industrial Technology Boni Avenue‚ City of Mandaluyong “Motion Study and Micro-motion Study Equipment” Artiga‚ Odiboy R. Espiritu‚ Robert C. Course/Year: BSIE 3rd year Subject: Methods Engineering Day/Time: Monday/Thursday 10:30am-12:00pm Instructor: Engr. Nestor Japis Motion study involves the analysis of the basic hand‚ arm‚ and body movements of workers as they perform work. Work design involves the methods and motions used to perform a task. This design includes the workplace
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Muybridge: A History of Motion The image I chose to research was “Horse in Motion”‚ by Eadweard Muybridge. In this paper I will discuss the image in its entirety‚ give some background information that is important to understanding the image and why it was created‚ use the information I have been given to interpret the image‚ and then make a final evaluation of the image. First I will discuss the image in order to provide you‚ the reader with a clear visual
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[pic] Laboratory 1 Simple Pendulum Motion By Ryan Williams Foundation Degree Mechanical Engineering Introduction In Mechanics and Physics‚ simple harmonic motion (SHM) is a periodic motion that is neither driven on damped by external forces. An object in simple harmonic motion experiences a net force which relates to Hooke’s law. Hooke’s law states “Force is directly proportional to the displacement from the equilibrium position and acts
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How do Attitudes predict Behaviour? BMA252 This piece will be looking at the ability of attitudes held by potential consumers to help predict consumer behaviour. How well can our thoughts and feelings‚ our attitudes help predict what our behaviour is going to be towards something‚ a company‚ brand or even and end product. Then after discussing the level to which our attitudes can help‚ we will then look at the ways in which marketers have used attitude change strategies in an attempt to also change
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“PRINCIPLES OF MOTION ECONOMY” These 22 rules are principles of motion economy are profitably applied to many kinds of work. Although not all are applicable to every operation‚ they do form a basis or a code for improving the efficiency and reducing fatigue in manual work. USE OF THE HUMAN BODY 1. The two hands should begin as well as complete their motions at the same time. 2. The two hands should not be idle at the same time‚ except during rest periods. 3. Motions of the arms should be
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Circular Motion and Gravitation Circular motion is everywhere‚ from atoms to galaxies‚ from flagella to Ferris wheels. Two terms are frequently used to describe such motion. In general‚ we say that an object rotates when the axis of rotation lies within the body‚ and that it revolves when the axis is outside it. Thus‚ the Earth rotates on its axis and revolves about the Sun. When a body rotates on its axis‚ all the particles of the body revolve – that is‚ they move in circular paths about
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Motion sickness Overview: The motion sickness is a deeper malaise - whose symptoms are nausea‚ vomiting‚ fatigue - due to non-uniform motion caused from traveling in a car‚ a ship‚ a train or a plane. Causes: You get motion sickness when one piece of your offset detecting framework (your internal ear camera.gif‚ eyes‚ and tactile nerves) detects that your body is moving‚ yet alternate parts don’t. Case in point‚ in the event that you are in the lodge of a moving ship‚ your internal ear may sense
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Shanise Hawes 04/04/2012 Simple Harmonic Motion Lab Introduction: In this two part lab we sought out to demonstrate simple harmonic motion by observing the behavior of a spring. For the first part we needed to observe the motion or oscillation of a spring in order to find k‚ the spring constant; which is commonly described as how stiff the spring is. Using the equation Fs=-kx or‚ Fs=mg=kx; where Fs is the force of the spring‚ mg represents mass times gravity‚ and kx is the spring constant
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Section: IV- Perseverance Teacher: Mrs. Pacita J. Yapsangco “Magnetic Field of a Coil” Experiment 2.5 I. Objectives: To produce a strong magnetic field just by looping the wire into coils II. Materials: 6 V or 9 V batteries 50 cm of bare 12- gauge copper wire Stiff cardboard and scissors Wooden dowel (about 15 cm long x 4 cm diameter) Iron filings 2 plotting compasses Connecting wires with alligator clips III. Data/Observations/Results:
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Serratus Anterior 1. ABDUCTION of Shoulder Girdle Joint 2. UPWARD ROTATION of Shoulder Girdle Joint Pectoralis Minor 1. ABDUCTION of Shoulder Girdle Joint Pectoralis Major 1. FLEXION of Shoulder Joint 2. HORIZONTAL FLEXION of Shoulder Joint 3. MEDIAL (INTERNAL) ROTATION of Shoulder Joint Rhomboid Minor 1. ADDUCTION of Shoulder Girdle Joint 2. DOWNWARD ROTATION of Shoulder Girdle Joint Rhomboid Major 1. ADDUCTION of Shoulder Girdle Joint 2. DOWNWARD ROTATION of Shoulder Girdle
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