ANALYSIS On the first part of the experiment which is the determination of specific heat of metals. The obtained value of experimental specific heat of metal of aluminum and copper are 0.2152 calg-℃ and 0.0958 cal g-℃ ‚ respectively. It is a must to work faster in performing this experiment because working in an air-conditioned room greatly affects the result of the temperature. For the temperature values‚ the final temperature of mixture should not increase more than 1 ℃ compare
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vibrating around‚ the hotter the object feels. We can sidestep this molecular picture by dealing with objects as a whole‚ and treating the energy transfer as the flow of heat‚ rather than kinetic energy transfer among particles. |Specific Heat for Various Materials | |Material |Specific Heat | | |(J/kg C°) | |Water |4186 | |Aluminum |900
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Introduction- Heat is energy that is warm. Heat energy comes from different energy forms or types like electrical. Heat is also natural‚ from the sun. Heat transforms by reflecting on something and giving it warmth. The temperatures on the coloured cans will vary because they absorb different amounts of heat. According to the particle theory when an object heats up the particles spread out and move more. Aim- The aim of this experiment is to test how colour affects the amount of heat being absorbed
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1) What was meant by the term "the earths heat budget" (5) The Earth’s Heat Budget Solar Insolation - The primary source of energy to drive our global climate system (including atmospheric and‚ to a lesser extent‚ oceanic circulation) is the heat we receive from the Sun‚ termed solar insolation. The spectrum of light which comes from the Sun is shown above. The spectrum of light in the atmosphere and at the Earth’s surface is shown below. Insolation arrives at the edge of our atmosphere primarily
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Chemistry – Heats of combustion. To determine the heats of combustion of selected alkanols and to use this information to determine the heat of combustion for a longer chain alkanols. Formula ΔH=-mCΔT Heat of combustion ΔH/n = molar heat of combustion. Materials -100 degrees thermometer -glass stirring rod -aluminium beaker -electronic balance -bosshead and clamp -retort stand Method 1) Set up the apparatus as shown above. 2) Measure the weight of aluminium can 3) Use the
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“Sweet Heat” I think back and visualize the days of Bonnie and Clyde in the early 1930’s and reminisce about the first V8 powered vehicles driven during that era. That vision is what comes to mind when taking a drive with my father in his Ford street rod‚ “Sweet Heat”. “Sweet Heat” is a 1931 original steel Ford Sport Coupe that has been converted to a street rod powered by a ZZ4 350 cubic inch /400 Horsepower General Motors crate engine. The name “Sweet Heat” was derived from the hot new engine
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“Heat and Dust” is a story which moves backwards and forward in time‚ between the present (Post British Colonization-1970) and the past (During British Colonization-1923). It tells a story of two Englishwomen in India‚ the narrator and her grandmother Olivia‚ whose lives are interwoven‚ separated by fifty years. The narrator’s search to find out about Olivia brings her to the heat and dust of Satipur‚ India She discovers that Olivia was a woman smothered by the social restrictions placed upon her
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PROC5000/Anthony Vatterott/SPARTAN HEAT EXCHANGERS‚ INC/Dalton 1 SPARTAN HEAT EXCHANGERS‚ INC. Rick Coyne is the Materials Manager at Spartan‚ Inc. Until recently‚ the company has benefitted from excellence in customization and specialized research & development of design with full-service custom unit fabrication. This has historically allowed Spartan to maintain a positive rapport with clients‚ as their approach allowed for meeting the client’s specific needs. However‚ the industry trend
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remove creases. It is named for the metal of which the device is commonly made‚ and the use of it is generally called ironing. Ironing works by loosening the ties between the long chains of molecules that exist in polymer fiber materials. With the heat and the weight of the ironing plate‚ the fibers are stretched and the fabric maintains its new shape when cool. Some materials‚ such as cotton‚ require the use of water to loosen the intermolecular bonds. Many materials developed in the twentieth century
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Problelm 3.6 Given data: Thi := 250 °C Tci := 30 °C mh := 0.15 kg s mc := 0.6 kg s cph := 2000 J kg⋅ K cpc := 1000 J kg⋅ K U := 1000 W m K 2 Finding Heat Exchanger Area(A0): 2 Cc := mc⋅ cpc = 600 m ⋅ kg K⋅ s 3 Ch := mh⋅ cph = 300 m ⋅ kg K⋅ s 3 2 Tco := mh⋅ cph⋅ Thi + mc⋅ cpc⋅ Tci mh⋅ cph + mc⋅ cpc 4 = 103.333 °C Tho := Tco Q := Ch⋅ ( Thi − Tho) = 4.4 × 10 W Thi − Tco − ( Tho − Tci) Thi − Tco ln Tho − Tci Cc Ch Ch Cc ε0 := if ( Cc
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