electricity with various fruits (lemon‚ kiwi‚ tomato‚ orange‚ and grapefruit). However‚ the researcher’s focused on generating electricity using a lemon. Somehow‚ in different area Lemon have many uses thus it has also many benefits. Normally‚ lemon is as flavor pies‚ pudding‚ frosting‚ candies‚ jams‚ and marmalades. They are served with fish and some kinds of meat. Lemon juice is used in salad dressings and in tea. Lemonade is popular hot-weather drink. In the other hand‚ Lemon is also good for health.
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The Applications and Limitations of Printable Batteries A Senior Project presented to the Faculty of the Graphic Communications Department California Polytechnic State University‚ San Luis Obispo In Partial Fulfillment of the Requirements for the Bachelor of Science Degree by Matthew Delmanowski June‚ 2010 © 2010 Matthew Delmanowski Abstract This study focuses on the potential applications for printed batteries and how they could affect the printing industry. It also analyzes the main
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Lemon Battery creating a battery from a lemon is a common project in many science text books. Successfully creating one of these devices is not easy. Batteries consist of two different metals suspended in an acidic solution. Copper and Zinc work well as the metals and the citric acid content of a lemon will provide the acidic solution. Batteries like this will not be able to run a motor or energize most light bulbs. It is possible to produce a dim glow from an LED. The picture at the top
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process of electrolysis is the interchange of atoms and ions by the removal or addition of electrons from the external circuit. The desired products of electrolysis are often in a different physical state from the electrolyte and can be removed by some physical processes. For example‚ in the electrolysis of brine to produce hydrogen and chlorine‚ the products are gaseous. These gaseous products bubble from the electrolyte and are collected 2 NaCl + 2 H2O → 2 NaOH + H2 + Cl2 A liquid containing mobile
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LEMON BATTERY: A PRACTICAL ALTERNATIVE Thesis Statement: Lemon is a kind of voltaic battery that contains citric acid that could generate LED; digital clocks; calculators; small devices and among others sufficiently like ordinary batteries‚ economically. OUTLINE: I. Basic Information About Lemon Battery A. What Is Battery? B. Definition Of Lemon C. History Of Lemon D. History Of Lemon Battery E. Definition Of Lemon Battery F. Lemon Battery
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aims to find out how long a lemon (Citrus limon) can last as a lemon battery powering a digital clock. B. HYPOTHESIS The researcher assumes that one lemon would last for a day or two and that the usage of more lemons would entail a longer battery time. C. OBJECTIVES Specifically‚ it aims to: 1) come up with a quantity-longevity ratio with the use of a varied quantity of lemons in the production of a lemon battery 2) find the relationship of the number of lemons and the time it powers a digital
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Make a Battery from Potato Introduction: Batteries generate electricity through a chemical reaction between two different electrodes and one electrolyte. Use of Copper and Zinc electrodes and Sulfuric acid as electrolyte is a proven method for this process. We are wondering if we can use any other liquid as electrolyte? This gave us the idea of using a potato as electrolyte. After all a fresh potato has a lot of juice that may serve our purpose as electrolyte. Problem: Can Potato be used
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A battery‚ which is actually an electric cell‚ is a device that produces electricity from a chemical reaction. In a one cell battery‚ you would find a negative electrode; an electrolyte‚ which conducts ions; a separator‚ also an ion conductor; and a positive electrode. Batteries are made of magnesium dioxide‚ graphite‚ electrolytes‚ zinc oxide and a paper soaked in an electrolyte solution. All of this is sealed in a insulated tube for safety. http://answers.ask.com/consumer_electronics/other/what_are_batteries_made_of
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Environmental Impacts of the Battery The creation of the battery was invented in 1859 by a man named Gaston Plante. Over the years as technology advances so do they batteries adding different materials like nickel‚ zinc‚ lead‚ graphite‚ carbon and toxic acids such as acid‚ magnesium dioxide‚ and hydrochloric acid making it one of the most helpful inventions known to mankind. Throughout our everyday lives a lot of things we use require a battery. The disposable battery converts chemical energy into
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Electrical Battery Model for Use in Dynamic Electric Vehicle Simulations Ryan C. Kroeze‚ Philip T. Krein University of Illinois at Urbana-Champaign Department of Electrical and Computer Engineering 1406 W. Green St. Urbana‚ IL 61801 Tel.: 217-333-6592‚ Fax: 217-333-1162 Email: rkroeze2@uiuc.edu‚ krein@uiuc.edu Abstract - Simulation of electric vehicles‚ hybrid electric vehicles‚ and plug-in hybrid electric vehicles over driving schedules within a full dynamic hybrid and electric vehicle simulator
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