Palmolive Category Personal Care – Toothpaste Sector FMCG Tagline/ Slogan Switch on the power of freshness USP Colgate Max Fresh gel is infused with cooling crystals for a whole new dimension of freshness STP Segment Personal Care – Oral Hygiene – Gel Toothpaste Target Group Men and Women Positioning Colgate Max Fresh with Cooling Crystals providing fresh breath and long lasting freshness that can be seen SWOT Analysis Strength 1. Toothpaste contains menthol‚ a mouthwash ingredient
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OBJECTIVES: 1. to investigate the heating process for solid dodecanoic acid 2. to investigate the cooling process for liquid dodecanoic acid 3. to determine and compare the melting and freezing points of dodecanoic acid SUPPLIES: Equipment ring stand buret clamp hot plate test tube (18mm * 150 mm) assembly (half full with solid dodecanoic acid with thermometer embedded) beaker (400 mL) thermometer for water bath lab apron safety goggles Chemical Reagents dodecanoic acid‚ C11H23COOH
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phase and fast cooling in the quench medium such as water‚ oil‚ salt solution‚ or air to produce microstructure of martensite. The martensite gives hard and brittle properties of steel. Usually‚ for heavy steel components‚ the hardness decreases at the core of component because the microstructure formed is ferrite and pearlite. While at the surface of the component have higher hardness. The difference of the hardness between the core and surface can be explained by Continuous Cooling Transformation
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. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 524 Optimization based on the coefficient of performance and cooling load criteria . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 525 2.1. Three-heat-source absorption refrigerator . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Free Heat transfer Heat Thermodynamics
Content pages 1. Introduction to MVAC System I. All air system i. Single Zone System ii. The reheat system iii. Variable Air Volume System iv. Dual Duct System v. Multi Zone System II. All water system i. The Fan Coil Unit ii. Water cooling tower III. Air and water system i. Induction System 2. ii. Fan-Coil System iii. Radiant Panels System iv. Two Pipe System v. Three Pipe System vi. Four pipe Systems Other Concepts in MVAC system Air Side Equipments I. II.
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Abstract Thermal analysis of a solid-liquid phase using cooling curves at various compositions is a method used to obtain the eutectic composition and temperature of naphthalene-biphenyl. The XE was 0.45 and the TE was 310.3K these are slightly different from the theoretical values which are 0.44 and 312K respectively. Results The cooling curves obtained from both groups Group A Group B The table with the mole fraction and the actual masses added. RUN | Group A | Group B | | Naphthalene
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A national laboratory of the U.S. Department of Energy Office of Energy Efficiency & Renewable Energy National Renewable Energy Laboratory Innovation for Our Energy Future A Zero Carryover Liquid-Desiccant Air Conditioner for Solar Applications Preprint A. Lowenstein AIL Research‚ Inc. Conference Paper NREL/CP-550-39798 July 2006 S. Slayzak and E. Kozubal National Renewable Energy Laboratory To be presented at ASME International Solar Energy Conference (ISEC2006) Denver‚ Colorado
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ENERGY SAVING FACT SHEET Introduction Central building cooling options include water chillers and direct-expansion (DX) A/C units. Chillers use a refrigeration cycle to cool water to 42º F to 55º F for pumping to chilled water cooling coils. Air is then blown over the chilled water cooling coils to provide cool air to the conditioned space. DX systems also use a refrigeration cycle‚ but distribute refrigerant directly to DX cooling coils – some are packaged in a single housing‚ others are split
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(PDF) • Tabor‚ H. Z.; Doron‚ B. (1990). "The Beith Ha ’Arava 5 MW(e) Solar Pond Power Plant (SPPP)--Progress Report". Solar Energy 45 (4): 247–253. doi:10.1016/0038-092X(90)90093-R. • Tiwari‚ G • Tritt‚ T.; Böttner‚ H.; Chen‚ L. (2008). "Thermoelectrics: Direct Solar Thermal Energy Conversion". MRS Bulletin 33 (4): 355–372. http://www.mrs.org/s_mrs/bin.asp?CID=12527&DID=208641. • Tzempelikos‚ Athanassios; Athienitis‚ Andreas K • Vecchia‚ A.; Formisano‚ W.; Rosselli‚ V; Ruggi‚ D. (1981). "Possibilities
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consumption for a building in terms of heating and cooling requirements. In the introduction an overview of major energy policies is given as well as a foundation for residential energy efficiency improvements and a description of the key components in other eco-cities. A baseline and two scenarios with different energy performance were created in the modeling software DesignBuilder to calculate the energy consumption for heating and cooling. It resulted in three levels of energy consumption were
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