GSET Chemical Science Solved Previous year Paper 2016 to 2024 Download PDF

The Gujarat State Eligibility Test (GSET) is one of the most important qualifying exams for lectureship and research positions in Gujarat. Among the various subjects, Chemical Science is a highly competitive paper that demands a strong conceptual foundation, numerical problem-solving ability, and thorough practice.One of the most effective preparation tools is solving Previous Year Question Papers (PYQs). Here we provide an overview of solved GSET Chemical Science PYQs from 2016 to 2024, along with a year-wise table of resources.
Why Previous Year Papers are Important
- Understand the exam pattern – PYQs help in grasping the structure of Paper II (subject-specific) and the relative weightage of different topics.
- Identify important topics – Recurring areas like thermodynamics, spectroscopy, reaction mechanisms, and coordination chemistry are easily spotted.
- Time management – Attempting PYQs in a timed environment trains you for the real test.
- Error analysis – Solved sets allow you to recognize conceptual vs. calculation errors.
- Boost confidence – Familiarity with question style reduces anxiety during the exam.
Observed Trends in Chemical Science (2016–2024)
- Physical Chemistry dominates with questions from thermodynamics, quantum chemistry, kinetics, and spectroscopy.
- Organic Chemistry emphasizes mechanisms, named reactions, stereochemistry, and retrosynthetic logic.
- Inorganic Chemistry regularly includes periodic properties, coordination complexes, and organometallics.
- Analytical/Interdisciplinary Questions involving spectroscopy (IR, NMR, UV-Vis, Mass) and experimental design are frequent.
- Numerical Problem Solving is crucial — particularly in kinetics, thermodynamics, and quantum chemistry.
How to Use PYQs Effectively
- Start with one full paper (without looking at answers) to check baseline accuracy.
- Check solutions/keys and analyze mistakes.
- Prepare error notes focusing on repeated weak areas.
- Do topic-wise revision using PYQs (e.g., solve all spectroscopy-related questions from multiple years).
- Re-attempt past 2–3 years’ papers closer to the exam in a real-time setting.
Suggested 8-Week PYQ Practice Plan
- Weeks 1–2: Revise core topics + attempt two PYQs (recent years).
- Weeks 3–4: Solve one full paper per week under exam conditions.
- Weeks 5–6: Focus on weak topics; do mixed-question drills.
- Weeks 7–8: Attempt 3–4 full PYQs timed, revise formulas and mechanisms daily.
Year-wise Table of GSET Chemical Science PYQs (2016–2024)
Year | Paper Code / Subject | Link |
---|---|---|
2016 | GSET Chemical Sciences (Paper II) | Check Now |
2017 | GSET Chemical Science (Paper II) | Check Now |
2018 | GSET Chemical Science (Paper II) | Check Now |
2019 | GSET Chemical Science (Paper II) | Check Now |
2020 | GSET Chemical Science (Paper II) | Check Now |
2021 | GSET Chemical Science (Paper II) | Check Now |
2022 | GSET Chemical Science (Paper II) | Check Now |
2023 | GSET Chemical Science (Paper II) | Check Now |
2024 | GSET Chemical Science (Paper II) | Check Now |
Conclusion
Practicing KSET Chemical Science PYQs (2016–2024) is the smartest way to prepare. They reveal recurring patterns, sharpen accuracy, and build exam stamina. Combined with proper revision and time-bound attempts, PYQs can significantly boost your chances of qualifying the exam.
Exam Pattern (Quick Overview) GSET
Paper | Type of Questions | Number of Questions | Marks | Duration |
---|---|---|---|---|
Paper I | Objective / MCQs (common) | 50 | 100 | 1 hour |
Paper II | Objective / MCQs (subject) | 100 | 200 | 2 hours |
Total | — | 150 | 300 | 3 hours |
- Paper I is common for all subjects.
- Paper II is subject-specific (Chemical Sciences).
- No negative marking.
Paper I – General (Teaching & Research Aptitude)
This paper applies to all subjects and tests reasoning, teaching ability, and research aptitude.
Major Topics:
- Teaching Aptitude – nature, objectives, methods, evaluation systems.
- Research Aptitude – types, ethics, steps, thesis writing, seminars.
- Reading Comprehension – unseen passages with questions.
- Communication – types, barriers, classroom communication.
- Logical Reasoning – structure of arguments, inductive vs. deductive.
- Data Interpretation – graphs, charts, tables.
- ICT – computers, internet, digital tools.
- People & Environment – interaction, pollution, conservation.
- Higher Education System – governance, policies, distance education.
Paper II – Chemical Sciences (Subject Specific)
This is the main section. It covers Inorganic, Physical, and Organic Chemistry along with interdisciplinary topics.
1. Inorganic Chemistry
- Periodic table and periodicity.
- Structure and bonding (ionic, covalent, metallic, VSEPR).
- Acids and bases (Brønsted, Lewis, HSAB concept).
- Main group elements: bonding, allotropes, compounds.
- Transition elements: coordination chemistry, bonding theories, electronic spectra, magnetism.
- Organometallics: bonding, catalysis.
- Bioinorganic chemistry basics.
- Solid-state chemistry: defects, band theory.
- Analytical methods: gravimetric, volumetric, instrumental.
2. Physical Chemistry
- Thermodynamics: laws, free energy, equilibrium.
- Kinetics: reaction rates, mechanisms, chain reactions.
- Quantum chemistry: hydrogen atom, approximation methods, operators.
- Statistical mechanics basics.
- Spectroscopy: UV-Vis, IR, NMR, ESR, Mass.
- Electrochemistry: Nernst equation, conductance, ionic equilibria.
- Surface chemistry, catalysis, colloids.
- Phase equilibria, colligative properties.
- Molecular dynamics and structure.
3. Organic Chemistry
- Structure, bonding, electronic effects.
- Stereochemistry: chirality, conformations.
- Reaction mechanisms: substitution, elimination, addition, rearrangements.
- Named reactions and pericyclic reactions.
- Organic synthesis: retrosynthesis, protecting groups.
- Heterocyclic compounds.
- Photochemistry and radical reactions.
- Biomolecules (proteins, nucleic acids, carbohydrates).
- Spectroscopy in organic chemistry: IR, NMR, Mass.
4. Interdisciplinary & Applied Topics
- Catalysis and green chemistry.
- Environmental chemistry.
- Nanoscience and nanomaterials.
- Supramolecular chemistry.
- Medicinal and bioorganic chemistry.
- Computational chemistry basics.
- Industrial and safety chemistry.
Preparation Tip
- Use this syllabus as a checklist.
- Highlight weak areas and revise with PYQs (2016–2024).
- Organic requires daily practice of mechanisms.
- Physical demands numerical accuracy and speed.
- Inorganic needs theory + coordination chemistry mastery.
- Revise interdisciplinary topics — they often carry surprise questions.
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