№ files_lp_4_process_1_45548
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Course syllabus and evaluation structure detailing thermodynamics principles, heat transfer mechanisms, learning outcomes, assessment methods, attendance requirements, and institutional policies for students.
Year:
2026
Region / City:
Pakistan
Program:
BS PH / BSc Aircraft Maintenance Engineering Technology / BS MA
Course Code:
PH 205
Credit Hours:
2
Duration:
16 weeks
Prerequisites:
None
Instructor:
Dr. Sidra Khalid
Contact:
[email protected]
Counseling Timing:
Displayed on LMS, Room 3S-38
Learning Objectives:
Fundamentals of thermodynamics, heat transfer mechanisms, application to aircraft propulsion systems
Assessment:
Quizzes/Assignments 30%, Mid-Term Examination 30%, End-Term Examination 40%
Textbooks:
"Thermodynamics: An Engineering Approach" by Yunus A. Cengel and Michael A. Boles; "Heat Transfer: A Practical Approach" by Yunus A. Cengel and Michael A. Boles
Reference Books:
"Fundamentals of Engineering Thermodynamics" by Michael J. Moran and Howard N. Shapiro
Attendance Policy:
Minimum 80% required to sit for final exams
Policies:
Academic honesty, plagiarism, harassment, course withdrawal, communication of results
Learning Methods:
Lectures, web tutorials, laboratory experiments, individual/group projects
Target Audience:
Undergraduate students in engineering and physics programs
Semester Weeks:
16
Price: 8 / 10 USD
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The product description is provided for reference. Actual content and formatting may differ slightly.
Year:
Not specified
Region / City:
Not specified
Topic:
Thermodynamics, Thermal Energy, Heat Transfer
Document Type:
Educational Material
Institution:
Not specified
Author:
Not specified
Target Audience:
Students, Educators
Effective Period:
Not specified
Approval Date:
Not specified
Modification Date:
Not specified
Year:
2019
Region / City:
Abuja
Subject:
Chemical Thermodynamics
Document Type:
Examination Paper
Institution:
National Open University of Nigeria
Department:
Department of Pure & Applied Sciences
Target Audience:
Students of Chemistry
Period of Validity:
April/May 2019
Date of Approval:
April 2019
Date of Modifications:
None
Year:
2022
Region / City:
-
Theme:
Thermodynamics, Chemical Reactions
Document Type:
Educational Materials
Author:
-
Target Audience:
Students, Educators
Effective Period:
-
Approval Date:
-
Modification Date:
-
Class:
XITH
Subject:
Physics
DPP Number:
5
Date:
Not specified
Topic:
Thermodynamics
Question Type:
Multiple Choice
Intended Audience:
Students
Educational Level:
High School / Secondary School
Number of Questions:
20
Related Concepts:
Ideal Gas, Real Gas, Heat Engine, Thermodynamic Processes, Internal Energy, Pressure, Volume, Temperature, Entropy, Carnot Cycle
Course:
Analysis of Dynamic, Equilibrating Systems
Academic field:
Supramolecular Chemistry
Topic:
Dynamic systems, equilibrium binding, and weak intermolecular interactions
Document type:
Course notes / lecture material
Educational level:
University-level chemistry course
Course components:
Student presentations, participation, final exam
Key scientific concepts:
Association constants, thermodynamic parameters (ΔG, ΔH, ΔS), rate constants (kon, koff)
Chemical interactions discussed:
Electrostatic interactions, dispersion (van der Waals) forces, hydrogen bonding, aromatic interactions
Scientific quantities discussed:
Equilibrium constants, entropy, enthalpy, free energy, reaction rates
Illustrative examples:
Enzyme inhibition, self-assembly, supramolecular binding, thrombin inhibitors, vancomycin–ligand interactions
Reference context:
Chem 537 (January 2015 referenced in slides)
Language:
English
Year:
2021
Topic:
Chemical Engineering Thermodynamics
Document Type:
Quiz
Author:
Not specified
Target Audience:
Students studying chemical engineering thermodynamics
Period of Validity:
Not specified
Approval Date:
February 18, 2021
Modification Date:
Not specified
Year:
2022
Region / city:
Plateau State, Nigeria
Topic:
Neem Oil Extraction
Document Type:
Research Paper
Organization:
Not specified
Author:
Obodoeze et al.
Target Audience:
Researchers, industrial engineers, and those involved in neem oil production
Effective Period:
Not specified
Approval Date:
Not specified
Modification Date:
Not specified
Keywords:
Neem tree, Neem oil, Solvent extraction, kinetic model, thermodynamic model
Context:
A research paper on the kinetics and thermodynamics of neem oil extraction using ethanol, providing data for industrial scaling and optimization of the extraction process.
