Download Thermodynamics 1 - MEE205 Past Question PDF

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Thermodynamics 1 past question for the year 2018 examines 200-level Engineering students of FUOYE, offering MEE205 course on their knowledge of Thermodynamics, flow process, translational energy, reversible process internal energy

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Past Questions related to Thermodynamics 1

Fundamentals of Thermodynamics

Year: 2022

School: Air Force Institute of Technology

Department: Engineering

Course Code: GET206

Topics: Thermodynamics, heat, energy, Carnot cycle, entropy, heat flow, First law of thermodynamics, second law of thermodynamics, Zeroth's law

Engineering thermodynamics 2

Year: 2019

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: MEE204

Topics: Engineering thermodynamics, thermal efficiency, reversible non-flow polytrophic process, Rankine stem power plant, air standard dual-combustion cycle, superheat work, compressor work

Metallurgical thermodynamics and kinetics

Year: 2020

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: MME409

Topics: Metallurgical thermodynamics, Kirchhoff's law, heat of reaction, Hess law, chromium carbide formation, isothermal expansion, reversible expansion, Clausius-clapeyron equation, rate constant, activation energy, leaching process, Metallurgical kinetics

Thermodynamics question bank by Maduabuchi Chika

Year: 2019

School: University of Nigeria, Nsukka

Department: Engineering

Course Code: MEC261

Topics: Thermodynamics, closed systems, energy analysis, thermodynamic cycles, ideal gas, control volumes, second law of thermodynamics, first law of thermodynamics

Engineering thermodynamics 1 2008-2019

Year: 2019

School: University of Nigeria, Nsukka

Department: Engineering

Course Code: MEC261

Topics: Engineering thermodynamics, thermodynamics, Piston-cylinder assembly, heat transfer, laws of thermodynamics

Engineering thermodynamics

Year: 2020

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG209

Topics: Engineering thermodynamics, Rankine cycle kinetic energy, potential energy, internal energy, ideal gas

THERMODYNAMICS-TEST&EXAM-2019

Year: 2019

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG209

Topics: vessel, temperature, volume, steam turbine, entropy, specific volume, heat transfer, mass flow, compressor, nuzzle, thermodynamics, power, inlet, carnot cycle, rankine cycle

CHEMICAL ENGINEERING THERMODYNAMICS

Year: 2018

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: CHE304

Topics: thermodynamics, steam, compressor

Thermodynamics II

Year: 2021

School: Air Force Institute of Technology

Department: Engineering

Course Code: AED308

Topics: Thermodynamics, Carnot cycle, Refrigeration system, Brayton cycle, Gas turbine, Otto cycle, vapor compression refrigeration system

Engineering Thermodynamics Test and solution

Year: 2018

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG209

Topics: flow rate, turbine, rankine cycle, super heated

Workshop practice

Year: 2018

School: Ambrose Alli University, Ekpoma

Department: Engineering

Course Code: MEE205

Topics: Broaching, welding

Multiple phase flow in pipes

Year: 2020

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: PET517

Topics: Pipe Multiple phase flow, multiphase heat transfer, stratified flow, Taylor bubbles, slug-free flow, Taitel-Dukler flow regime models, boiling, condensation, evaporation, fluid transportation, Boiling regimes, natural convection boiling, nucleate boiling, transition boiling, film boiling, total pressure drop equation

Heat and Thermodynamics practice questions

Year: 2018

School: University of Ibadan

Department: Science and Technology

Course Code: PHY115

Topics: thermometer, ideal absorber, ideal gas, isothermal process, work, Maxwell's energy, kinetic energy, reversible adiabatic expansion, thermal efficiency, root mean square velocity, isobaric process, gas

Fluid mechanics 2013,2014&2015

Year: 2015

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG309

Topics: pressure, free surface, Reynolds number, bulk modulus, turbulent flow, steady flow, cavitation, shear, orfice, kinetic energy, potential flow, incompressibility of fluid

