravity range the maximum horizontal distance a projectile travels launch angle The angle of a projec tile’s initial velocity when measured from the horizontal direction.

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    • [PDF File]EXPERIMENT 4 Projectile Motion

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      Projectile Motion PURPOSE To verify the flight range and flight time of a ball launched at an angle θ. EQUIPMENT Projectile launcher and plastic ball, one photogate, plumb bob, photogate bracket, 2m-meterstick, white paper, carbon paper, time-of-flight timing pad, interface, computer. THEORY

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    • [PDF File]Lab 1 Projectile Motion

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      dimensional motion. When air drag can be neglected, projectile motion is well described by the formulas v v gt y v t gt v v x v t y x 0 0 2 0 0 0 0 0 0 sin 2 1 sin cos cos where the x direction refers to the propagation of the projectile, y to the height of the projectile, and 0 to the angle from the horizontal at which the projectile was launched.

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    • [PDF File]TOPIC 1.4: PROJECTILE MOTION

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      projectile is rising and when the projectile is on its way back down with respect to velocity and position. The velocity and position of a projectile coming to rest at the same height at which it was launched will be symmetrical with respect to the maximum height midpoint. The maximum range of a projectile will be obtained when launched at an ...

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    • [DOC File]ALGEBRA - Nuffield Foundation

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      In this activity you will use the equations for motion in a straight line with constant acceleration, and the projectile model to solve problems involving the motion of projectiles. The problems include finding the time of flight and range of a projectile, as well as finding the velocity and position at a certain time during the motion.

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    • [DOC File]Projectile Motion Simulation Problems

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      2. Fire a few projectiles at different angles. No air resistance. What does ‘range’ mean? 3a. Set the initial speed to 18 m/s and shoot one projectile at a 75 degree angle. Write the range here _____. Now Predict what will happen when you change the angle to 15 degrees. Test your prediction after writing it.

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    • [PDF File]13.2 Integrals of Vector Functions; Projectile Motion ...

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      13.2 Integrals of Vector Functions; Projectile Motion 4 Note. We can easily find the the maximum height, range, and flight time of a projectile. We get: Maximum Height: ymax = (v0 sinα)2 2g Flight Time: t = 2v0 sinα g Range: R = v2 0 g sin2α. Example. Page 740, number 32.

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    • [DOC File]Projectile Motion

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      and using the quadratic formula… if y = 0, then the sqrt term reduces to Vo2(sin2 )/2g . and. R = + Vo2(sin2 )/g (Range equation) If y is too big we don’t get a solution, the projectile never gets that high. The sqrt term should be recognized. It is the expression for determining the maximum height of a projectile!

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    • [PDF File]Study Notes Lesson 05 Projectile Motion

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      c. Projection Motion: Projectile motion is a nonlinear motion that follows the curved path. The ... The falling distance can be calculated by the following formula (assume g = 10 m/s2) d € = 1 2 gt 25t ... d is the horizontal range of the projectile

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    • [PDF File]Projectile Motion manual - Boston University

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      Lab 2 Projectile Motion 4 7. Dependence of Range on Initial Velocity vo (θ fixed): a. Change the initial velocity of the ball by adjusting the knob on the back of the gun. Repeat steps 2 through 5 with the gun in the horizontal position to obtain information for calculating vo. Then change the angle of launch to one of the angles used in Part ...

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    • [PDF File]Projectile motion under the action of air resistance ...

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      Exercise 3: Projectile motion under the action of air resistance - Part 1 Consider now a spherical object launched with a velocity V forming an angle theta with the horizontal ground. In the absence of air resistance, the trajectory followed by this projectile is known to be a parabola.

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    • [PDF File]3 Projectile Motion - Simon Fraser University

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      Projectile Motion and Conservation of Energy Caution: ... short range. Don’t use the second or third (medium and long range) settings. Now launch the ball by pulling up on the string. Figure 1: Horizontal launch position 90 80 70 60 50 40 30 20 100 30 40 I CR 25 CA! R E TY S N IN . TPUSH ON H ... (symbolic formula) t = ...

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    • [PDF File]Lecture 17 - University of Oklahoma

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      Projectile Motion Two comments on the range formula Distance = (x x0) = v2 0 sin(2 ) g Maximum range when = 45 d d v2 0 sin(2 ) g = 2v2 0 cos(2 ) g = 0 ) = 45 Since sin(180 ˚) = sin˚ ) sin[2(90 )] = sin(2 ) therefore the range is same for and 90 Physics 2514 Œ p. 4/14

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    • [DOC File]Horizontal Projectile Lab - Georgetown ISD

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      From this, you can calculate the distance from the table (the range, R) that the projectile will land. It is easy to record the location where the projectile lands on the floor by placing a piece of carbon paper over a piece of scrap paper taped to the floor. The projectile will leave a mark on the paper where it hits.

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    • [PDF File]PROJECTILE MOTION - IU

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      “Range” is how far a projectile lands from the takeoff point Range = vX ⋅ time in the air Formula for vertical location of a projectile at any time t: SY = S0Y + v0Y ⋅ t – 1/2 ⋅ 9.81 ⋅ t 2 where: S0Y is the initial vertical location and v0Y is the initial vertical velocity

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    • [DOC File]Phys 21 J4 Projectiles - Santa Monica College

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      Observations: Max height = Range = Percent errors: Max height: Range: Comments: 4) With the launcher again placed on the floor determine the range of the projectile for the following angles (above the horizontal): 15(, 25(, 35(, 45(, 55(, 65(, 75(. For which of these angles does it travel the farthest?

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    • [PDF File]ABRHS PHYSICS Projectile off a Cliff

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      Projectile off a Cliff Side 1 The most fun derivation is when a projectile is fired off a cliff of height H and velocity v at angle θ. What is the angle that will give the maximum range? H R v The x and y coordinates of the projectile, with an initial height of H, and initial velocity of v @ θ are € x=(vcosθ)t y=− 1 2 gt2+(vsinθ)t+H

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    • [DOC File]CP Worksheet 106- Free Fall-Part 1 - Norwell High School

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      It is fired parallel to the ground at a velocity of 300 m/sec and hits the ground 3 seconds later. What is the range of the projectile? [Show the formula used] A frozen cucumber is thrown off of a 200 m building parallel to the ground at a velocity of 30 m/sec. How much time will it take to hit the ground? [Show the formula …

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    • [DOCX File]d2n0lz049icia2.cloudfront.net

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      The horizontal range, x, for a projectile can be found using the following equation: x = v x t (1) where v x is the horizontal velocity (= the initial horizontal velocity) and t is the time of flight.

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    • [DOC File]Virtual Lab: Projectile

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      Using the angle and the initial speed from part III, along with the initial height of the projectile, calculate the horizontal range of the projectile from the base of the column. Find the percent discrepancy of the horizontal range between your calculated value and the simulation value from 16 using the simulation value as the base. Virtual Lab 1

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    • [DOC File]Guides - 129.252.37.64

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      projectile motion. OBJECTIVE. To determine the initial velocity of a projectile by a measurement of its range and compare it to the velocity measured by timing the ball crossing a known distance. The dependence of the range on the firing angle is explored. EQUIPMENT. Caliper, ballistic pendulum, angle apparatus, clamp, timer w/ gate, carbon paper.

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