roller coaster crests the first big hill‚gravity takes over. Potential energy is sometimes known as positional energy. As the roller coaster falls is has enough kinetic energy to make it through the remainder of the ride. Inertia keeps the object in motion. The other forces bring the roller coaster to a stop by friction. Since roll coasters don’t have motors they need to be pulled up by a chain up the first big hill. No engine is required because of inertia. The roller coaster won’t last forever. Two
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Minela Sljoka Notes on Physics Inertia- tendency of an object to maintain motion. Property of matter. Not newton’s first law. Matter wants to maintain motion- moving objects want to stay in motion if stopped wants to stay stopped. Mass is measure of inertia. Things have mass because they have inertia. Units: kg Symbol m in equation. Inertia is most constantly called rest mass but we call it mass because we are dealing with speeds not going to speed of light. Kinetic Energy- v^2 is proportional
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extensions including atomic and nuclear physics‚ cryogenics‚ solid-state physics‚ particle physics‚ and plasma physics. Physics (from Ancient Greek: φύσις physis "nature") is a natural science that involves the study of matter and its motion through space and time‚ along with related concepts such as energy and force. More broadly‚ it is the general analysis of nature‚ conducted in order to understand how the universe behaves. Scalars and Vectors Physics is a mathematical science. The underlying
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INVESTIGATING CIRCULAR MOTION 11/3/04 AIM To examine some of the factors affecting the motion of an object undergoing uniform circular motion‚ and then to determine the quantitative relationship between the variables of force‚ velocity and radius. APPARATUS Rubber bung Metre rule 50 gram slot masses Glass tube 50-gram mass carrier 50-gram slot masses Metre rule Stopwatch Sticky tape Metre rule String THEORY As in Jacaranda HSC Science Physics 2 p.54 In this experiment when the rubber bung
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http://www.physicsclassroom.com/mmedia/circmot/rcd.cfm What is ‘g force’ in physics? G‚ in physics‚ a symbol relating to gravity. A capital G indicates the gravitational constant‚ as explained in the article GRAVITATION. A lower-case g stands for the acceleration imparted by gravity at the earth’s surface. An acceleration of 1 g is 32. 1 feet per second per second (9.8 m/s2). Fliers and astronauts may experience accelerations many times larger than 1 g. These accelerations are usually expressed
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gives rise Joseph Henry (1830) discovered the reverse effect‚ the production of an electric potential Maxwell‚ ( c.1856‚) developed ideas mathematically in his theory of electromagnetic radiation. Birth of Modern Physics ( late 19th cent. ) most of classical physics was complete‚ Wilhelm Roentgen (1895) the discoveries of X rays radioactivity by A. H. Becquerel (1896)‚ the electron by J. J. Thomson (1897)‚ and Ernest Rutherford 1911 interpreted experimental evidence as
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350 © IWA Publishing 2013 Journal of Water Supply: Research and Technology—AQUA | 62.6 | 2013 Behaviour of cyanobacterial bloom material following coagulation and/or sedimentation Lionel Ho‚ Albane Barbero‚ Jennifer Dreyfus‚ David R. Dixon‚ Feng Qian‚ Peter J. Scales and Gayle Newcombe ABSTRACT The global increase in detection of cyanobacteria and their metabolites has prompted greater emphasis in optimizing water treatment options for their effective removal. In particular
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.Physics is the field of scince that controls the Earth‚ the Moon‚ the Sun and the Universe It is the science of matter and its motion‚ space-time and energy. Physics describes many forms of energy - such as kinetic energy‚ electrical energy‚ and mass; and the way energy can change from one form to another. Everything surrounding to us is made of matter and Physics explains matter as combinations of fundamental particles which are interacting through fundamental forces. It will not be an exaggeration
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APPENDIX A The Physics of Bungee Jumping Outcomes: 1. Analyze natural and technological systems to interpret and explain their structure. (116-7) 2. 3. 4. 5. 6. 7. 8. 9. Describe and evaluate the design of technological solutions and the way they function‚ using energy principles. (116-6) Analyze and describe examples where technological solutions were developed based on scientific understanding. (116-4) Distinguish between problems that can be solved by the application of physics-related technologies
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Christian Hernandez January 25‚ 2010 Physics Mr. Savage The motion of an airplane or helicopter through the air can be explained and distinguished by physical principals discovered over three centuries ago by Sir Isaac Newton‚ who worked in many areas of mathematics and physics. Throughout recent science history‚ three of the most important theories proven were all evaluated by Isaac Newton. He developed the theories of gravitation in 1666‚ when he was only 23 years old. Some twenty years
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