Kinematics: Real life video analysis using Logger Pro 3 Name: ___________________________ Class: 15S_________ Date: ______________ _________________________________________________________________________ In this exercise‚ we will be using the software “Logger Pro” to investigate the motion of an object in the following scenarios. 1. An object sliding down an inclined slope. 2. A ball projected at an angle (projectile motion). 3. A cupcake paper holder dropped vertically (air resistance). There
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Experiment 2: Kinematics of Human Motion Abstract: Kinematics is the branch of classical mechanics that describes the motion of bodies (objects) and systems (groups of objects) without consideration of the forces that cause the motion. There are four activities done in this experiment. Graphical analysis of human motion‚ where displacement vs time and velocity vs. time were graphed. Graphical analysis of motion where in the 10th seconds the total displacement is 18.75m‚ average velocity
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Motion and Change Motion and Change two physical displacement features that in turn make up all the physical reality. The rotational motion of electrons and nucleus generate the electrical fields that create all the elements known to man. The amount of neutrons and electrons depends on the elements structure‚ for example water is H2O. Water requires one hydrogen atom and two oxygen atoms this mixture combine creates water. Pre-Socratic philosophers attempted to explain the issues regarding issues
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Formal motion and time study‚ however‚ goes somewhat beyond the concept of work simplification and streamlining of processes. One author lists four distinct parts to the process‚ namely‚ (1)finding the most economical way of doing the job‚ (2) standardizing the methods‚ materials‚ and equipment‚ (3) determining accurately the time re- quired by a qualified person working at a normal pace to do the task‚ and (4) assisting in training the worker in the new method. The differ- ent parts may be considered
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Curvilinear Motion Projectile Motion When the player hits the “Sepak”‚ the motion of the “Sepak” is called projectile motion. The “Sepak” itself is called projectile. The “Sepak” will follow a parabolic path called trajectory especially if air resistance is negligible. Two coordinates are usually used to describe projectile motion: horizontal and vertical axes. The horizontal distance traveled by the projectile is called the range. While the vertical distance‚ that is‚ the distance from where
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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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DeVry University Keller Graduate School of Management Research in Motion (RIM) By Gbolade O. Soneyin gsoneyin@my.keller.edu (770) 598-5006 NETW-583-18552 Strategic Management of Technology Professor John Lambrou Friday‚ January 24‚ 2015 Abstract BlackBerry Limited‚ formerly known as Research in Motion (RIM)‚ was a key player in the smartphone market. Created by two friends in 1984‚ it grew to become one of the leading manufacturers of applications and hardware for the mobile phone industry
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Motion NCERT Chapter Questions and Answers and other Q & A Q1: An object has moved through a distance. Can it have zero displacement? If yes‚ support your answer with an example. Answer: Yes an object can have zero displacement even though it has moved through a distance. It happens when the object moves back to its original position i.e. final position coincides with the starting position. Example: Suppose an object travels from O to C and then comes back to original position O. Total
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Table Of Contents PHS 100-552 Lab Part I: Scenario H Graph……………………………………………… 2 Scenario H Regions and Force Diagrams…………………………….3 Region and Force Diagram Information……………………………...4 Part II: Graph 6 ………………………………………………………….5 Step-By-Step Instruction………………………………………………..6 Regions and Force Diagrams……………………………………………7 Region Information……………………………………………………….8 Newton’s Laws…………………………………………………………… 9 Self-Assessment…………………………………………………..……..10 Scenario H You are stopped
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follows a path determined by the effects of gravitational acceleration and air resistance. Projectile motion is the act of projecting an object into the air at an angle when a curved path is an object follows when thrown or propelled near the surface of the earth.For example: a thrown football‚ an object dropped from an airplane‚ or a bullet shot from a gun.Projectile motion may only be used to solve mechanics problems if the acceleration is constant.The path followed by a projectile is
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