Engineering Chemistry
Past examination question papers and complete curriculum syllabus for Engineering Chemistry (ENSH 153), Bachelor in Geomatics Engineering Semester 2 under Institute of Engineering (IOE), Tribhuvan University.
Past Question Papers (PDF)
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IOE Past Examination Paper
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Most Frequently Asked Questions
Top recurring IOE board exam questions for Engineering Chemistry with verified mark schemes, formula notation, and recurrence frequency.
Electrochemistry and Buffer
5 QuestionsCatalyst and Catalysis
4 QuestionsAnalytical Techniques and their Applications
4 QuestionsMetal Complexes, Rare Earth Elements and Metal alloys
6 QuestionsSustainable Chemistry
4 QuestionsNanoscience and Nanotechnology
1 QuestionEngineering Materials
3 QuestionsExplosives, Lubricants and Paints
3 QuestionsCurriculum Syllabus & Course Topics
Sourced from TU curriculum portalChapter-wise Units & Micro-Syllabus Topics (8 Units)
1. Electrochemistry and Buffer
- 1.1Electrochemistry
- 1.1.1Introduction
- 1.1.2EMF of galvanic cell, Nernst equation
- 1.1.3Polarization and overpotential
- 1.1.4Butler-Volmer equation and Tafel plots
- 1.2Electrode processes and mechanisms
- 1.2.1Charge transfer processes at electrodes
- 1.2.2Mass transfer and diffusion in electrochemical systems
- 1.3Industrial and applied electrochemistry
- 1.3.1Batteries: Lead acid and lithium ion
- 1.3.2Solar-photovoltaic cell, fuel cell
- 1.3.3Corrosion
- 1.4Buffer, buffer range, buffer capacity and buffer solution and its applications
2. Catalyst and Catalysis
- 2.1Definition and types
- 2.2Design and criteria
- 2.2.1Structure-activity relationships
- 2.2.2Selection criteria of catalyst
- 2.3Photocatalysis and electrocatalysis
- 2.4Catalysis for energy and environmental applications
- 2.4.1Catalytic conversion of fossil fuels
- 2.4.2Renewable energy catalysts
- 2.4.3Catalyst for pollution control
3. Analytical Techniques and their Applications
- 3.1Chromatography
- 3.2Mass spectroscopy
- 3.3X-ray diffraction (XRD)
- 3.4UV-visible spectroscopy
- 3.5Infrared-spectroscopy (IR)
- 3.6Nuclear magnetic resonance spectroscopy (NMR)
4. Metal Complexes, Rare Earth Elements and Metal alloys
- 4.1Complexes
- 4.1.1Introduction and Werner’s theory
- 4.1.2Geometry of complex by VBT and its applications
- 4.1.3Crystal field theory: Principle and applications
- 4.2Rare earth elements: Introduction and applications
- 4.3Metallic alloys and applications
5. Sustainable Chemistry
- 5.1Green chemistry: Introduction and principles
- 5.2Water chemistry
- 5.2.1Importance of water quality standards
- 5.2.2Degree of hardness, scale formation in boiler and softening of hard water
- 5.2.3Water pollution with reference to turbidity, COD, BOD, heavy metals, radioactive substances, and plastic
- 5.2.4Industrial wastewater and its treatment
- 5.3Air pollution
- 5.3.1Particulate matter, SOx, NOx, GHGs, VOCs, their impacts and remedies
- 5.4Waste management
- 5.4.1Segregation and management of solid waste
- 5.4.2Management of biodegradable waste into energy
- 5.4.3E-waste and its management
6. Nanoscience and Nanotechnology
- 6.1Introduction and types of nano materials (0-, 1-, 2-, and 3- dimensional)
- 6.2Nanoparticles, nanofibers, nanowires, carbon nanotubes, graphene, mxene, quantum dots, and their uses
- 6.3Preparation of nanomaterials
7. Engineering Materials
- 7.1Polymers
- 7.1.1Natural and synthetic, organic and inorganic, conducting and non- conducting
- 7.1.2Types of polymerizations: Addition and condensation polymerization
- 7.1.3Preparation and applications of epoxy resin, polyurethane, Kevlar, polycarbonate, polymethyl methacrylate, polyacrylonitrile, silicones; phosphorus based polymer, sulphur based polymer
- 7.1.4Conducting polymers: Synthesis and application
- 7.1.5Composite: Fiber reinforced polymer
- 7.1.6Natural polymers: Cellulose, chitin, chitosan, collagen
- 7.2Cement: Hydration and setting chemistry of cement
8. Explosives, Lubricants and Paints
- 8.1Explosives
- 8.1.1Types of explosives: Primary, low and high explosives
- 8.1.2Preparation and applications of TNT, TNG, Nitrocellulose and plastic explosives
- 8.2Lubricants: Introduction, function and classification
- 8.3Paints
- 8.3.1Introduction, requisites, types and applications
- 8.3.2Environmental and health impact
Examination Scheme & Marks Distribution
Evaluation Structure
- Final Board Theory Exam: 60 Marks (Pass mark: 24)
- Internal Assessment: 40 Marks (Pass mark: 16)
- Practical / Lab Exam: 25 or 50 Marks (Continuous lab evaluation + viva, where applicable)
* This is the general current IOE 60/40 scheme; verify course-specific details in the syllabus above.
Exam Preparation Guidelines
- Review the 3 available past examination papers to identify recurring patterns, core problem types, and chapter weightage.
- Cross-reference key answers with official syllabus units, standard textbooks, and lecture notes.
- Structure answers with labeled diagrams, concise bullet points, and highlight final answers in numerical solutions.
Frequently Asked Questions (Engineering Chemistry)
Q: How can I download Engineering Chemistry past question papers?
You can preview or download the Engineering Chemistry question papers (PDF) directly using the built-in viewer on this page with zero redirects or paywalls.
Q: What is the pass mark for Engineering Chemistry?
The general current scheme is a 60-mark final theory exam and a 40-mark internal assessment, with pass marks of 24 and 16. Verify the course-specific syllabus above.
Q: Where can I find the complete syllabus for this subject?
The available chapter-wise syllabus and topic breakdown is indexed in the Syllabus section above, with links to the curriculum PDF source.