Books related to Thermodynamics 1

Applied Thermodynamics for engineering technologists ,5th edition

Author: TD Eastop, McConkey

School: Federal University, Oye-Ekiti

Department: Engineering

Course Code: MEE205

Topics: Thermodynamics, steady-flow equation, working fluid, reversible process, polytropic process, heat engine, entropy, exergy, heat engine cycle, carnot cycle absolute temperature scale, constant pressure cycle, air standard cycle. Otto cycle, diesel cycle, dual combustion cycle, combustion, fuels, combustion equations, enthalpy, power plant thermal efficiency, steam cycles, rankine cycle, gas turbine cycles, nozzles, jet propulsion, rotodynamic machinery, reciprocating internal-combustion engines, engine output, engine efficiency, supercharging, refrigeration, heat pumps, reversed heat engine cycles, vapour-compression cycles, gas cycles, psychrometry, air-conditioning, heat transfer, conduction equation, conduction, convection, heat exchangers, black-body radiation, combined cycles

Engineering Thermodynamics Work and Heat Transfer ,Fourth edition

Author: Gordon Rogers, Yon Mayhew

School: Rivers State University of Science and Technology

Department: Engineering

Course Code: FEC251

Topics: Engineering Thermodynamics, Work, Heat Transfer, Thermodynamic properties, temperature, Law of Thermodynamics, Non-Flow Processes, Constant volume process, Constant pressure process, Polytropic process, Adiabatic process, Isothermal process, Flow Processes, Nonsteady-flow processes, Boiler, condenser, Throttling, Reciprocating compressor, Cycle efficiency, Reversibility, irreversibility, Exergy, Gibbs function, steady-flow system, Properties of Fluids, Vapour Power Cycles, carnot cycle, rankine cyclel, reheat cycle, regenerative cycle, economiser, air preheater, steam cycles, Gas Power Cycle, gas turbine cycle, Closed-cycle gas turbine, Intercooling, reheating, Combined gas, steam cycles, Reciprocating engine cycles, Heat Pump, Refrigeration Cycles, Reversed Carnot cycle, Practical refrigeration cycles, Water refrigerator, Absorption refrigerators, Gas cycles, Hygrometry, psychrometry

Thermodynamics and Energy Conversion

Author: Henning Struchtrup

School: University of Ilorin

Department: Engineering

Course Code: MEE242, MEE284, ENG209, PHY331, PHY491, AGY204, CHE412

Topics: system, state, process, law of thermodynamics, properties, property relations, reversible process, open system cycle, vapor engine, gas engine, compressible flow, homogenous process, thermodynamic equilibrium, mixtures, Psychrometrics, chemical potential, mixing, separation, phase equilibrium, reacting mixtures, combustion, fuel cell

Fluid mechanics and hydraulics

Author: Mahesh kumar

School: Chukwuemeka Odumegwu Ojukwu University

Department: Engineering

Course Code: ENG232

Topics: fluid pressure, hydrostatic forces, submerged surfaces, buoyancy, floatation, fluid kinematics, fluid dynamics, vortex flow, potential flow, ideal fluid flow, laminar flow, viscous flow, boundary layer theory, compressible flow, model similitude, free jets, fluid machines, pelton turbine, impulse turbine, francis turbine, radial flow reaction turbines, propeller, kaplan turbine, axial flow reaction turbines, hydraulic turbines, centrifugal pumps, reciprocation pumps, hydraulic systems, fluid continuum, fluid properties, specific weight, weight density, viscosity, perfect gas law, isobaric process, adiabatic process, surface tension, capillarity, capillary effect, vapour pressure, cavitation, pascal's law, hydrostatic law, Bouyant force, centre of buoyancy, archimedes principle, metacentre, metacentric height, cauchy-reimann equations, Euler's equation, Bernoulli's equation, continuity equation, orfices, hydraulic coefficients, uniform flow, source flow, sink flow, free vortex flow, notches, weirs, francis formula, bazin formula, rehbock formula, cipolletti weir, reynolds experiment, Navier-stoke equation, efflux viscometer, ogee weir, boundary layers, stagnation pressure, stagnation density, stagnation temperature, specific energy curve, critical depth, critical velocity, sub-critical flow, hydraulic jump, francis turbine, velocity triangle, draft tube, rotodynamic turbine

