The Hurdle Before a diver jumps off of a springboard‚ he does a sort of hop-skip step called a hurdle. After doing a few steps‚ the diver leaps up into the air with his arms raised. When he lands back down on the tip of the board‚ he swings his arms down past his legs and then up‚ leaping into the air and off of the board. The purpose of this hurdle is as follows: A diver cannot simply stand on the end of board‚ step off‚ and expect to have the power to go up or the momentum to rotate his
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Moments at Aquaria KLCC. Last two months Mr F brought me to a place which I really wanted to go. It was Aquaria located at Kuala Lumpur Conventional Centre. Mr F and I arrived there at 11.00pm and that day it was a public holiday‚ so there were many people like students‚ families with young and old‚ couples and some tourists. Before we entered‚ we purchased a ticket which cost Rm38 for adults and Rm28 for children. We were greeted by Piranhas just after the entrance. I was really excited because
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Can you imagine a life in which you never try anything new? How impossibly boring! I concur with that which Ralph Waldo Emerson once posited: "Unless you try to do something beyond what you have already mastered‚ you will never grow." It is important to try new things that one has not already mastered because growth is essential‚ the challenge encourages resilience‚ and there is enjoyment to be gained by doing so. Challenging one’s self is what teaches us to be resilient. Without challenge
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SYSTEM OF PARTICLES AND ROTATIONAL MOTION CENTRE OF MASS AND ROTATIONAL MOTION INTRODUCTION- For describing the motion of rigid bodies‚ we shall introduce the key concept of ‘centre of mass’. This concept enables us to understand how we can apply justifiably the Newton’s laws of motion‚ in essentially the same form to objects of large size including even the astronomical objects like the planets and the stars. KINDS OF MOTION OF A RIGID BODY- A rigid body may have three kinds of motion- (1) Pure
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angular velocity and its moment of inertia. Just as a moving object’s inertial mass is a measure of its resistance to linear acceleration‚ a rotating object’s moment of inertia is a measure of its resistance to angular acceleration."2 Factors which effect a rotating object’s moment of inertia are its mass and on the distribution of the objects mass about the axis of rotation. A small object with a mass concentrated very close to its axis of rotation will have a small moment of inertia and it will be
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concrete = 25‚000 N/m2 and that of steel 80‚000 N/m 2. Contd. in Page 2 Page 1 of 2 www.jntuworld.com www.jntuworld.com www.jwjobs.net R5 Code: R5 100305 5 (a) (b) 6 (a) (b) 7 (a) (b) 8 Show that the moment of inertia of a thin circular ring of mass ‘M’ and mean radius
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Basics of Fluid Mechanics Genick Bar–Meir‚ Ph. D. 2729 West Jarvis Ave Chicago‚ IL 60645-1335 email:barmeir at gmail.com Copyright © 2010‚ 2009‚ 2008‚ 2007‚ and 2006 by Genick Bar-Meir See the file copying.fdl or copyright.tex for copying conditions. Version (0.2.4 March 2‚ 2010) ‘We are like dwarfs sitting on the shoulders of giants” from The Metalogicon by John in 1159 CONTENTS Nomenclature GNU Free Documentation License . . . . . . . . . . . . . . . . 1. APPLICABILITY AND DEFINITIONS
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SAMPLE PROBLEMS: 111-SET #9 ROTATIONAL MOTION PROBLEMS: 09-1 1) A grinding wheel starts from rest and has a constant angular acceleration of 5 rad/sec2. At t = 6 seconds find the centripetal and tangential accelerations of a point 75 mm from the axis. Determine the angular speed at 6 seconds‚ and the angle the wheel has turned through. |We have a problem of constant angular acceleration. The figure & coordinate system are |[pic]
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flag. I talked to my mother and she told me when she was coming up they always said the Lord’s Prayer every day before classes started. When I started school I remember saying the Lord’s Prayer and the Pledge of Allegiance to the flag. We took a moment of silence to pray for family and friends that had passed away and also the ones that might be going through something‚ class mates that were out of school for one reason or another. My mother worked for the school as a custodian and every Monday
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of Natural Frequency 4. Free Vibration of Spring Mass System – Determination of Natural Frequency 5. Compound Pendulum – Determination of Radius of Gyration and Moment of Inertia 6. Bifilar Suspension – Determination of Radius of Gyration and Moment of Inertia 7. Trifilar Suspension – Determination of Radius of Gyration and Moment of Inertia 8. Whirling of Shaft – Determination of Critical Speed 9. Balancing of Rotating Masses 10. Determination of Gyroscopic Couple 11. Turn Table 12. Hartnell
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