B.Tech. (Computer Science and Engineering) S E M E S T E R C O U R S E FIRST CHM101 PHY101 PHY102 MTH101 HSS-I-1/ ENG112N ESC101 PE101 SECOND TA101 PHY103 MTH102 ESC102 CS100 PE102 THIRD MTH203 CHM201 CS220 ESO-1 ESO211 FOURTH HSS-I-2 TA201 CS201 CS355 OE-1 FIFTH CS330 CS340 ONE OUT OF CS350‚ CS425‚ CS455 SIXTH CS335 CS345 ONE OUT OF CS315‚ CS365‚ CS422 SEVENTH CS498 EIGHTH CS499 In addition to above‚ the student must complete
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CH 110 Pre-Lab revised Spring 2015 HESS’ LAW AND THE FIRST LAW OF THERMODYNAMICS 1. (a) IN YOUR OWN WORDS‚ explain how Hess’ Law (of constant heat summation) applies to the 3 chemical reactions that will be studied in this experiment (b) Does the temperature decrease or increase for an exothermic reaction? (c) Is energy released or absorbed for an exothermic reaction? (d) What is the sign (positive or negative) for the ΔH of an exothermic reaction ?
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gas and carbon dioxide‚ which is classified as a linear triatomic gas. After these experimental heat capacities ratio were calculated they were then compared with theoretical values. Introduction: Heat capacity is a very important concept in thermodynamics. It is directly used to calculate the entropies and enthalpies of a system. Kirchhoff ‘s law is used to find the change in heat of a reaction with respect to temperature if the heat capacities are known‚ and the entropies of substance can be
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ABSTRACT This experiment was carried out to determine the relationship between the pressure and the temperature of saturated steam in equilibrium. Besides that this experiment was also done to demonstrate the vapor pressure curve. The marcet Boiler was used for this experiment. When the pressure increases‚ the temperature also increases. Therefore‚ the relationship of pressure and temperature is directly proportional. The derived formulae and the data were used to calculate the slope. The dT/dP
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ABSTRACT This laboratory focused on the thermodynamic processes involved when two incompressible substances are mixed together. 12 experiments were performed‚ 10 involving the combination of a measured amount of hot and cold water and 2 involving the combination of ice and liquid water‚ the majority of these experiments were performed three times. The average variance in final temperature for each experiment was less than 10 percent providing proof of repeatability. Equipment used during the
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OBJECTIVE: 1. To demonstrate the isentropic expansion process. INTRODUCTION: In thermodynamics‚ an isentropic process is one in which for purposes of engineering analysis and calculation‚ one may assume that the process takes place from initiation to completion without an increase or decrease in the entropy of the system .If a compression or expansion of a gas takes place with no flow of heat energy either into or out of the gas - the process is said to be isentropic or adiabatic. The isentropic
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MECHANICAL ENGINEERING 449 SENIOR LAB Test of a Heat Pump Submitted Submitted by: Submitted to: Executive Summary: The purpose of this experiment was to determine the performance values of a Hylton Air and Water Heat Pump System. The system uses refrigerant 134a and water as the working fluids. The power input of the system was measured. The rate of heat output and the coefficient of performance are
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and Growth of Plants‚ Morphology of Plants‚ Reproduction‚ Ecology and Environment and Biology and Human Welfare. Chemistry Structure of atom‚ Chemical Bond‚ Nuclear Chemistry‚ General Organic Chemistry‚ Ionic Equilibrium‚ Thermo chemistry & Thermodynamics‚ Electrochemistry‚ Biomolecules‚ Surface Chemistry: Colloids & Catalysts‚ Transition metals and f-block Elements‚ Ether‚ Aldehydes‚ Ketones acid &
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Cited: Dunn‚ D. (2010). Applied Thermodyanamics Tutorial 4. Retrieved March 24‚ 2012‚ from A Freestudy website: http://www.freestudy.co.uk/thermodynamics/t4201.pdf Kurzuke‚ J. (n.d.). About: Achieving maximum thermal efficiency with the simple gas turbine. Retrieved March 18‚ 2012‚ from A MTU website: http://www.mtu.de/en/technologies/engineering_news/development/Kurzke_Achieving_maxi mum_thermal_efficiency_en
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THERMODYNAMICS Page 1 of 2 TD202 A four-stroke‚ single-cylinder diesel engine for use with TecQuipment’s Small Engine Test Set (TD200) Four-Stroke Diesel Engine • For safe and effective studies and demonstrations of a four-stroke‚ single-cylinder diesel engine • For use with TecQuipment’s Small Engine Test Set (TD200) • High-quality yet cost-effective engine specially modified for educational use • Wide range of investigations possible • Quickly and accurately mounts on the test bed •
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