Year:
2020
Date:
January 16, 2020
Academic Field:
Chemical Engineering Thermodynamics
Document Type:
Quiz / Problem Set with Answer Key
Institution Type:
Higher Education
Topic:
Steam turbine cycle, thermodynamic efficiency, enthalpy calculations
System Analyzed:
Steam turbine–condenser–boiler–superheater cycle
Working Fluid:
Water / Steam
Given Flow Rate:
1200 kg/h
Units Referenced:
kW, kJ/kg, °C, m³, J/s
Concepts Referenced:
Enthalpy difference, adiabatic turbine work, Carnot efficiency, log–log P–V diagram, lever rule
Included Materials:
Steam table reference, schematic cycle diagram, calculation instructions, numerical solutions
Intended Audience:
Students of chemical engineering thermodynamics
Year:
Not specified
Region / City:
Not specified
Subject:
Heat treatment, welding, bending, forming
Document Type:
Technical standard
Organization / Institution:
Not specified
Author:
Not specified
Target Audience:
Professionals in welding, bending, and forming
Effective Period:
Not specified
Approval Date:
Not specified
Amendment Date:
Not specified
Year:
2025
Region / City:
Leicester
Topic:
Supercritical fluids, Heat transfer, Instabilities, Turbulence
Document Type:
Research Project
Institution:
University of Leicester
Author:
Dr. Benjamin Bugeat
Target Audience:
PhD Candidates
Period of Validity:
2025
Approval Date:
N/A
Modification Date:
N/A
Year:
2023
Region / city:
Westminster
Topic:
Energy, Heating Systems
Document Type:
FAQ
Organization:
Westminster City Council
Author:
Westminster City Council
Target Audience:
Residents of Wharncliffe Gardens Estate
Period of Action:
Not specified
Approval Date:
Not specified
Date of Changes:
Not specified
Year:
2026
Region / City:
Not specified
Topic:
Energy efficiency, Heat recovery, Compressors
Document type:
Technical article
Author:
Not specified
Target audience:
Engineers, Technicians, Industry professionals
Period of validity:
Not specified
Approval date:
Not specified
Date of changes:
Not specified
Awarding organisation:
City & Guilds
Qualification level:
Level 3
End-point assessment standard:
Refrigeration, Air Conditioning and Heat Pump Engineering Technician
Standard reference:
ST0322
Qualification number:
6090-51
Document type:
End-point assessment recording forms
Intended users:
Providers, employers, EPA customers, apprentices
Assessment tasks covered:
Retrofit and retrofill; fault finding and system repair
Version:
V1.2
Previous version:
V1.1
Date last modified:
January 2025
Usage status:
For external use
Associated document:
EPA Pack for Providers and Employers
Year:
2025
Region / City:
Not specified
Topic:
Academic Paper Submission Guidelines
Document Type:
Instruction Manual
Organization / Institution:
IIETA
Authors:
Aaa Surname, Bbb B. Surname, Ccc C.C. Surname
Target Audience:
Authors submitting papers to the International Journal of Heat and Technology
Period of Validity:
Not specified
Approval Date:
Not specified
Modification Date:
Not specified
Year:
Not specified
Manufacturer:
LG
Type of Document:
Technical guide / Specification
Unit Type:
Single Zone Heat Pump Indoor Unit (Ducted – VAHU)
Operating Conditions:
Cooling 57°F WB to 77°F WB, Heating 59°F DB to 81°F DB
Construction:
22-gauge Pre Coated Metal casing, insulated panels, plenum rated insulation
Configuration:
Vertical (up/down flow) and horizontal (left/right end discharge)
Fan Type:
ECM / BLDC fan with variable speed control
Control System:
Microprocessor controller with communication to outdoor unit, group and central control capabilities
Electrical:
208-230/1/60 V/Ph/Hz, ±10% voltage tolerance
Additional Features:
Auto changeover, dehumidifying, sleep mode, child lock, hot start, dual thermistor control
Filters:
Front-accessible filter racks compatible with field-supplied filters
Warranty:
Refer to corresponding outdoor unit
Document type:
Emissions certificate template
Scheme:
Renewable Heat Incentive (RHI)
Sector:
Domestic and non-domestic renewable heat
Subject:
Air quality emissions compliance for biomass combustion plant
Issuing authority:
Office of Gas and Electricity Markets (Ofgem)
Applicable plant types:
Biomass boilers and biomass stoves
Pollutants covered:
Particulate matter (PM); Oxides of nitrogen (NOx)
Emission limits:
30 g/GJ PM; 150 g/GJ NOx
Testing standards referenced:
BS EN 303-5:1999; BS EN 303-5:2012; EN 14792:2005; EN 13284-1:2002; ISO 9096:2003
Laboratory accreditation standard:
BS EN ISO/IEC 17025:2005
Measurement basis:
Net heat input at ≥85% installation capacity
Intended use:
Accreditation of biomass plant models for RHI applications
Administrative notes included:
Certificate issue requirements; transfer of test data; type-testing range rules
Year:
2023
Region / City:
United States
Topic:
Extreme Heat, Public Communication, Social and Behavioral Science
Document Type:
Research Guide
Agency:
National Weather Service (NWS)
Author:
Climate Resilience Consulting, Abt Associates
Target Audience:
Community leaders, public health officials, and professionals working with underserved populations
Effective Period:
Not specified
Approval Date:
Not specified
Modification Date:
Not specified
Year:
2026
Region / City:
N/A
Theme:
Heat Pump Technology
Document Type:
Conference Paper Template
Organization:
IEA (International Energy Agency)
Author:
N/A
Target Audience:
Researchers, Engineers, Conference Participants
Period of Validity:
N/A
Approval Date:
N/A
Date of Changes:
N/A
Year:
Not specified
Region / City:
Not specified
Theme:
Heat pump systems, performance estimation
Document type:
Consultation response form
Organization / Institution:
MCS (Microgeneration Certification Scheme)
Author:
Not specified
Target audience:
Stakeholders involved in heat pump system performance estimation
Period of validity:
Not specified
Approval date:
Not specified
Date of amendments:
Not specified