Thermodynamics An Engineering Approach ,9th edition

Author: Yunus Cengel, Michael Boles, Mehmet Kanoglu

School: Bayero University, Kano

Department: Engineering

Course Code: EGR2205

Topics: Thermodynamics, energy, energy transfer, energy analysis, closed systems, mass analysis, second law of thermodynamics, entropy, exergy, gas power cycles, refrigeration cycles, thermodynamic properties relations, gas mixtures, gas-vapor mixtures, air-conditioning, chemical reactions, chemical equilibrium, phase equilibrium, compressible flow, renewable energy

Applied Thermodynamics, 2nd edition

Author: RK Rajput

School: Federal University of Agriculture, Abeokuta

Department: Engineering

Course Code: MCE309

Topics: Applied Thermodynamics, Thermodynamics, steam, Internal Latent Heat, entropy, steam generators, boilers, steam boiler, Fire Tube Boilers, Water Tube Boilers, High Pressure Boilers, boiler mountings, draught, chimney, evaporative capacity, boiler efficiency, steam power cycles, Carnot cycle, Rankine cycle, Modified Rankine cycle, Regenerative cycle, Reheat cycle, Binary vapour cycle, reciprocating steam engine, compound steam engines, Multi-Cylinder Engines, uniflow steam engine, steam nozzles, nozzle efficiency, steam injector, steam turbines, turbine efficiencies, reheating steam, steam turbine governing, steam turbine control, steam condensers, condensing plant, jet condensers, surface condensers, gas power cycles, air standard efficiency, dual combustion cycle, Atkinson cycle, Ericsson cycle, Brayton cycle, internal combustion engines, Four-Stroke Cycle Engines, Two-Stroke Cycle Engines, ignition system, fuel injection system, electronic fuel system, cooling system, lubrication systems, Performance Number, Combustion Chamber Design, octane number, Diesel Knock, cetane number, supercharging, dissociation, Engine Performance Curves, Wankel Rotary Combustion Engine, Stratified Charge Engines, Duel-Fuel Engines, air compressors, Reciprocating Compressors, volumetric efficiency, Multi-stage Compression, compressor performance, intercooler, Compressed Air Motors, Rotary Compressors, gas turbines, jet propulsion, Open Cycle Gas Turbines, Constant Volume Combustion Turbines, Gas Turbine Fuels, refrigeration, Air Refrigeration System, Simple Vapour Compression System, Vapour Absorption System, Refrigerants, Air-conditioning Systems, Air-conditioning, load estimation, Air Distribution

Fundamentals of Thermodynamics lecture note

Author: Utazi Divine

School: Air Force Institute of Technology

Department: Engineering

Course Code: GET206

Topics: perfect gas, boyle's law, charle's law, gay-lussac's law, general gas equation, joules law, specific heat, isobaric process, isochoric process, isothermal process, enthalpy, first law of thermodynamics, perpetual motion machine of the first kind, flow process, non-flow process, water turbine, steam turbine, centrifugal pump, pure substance, compressor, evaporator, phase changes, saturated vapour, super heated vapour, steam tables

Fundamentals of Engineering Thermodynamics ,9th Edition

Author: Michael Moran, Howard Shapiro, Daisie Boettner, Margaret Bailey

School: University of Nigeria, Nsukka

Department: Engineering

Course Code: MEC261

Topics: Engineering Thermodynamics, First Law of Thermodynamics, Control Volume Analysis, Second Law of Thermodynamics, Exergy Analysis, entropy, vapor power systems, gas power systems, Refrigeration, Heat Pump Systems, Thermodynamic Relations, Ideal Gas Mixture, Reacting Mixtures, Combustion, Chemical Equilibrium, Phase Equilibrium, energy storage, Generalized Compressibility Chart.ideal gas model, Polytropic Process Relations.nozzle, diffuser, turbine, compressor, pump, heat exchanger, throttling devices, transient analysis, mass rate balance

