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    solid mechanics

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    223 Solid Mechanics L51 Spring 2013 Term Project Group no. (6) Course Instructor: Dr. Mohammed Al-Qaradawi T.A: Eng. Salim Mohandes Group members: Amal Bsaisu 201002072 Nada Mamdouh 201105374 Nazha Ghadban 201104186 Ola Al-Masri 201103017 Samar Nasr 201000137 Due Date: 3-6-2013 Abstract: In this project we were asked to select an object (L shaped)‚ and apply the outcomes of Solid Mechanics course on it

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    Fluid Mechanics

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    1. Using diagrams and/or graphs‚ explain the following terms: a. Pressure Head pressure head [′presh·ər ‚hed] (fluid mechanics) Also known as head. The height of a column of fluid necessary to develop a specific pressure. The pressure of water at a given point in a pipe arising from the pressure in it. b. Total Discharge Head Total discharge head refers to the actual physical difference in height between the liquid level in the pit and the highest point of the discharge pipe or water level in

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    Fluid Mechanics

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    Fluid Mechanics 2nd Year Mechanical and Building Services Gerard Nagle Room 387 gerard.nagle@dit.ie Phone Number: 01 402 2904 Office Hours: Wednesday’s‚ 2.00pm to 5.00pm Fluids In every day life‚ we recognise three states of matter‚ Solid‚ Liquids and Gas. Although different in many respects‚ liquids and gases have a common characteristic in which they differ from solids; they are fluids‚ lacking the ability of solids to offer permanent resistance to a deforming force. Fluids flow under the

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    Mechanics of Basketball

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    Tino Estose WA #4 16 April 2013 Basketball (Mechanics of the game‚ College‚ and Professional) Social Media (Twitter and Facebook)‚ Television‚ Basketball Video Games Factors about the medium | Factors about the message | Factors about the audience | -The most prominent characteristic of at least two of these particular mediums (Twitter and Sports Television) is the delivery of information. These two genres are specifically instant in terms of delivering information or whatever message

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    Quantum Mechanics

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    Quantum Mechanics ~Three physicists were instrumental: Heisenberg‚ De Broglie‚ and Schrodinger ~Their approach stemmed from De Broglie’s matter wave concept known as "Wave Mechanics" or "Quantum Mechanics" ~ Bohr’s model was inefficient for atoms other than hydrogen or poly-electronic atoms ~ This new approach to a model of the atom focused on the concept of wave functions ~ Since electrons are particles and therefore have wave properties ~ Schrodinger viewed the electron as a standing wave

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    Fluids Mechanics

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    FLUID MECHANICS Fluids mechanics is a branch of mechanics that is concerned with properties of gases and liquids. Mechanics is important as all physical activities involves fluid environments‚ be it air‚ water or a combination of both. The type of fluid environment we experience impacts on performance. Flotation The ability to maintain a stationary on the surface of the water- varies from he on person to another. Our body floats on water when forces created by its weight are matched equally

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    Celestial Mechanics

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    Celestial Mechanics Orbital Maneuvers Earth‚ Moon‚ Mars‚ and Beyond Rodolfo G. Ngilangil Jr. MBA‚ BSAE Impulsive Maneuvers Impulsive maneuvers are those in which brief firings of onboard rocket motors change the magnitude and direction of the velocity vector instantaneously. The position of the spacecraft is considered to be fixed during the maneuvers. This is true for high-thrust rockets with burn times short compared with the coasting of the spacecraft. Orbital Maneuvers - 2 Hohmann

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    Mechanics of Tennis

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    Sports Mechanics Of Tennis The hitting and subsequent motion of a tennis ball in playing a forehand topspin Abstract The forehand topspin is one of the primary techniques that is utilised in modern day tennis. It has been used to enhance a player’s overall forehand skills that result in the maximising of a players groundstroke power output. This report will analyse the motions the tennis player and tennis ball undergo‚ the forces acting on the player and the ball and lastly‚ the force transformation

    Free Energy Potential energy Classical mechanics

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    Questions on Mechanics

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    vector 14.3 units in magnitude and points at an angle of 34.8º above the negative x axis. (a) Sketch this vector. (b) Find (the x-component) and (the y-component) of this vector. 5. A car is driven 215 km west and then 85 km southwest. Draw a vector diagram to represent this motion.What is the displacement of the car from the point of origin? 6. An airplane is traveling 735 km h-1 in a direction 41.5º west of north. (a) Find the components of the velocity vector in the northerly and westerly directions

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    flight mechanics

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    www.jntuworld.com R07 Code No: 07A62101 Set No. 2 III B.Tech II Semester Examinations‚December 2010 FLIGHT MECHANICS - II Aeronautical Engineering Time: 3 hours Max Marks: 80 Answer any FIVE Questions All Questions carry equal marks 1. Explain the phenomenon of releasing the elevator and its effect on longitudinal stability of an airplane. [16] 2. (a) Explain the term mechanical gearing in the case of directional stability (b) Derive the expression for the rate of change

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