TITLE: Trajectory of a Projectiles PROBLEM STATEMENT: A spherical ball was projected from a fixed point ‚O‚ with a speed ‚u‚ angels of elevation : 0‚ 10‚ 20‚ 30‚ 40‚ 50‚ 60‚ 70‚ 80‚ 90 to the horizontal ground surface. Find the value of maximum height travelled by the ball for which the horizontal range‚ R‚ greatest for the same value of u. AIM: To investigate: 1)Range of projected ball. 2)Time of flight for corresponding angel of projection METHODOLOGY: APPARATUS
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example of projectile motion. Examples of projectile motion include a basketball thrown toward a hoop‚ a car driven off a cliff by a stunt person‚ and a marble launched from the CPO marble launcher. Toss a ball some distance and you can imagine in your mind the arc it follows‚ first rising then falling to the ground. Projectile motion is also called two-dimensional motion because it depends on two components: vertical and horizontal. The range is the horizontal distance that the projectile travels
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AN INVESTIGATION OF PROJECTILE MOTION Designing a Projectile Launcher: An Investigation Of Projectile Motion Mark Clubine KitchenerWaterloo Collegiate Institute and Vocational School 1 AN INVESTIGATION OF PROJECTILE MOTION 2 Introduction Projectile motion is a form of motion where an object (called a projectile) is thrown near the earth’s surface‚ following a parabolic path being influenced only by gravity (Science Clarified
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By Rex Whiticker Projectile Motion Abstract: The Project motion of a catapult being fired is varied by a range of factors that affect the path of the projectile. In this experiment‚ the angle of trajectory‚ mass of the projectile and change in initial velocity of the launch‚ were all factors considered in the end result to investigate the properties of projectile motion. The purpose of the experiment was to conduct a first-hand investigation to design and analysis how angle‚ weight and power affect
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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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Projectile Motion The purpose of this lab is to study the properties of projectile motion. From the motion of a steel ball projected horizontally‚ the initial velocity of the ball can be determined from the measured range. For a given initial velocity‚ the projectile range will be measured for various initial angles‚ and also calculated by applying the theory for motion with constant acceleration. For further background information‚ refer to the sections in your textbook on projectile motion and
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Investigating Projectile Motion Introduction Projectile motion is a type of motion that consists of horizontal and vertical motions which are independent from each other‚ known as vector components. For an object to be considered a projectile‚ it must not be self-propelled. Projectiles move horizontally at a constant velocity. However‚ they undergo uniform acceleration in the vertical direction‚ which is caused by gravity. An important aspect of projectile motion is that the time it takes
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Physics 3 . Projectile Motion Objectives: Students will measure the maximum height H and the range R of a projectile motion. They will study the effect of the shooting angle on H and R. Material used: 4 rulers‚ track‚ metallic ball‚ landing track‚ A4 white paper‚ red carbon paper‚ timer + supply‚ gun + protractor. Theory: A projectile is an object upon which the only force acting is gravity. There are a variety of examples of projectiles: an object dropped from rest is a projectile (provided
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Angle of Incidence vs. Angle of Reflection October 23‚ 2011 by alison12 · No Comments · Uncategorized Angle of Incidence vs. Angle of Reflection Background Information: Reflection is the change of direction of light. The angle a light ray makes is the same after reflection occurs as it is before reflection occurs. Reflection is the image seen when looking into a mirror‚ still water‚ or a polished surface. The reflected image seen will be the same as the object which is being reflected. Aim:
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Name: Sharon Mohammed Candidate Number: School: Iere High School Class: Form 5s (Science) Project Title: Projectile Motion Additional Mathematics SBA: Teacher: Ms. Lia Chunilal Date: TABLE OF CONTENTS Project Title……………………………………………………………………………pg3 Aim of Project………………………………………………………………………..pg4 Problem Statement……………………………………………………………………pg5 Information about Volleyball…………………………………………………………pg9 Apparatus and Materials………………………………………………………………pg6 Method for Experiment………………………………………………………………
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