Fundamentals of Engineering Thermodynamics - Solution Manual ,8th edition

Author: Michael Moran, Howard Shapiro

School: University of Nigeria, Nsukka

Department: Engineering

Course Code: MEC261

Topics: Engineering Thermodynamics, First Law of Thermodynamics, Control Volume Analysis, Second Law of Thermodynamics, Exergy Analysis, entropy, vapor power systems, gas power systems, Refrigeration, Heat Pump Systems, Thermodynamic Relations, Ideal Gas Mixture, Reacting Mixtures, Combustion, Chemical Equilibrium, Phase Equilibrium, energy storage, Generalized Compressibility Chart.ideal gas model, Polytropic Process Relations.nozzle, diffuser, turbine, compressor, pump, heat exchanger, throttling devices, transient analysis, mass rate balance

The laws of thermodynamics

Author: CHM UNILORIN

School: University of Ilorin

Department: Medical, Pharmaceutical and Health science

Course Code: CHM212

Topics: law of thermodynamics, Zeroth law of thermodynamics, First law of thermodynamics, Second law of thermodynamics, Third law of thermodynamics, thermodynamics, Internal energy change, Enthalpy change, heat, thermodynamics, heat capacity

Fundamentals of Engineering Thermodynamics

Author: Onwuachu chineyere, Eke cyril

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG209

Topics: Thermodynamics, liquid, vapor, steady-flow energy equation, heat engine, isobaric process, polytropic process, adiabatic process, isothermal process, entropy, power cycle, otto cycle, diesel cycle, carnot cycle

Constant volume process

Author: MEE FUOYE

School: Federal University, Oye-Ekiti

Department: Engineering

Course Code: MEE205

Topics: Constant volume process, polytropic process

Principles of Chemical Engineering Processes Material and Energy Balances

Author: Nayef Ghasem, Redhouane Henda

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: CHE202

Topics: Chemical Engineering Processes, Material Balance, Energy Balance, temperature measurement, temperature conversion, dimensional homogeneity, dimensionless quantities, process flow sheet, process unit, process streams, mass flow rates, volumetric rates, moles, molecular weight, stream composition, mass fraction, mole fraction, concentration, pressure measurement, pressure-sensing devices, process units, degrees of freedom analysis, process flow diagram, multiunit process flow diagram, mass balance, Stoichiometric Equation, Stoichiometric Coefficients, Stoichiometric Ratio, Limiting Reactant, Excess Reactants, Combustion Reactions, Chemical Equilibrium, Multiple-Unit Process Flowcharts, Single-Phase Systems, Multiphase Systems, Ideal Gas Equation of State, liquid density, solid density, gas density, Real Gas Relationships, Compressibility Factor, Virial Equation of State, van der Waals Equation of State, Soave–Redlich–Kwong Equation of State, Kay’s Mixing Rules, phase diagram, Vapor–Liquid Equilibrium Curve, Vapor Pressure Estimation, Clapeyron Equation, Clausius–Clapeyron Equation, Cox Chart, Antoine Equation, Partial Pressure, Dalton’s Law of Partial Pressures, Gibbs’ Phase Rule, Bubble Point, Dew Point, Critical Point, Kinetic Energy, Potential Energy, energy balance, steam turbine, heaters, coolers, compressors, Mechanical Energy Balance, Enthalpy Calculations, Constant Heat Capacity, Psychrometric Chart, Heat of Reaction, Heats of Formation, Heat of Combustion, Heat of Reaction Method, Unsteady-State Material Balance, Unsteady-State Energy Balance

