The Smart Car The Smart car was introduced in 1994 between Mercedes-Benz and the Swiss manufacturer of Swatch watches and was unveiled in 1997. The car was named for “Swatch‚ Mercedes and art.” The Smart car only measures in at 8-feet-8-inches long and is 5-feet-1-inch wide. More than 95% of the components are recyclable. The Smart car is priced in at three different versions. The Pure is at the base level and starts at $11‚590. The Passion is decked out and is most popular and starts at $13
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’ Case 10-2) 1 The Smart Car In 1991‚ Nicolas Hayek‚ chairman of Swatch‚ announced an agreement with Volkswagen to develop a battery-powered "Swatch car." At the time‚ Hayek said his goal was to build "an ecologically inoffensive‚ highquality city car for two people" that would sell for about $6‚400. The Swatchmobile concept was based on Hayek’s conviction that consumers become emotionally attached to cars just as they do to watches. Like the Swatch‚ the Swatchmobile (officially named
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How to Excel in Your Physics Course Most students realize that putting off studying until the day before the exam and then cramming at the last minute is not efficient. Some students do this anyway‚ because so far they have gotten away with it. Perhaps most of the other students you previously competed with had poor study skills. This may have allowed you to adopt poor or non-existent study habits and still keep up‚ or even get good grades if you are naturally a better student. Now that you
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Smart Car Daimler is a multinational business that is branching out in many countries worldwide. Smart Cars are mainly manufactured at a plant in France. The smart car was first introduced to the United States in 2008. Daimler’s plan is to globally expand the smart car in every country it can. The Smart Car has already been successful in places such as Europe and North America. Daimler distributed Smart Cars over the Internet using the $99 reservation program. This helped the Smart Car expand
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De’Untre’ Griggs Mr. Hooks 30 September 2014 Physics/4 The Physics Of Dance Essay Physics and dance represent remarkably complementary approaches to human body movement. Those involved with dance and science can easily find the many aspects of science incorporated into the beauty of dance. With its graceful moves‚ jumps‚ turns‚ and kicks‚ dance is a representation of physics at its best and most elegant. Two dance moves in particular come to mind when I think of physics and its effects on dance. They are the grand jeté & projectile motion
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Erica Salas Triplet USU-1360 March 20‚2012 Reliance on Fossil Fuels and consequences Our “energy crisis” has been the big talk of politics ever since the early 1970’s. In 2007‚ the United States of America Energy Information Administration researched that eighty seven percent of global energy consumption comes from fossil fuels. The worlds most reliable industries provide fuel and electricity to modern societies and have made millions. People have high consumption lifestyle revolving around
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In soccer‚ the length of the ball in air when it is kicked is the hang time. Air resistance or adding a curve to the ball will increase its hang time. Hang time can be calculated by H= 1/2 g(gravitational acceleration)times t(time) times 1/2. As the player kicks the ball with the inside of his foot he creates a curve on the ball and increases hang time due to air resistance acting on it. Kicking the ball straight will have a low hang time and just keep it low to the ground. The higher the ball is
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PHY 305/601 Classical Mechanics Assignment No. 1 1. Consider a particle of mass m constrained to move on a frictionless cylinder of radius R‚ given by the equation ρ=R in cylindrical polar coordinates (ρ‚ φ‚ z). Besides the force of constraint‚ the only force on the mass is force F=-kr directed toward the originUsing z and φ as generalized coordinates find the Lagrangian L‚ solve Lagrange’s equations and describe the motion. 2. Show that the kinetic energy of any holonomic mechanical system has
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The Heart • What does it generate? • Why is that so important? • Found in the… • Apex points at… • Base points at… • Sits atop the… • Medial to… • Anterior to the… • Posterior to the… Fibrous Pericardium • Made of… • Encloses. • Stabilizes. • Prevents... Serous Pericardium • Deep to the… • 2 layers • Parietal pericardium • Visceral pericardium • Pericardial cavity. 3 Layers of the Heart Wall • Epicardium • Myocardium • Endocardium. Heart Chambers
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Investigating Newton’s 2nd Law of Motion using an Air-track Introduction: My experiment is investigating the Newton’s 2nd law of motion by using an Air-track. The air-track can make the trolley frictionless by testing the velocity with different weights and shows that F=ma. Research question: How much acceleration does the frictionless trolley has? Aim: Use the air track to measure the acceleration of the no friction trolley by hanging with different mass of weights. Apparatus: *
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