Entropy

Author: MEE FUOYE

School: Federal University, Oye-Ekiti

Department: Engineering

Course Code: MEE205

Topics: Entropy

A Textbook of Fluid Mechanics and hydraulic machines, 9th edition

Author: RK bansal

School: Covenant University

Department: Engineering

Course Code: CVE332

Topics: Fluid Mechanics, hydraulic machines, viscosity, compressibility, bulk modulus, surface tension, capillarity, vapor pressure, cavitation, Pascal's law, manometers, Piezometer, differential manometer, isothermal process, buoyancy, flotation, meta-center, fluid flow, continuity equation, velocity, acceleration, velocity potential function, stream function, equipotential line, Vortex flow, ideal flow, potential flow, momentum equation, free liquid jets, orifices, mouthpieces, notches, weirs, viscous flow, turbulent flow, Reynolds experiment, dimensional homogeneity, model analysis, dimensionless numbers, Boundary layer flow, compressible flow, Mach number, Jet propulsion, hydraulic machines, turbines, Pelton wheel, Radial flow reaction turbines, Francis turbine, axial flow reaction turbine, Draft tube, specific speed, unit quantities, centrifugal pumps, cavitation, maximum suction lift, net positive suction head, reciprocating pumps, air vessels, fluid system, hydraulic press, hydraulic accumulator, hydraulic intensifier, hydraulic ram, hydraulic lift, hydraulic crane, hydraulic coupling, hydraulic torque converter, air lift pump, gear-wheel pump

Mechanics and Thermodynamics

Author: Wolfgang Demtröder

School: University of Nigeria, Nsukka

Department: Engineering

Course Code: MEC261

Topics: Mechanics of point mass, moving coordinate system, special relativity, systems of point masses, collisions, dynamics of rigid bodies, rigid body, real solid, liquid bodies, static liquids, gases, kinetic gas theory, fluid dynamics, Euler equation, continuity equation, Bernoulli equation, vacuum physics, laminar flow, navier-strokes equation, aerodynamics, reynold's number, thermodynamics, heat transport, mechanical oscillations, mechanical waves, forced oscillations, superposition of waves, standing waves, nonlinear dynamics, acoustics, nonlinear chaos, vector algebra, vector analysis, coordinate systems, complex numbers

First law of thermodynamics

Author: CHM UNILORIN

School: University of Ilorin

Department: Science and Technology

Course Code: CHM212

Topics: law of thermodynamics, thermal equilibrium, chemical equilibrium, mechanical equilibrium, Thermodynamic processes, Isothermal Process, Adiabatic Process, Isobaric Process, Isochoric Process, Cyclic Process, Reversible Process, Irreversible Process, heat, work

Chemical Thermodynamics

Author: CHE UI

School: University of Ibadan

Department: Science and Technology

Course Code: CHE256

Topics: Thermodynamic process, Reversible process, Irreversible process, state functions, path functions, heat capacity, Constant Volume Process, Constant Pressure Process, Standard Enthalpies of formation, second law of Thermodynamics, free energy function, entropy, Standard free energies of formation

A Textbook of Internal Combustion Engines

Author: RK Rajput

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ATE407

Topics: Thermodynamics, internal combustion engines, air standard cycle, fuel-air cycle, actual cycle, combustion in S.I engines, Combustion in C.I engines, air capacity of four stroke engines, two stroke engines, chemical thermodynamics, fuel, fuel/air mixture requirement, carburetion, carburetors, fuel injection systems, ignition systems, engine friction, lubrication, supercharging of I.C engines, testing of I.C Engines, performance of I.C engines, air pollution, duel-fuel engine, multi-fuel engine, stratified charge engine, stirling engine

Fox and McDonald's Introduction to Fluid Mechanics,Eighth Edition

Author: Philip pritchard, John Leylegian

School: Federal University of Technology, Owerri

Department: Engineering

Course Code: ENG309, ENG310

Topics: Fluid Statics, Basic Equations in Integral Form for a Control Volume, Angular-Momentum Principle, Differential Analysis of Fluid Motion, Incompressible Inviscid Flow, Dimensional Analysis, Similitude, Internal Incompressible Viscous Flow, External Incompressible Viscous Flow, fluid machinery, flow in open channels, compressible flow, fluid property data

Tests related to Thermodynamics 1

Physics (JAMB)

School: WAEC, JAMB & POST UTME

Department:

Course Code: JAMB

Topics: Physics, JAMB, Friction, work, force, motion, speed, velocity, energy, hydraulic press, relative density, hydrometer, gas law, sound wave, wave, light, mirror,capacitor, electricity, pressure

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