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The Kerala PSC Scientific Officer Chemistry syllabus 2027 PDF Download covers advanced areas of Inorganic Chemistry, Organic Chemistry, Physical Chemistry, Analytical Chemistry and related interdisciplinary subjects. Candidates preparing for the Kerala PSC Scientific Officer Chemistry exam should understand the complete syllabus before beginning their preparation.
Get the detailed Kerala PSC Scientific Officer Chemistry syllabus, module-wise topics, important areas to focus on and a practical approach to using the syllabus for exam preparation.
Kerala PSC Scientific Officer Chemistry Syllabus - Overview
Particulars | Details |
Name of Post | |
Department | Kerala Police Service - Forensic Science Laboratory |
Subject | Chemistry |
KPSC Scientific Officer Syllabus Level | Advanced / Postgraduate-level Chemistry |
KPSC Scientific Officer Syllabus Total Modules | 10 |
Total Marks | 100 |
KPSC Scientific Officer Syllabus Major Areas | Inorganic, Organic, Physical, Analytical, Environmental, Material and Supramolecular Chemistry |
KPSC Scientific Officer Chemistry Syllabus Preparation Focus | Concepts, reactions, mechanisms, spectroscopy, analytical techniques, numerical problems and applications |
The KPSC Scientific Officer Chemistry Syllabus is extensive and goes well beyond basic degree-level Chemistry. Candidates should therefore plan their KPSC Scientific Officer preparation module by module instead of attempting to study topics rando
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Kerala PSC Scientific Officer Chemistry Syllabus 2027 PDF Download
Candidates should begin their Scientific Officer preparation by referring to the Kerala PSC Scientific Officer Chemistry syllabus PDF. The detailed syllabus is organised into 10 modules, covering Inorganic Chemistry, Organic Chemistry, Physical Chemistry, and Analytical, Environmental, Material and Supramolecular Chemistry.
Refer to the link below to download the detailed Kerala PSC Scientific Officer Chemistry syllabus PDF and keep it as a checklist throughout your preparation.
Click Here for Kerala PSC Scientific Officer Chemistry Syllabus 2027 PDF Download
Note that the detailed syllabus provided here is from the Kerala PSC syllabus document for Scientific Officer (Chemistry) in Kerala Police Service (Forensic Science Laboratory), Category No. 027/2020. Candidates preparing for the upcoming Kerala PSC Scientific Officer Chemistry 2027 recruitment should start with this syllabus and check the official KPSC Scientific Officer notification 2027 and syllabus when released for any changes.

Kerala PSC Scientific Officer Chemistry Syllabus Module-Wise Topics
The detailed Kerala PSC Scientific Officer Chemistry syllabus is divided into 10 modules as specified below.
No. | Syllabus Units |
1 | Inorganic Chemistry – 1 |
2 | Inorganic Chemistry – 2 |
3 | Inorganic Chemistry – 3 |
4 | Organic Chemistry – 1 |
5 | Organic Chemistry – 2 |
6 | Organic Chemistry – 3 |
7 | Physical Chemistry – 1 |
8 | Physical Chemistry – 2 |
9 | Physical Chemistry – 3 |
10 | Analytical, Environmental, Material and Supramolecular Chemistry |
Total Units | 10 Units |
The Kerala PSC Scientific Officer Chemistry syllabus document does not provide a separate marks allocation for each of these 10 modules, so candidates should prepare all the listed areas rather than assuming equal weightage. The official syllabus also states that questions may be asked from other topics prescribed for the educational qualification, and there is no undertaking that questions will necessarily be confined to every topic listed.
Detailed Kerala PSC Scientific Officer Chemistry Syllabus
DETAILED SYLLABUS FOR THE POST OF SCIENTIFIC OFFICER (CHEMISTRY) IN KERALA POLICE SERVICE (FORENSIC SCIENCE LABORATORY)
Module 1: Inorganic Chemistry – 1
The first module in Kerala PSC Scientific Officer Chemistry Syllabus covers chemical bonding, periodic chemistry, coordination chemistry and advanced inorganic compounds.
Important topics include:
- Structure and bonding in molecules
- Chemical periodicity
- Chemistry of hydrogen and s-block elements
- Chemistry of p-block and d-block elements
- Extractive chemistry of metals of commercial importance
- Chemistry of non-transition elements
- Theories of acids and bases
- HSAB concept
- Solvent effects
- Linear free energy relationship
- Super acids
- Reactions in non-aqueous solvents
- Protic and aprotic solvents
- Isopoly and heteropoly acids
- Silicon-oxygen compounds
- Zeolites
- Xenon and krypton compounds
- Organic and coordination compounds of xenon and krypton
- Sulphur-nitrogen compounds
- Sulphur-phosphorus compounds
- Phosphorus-nitrogen compounds
- Boron-nitrogen compounds
- Boron hydrides
- Organoboranes
- Carboranes and metallocarboranes
- STYX and Wade rules
- Lanthanides and actinides
- Extraction and applications of lanthanides and actinides
- Coordination complexes and spectral behaviour
- Werner's theory
- Crystal field theory
- Ligand field theory
- Molecular orbital theory
- Stereochemistry of coordination compounds
- Jahn-Teller distortion
- Stability and reactions of metal complexes
- Electron transfer reactions
- Substitution reactions
- Photochemical reactions and their kinetics
This module requires strong understanding of inorganic structure, bonding, coordination chemistry and reaction mechanisms.
Module 2: Inorganic Chemistry – 2
Module 2 in Kerala PSC Scientific Officer Chemistry Syllabus gives considerable importance to spectroscopy, coordination compounds, organometallic chemistry and bioinorganic chemistry.
Topics include:
- Construction of energy level diagrams
- Correlation diagrams
- Method of descending symmetry
- Term symbols
- Correlation diagrams for dⁿ and d¹⁰ ions
- Octahedral and tetrahedral fields
- Orgel diagrams
- Tanabe-Sugano diagrams
- Symmetry and selection rules
- Electronic spectra
- IR and Raman spectroscopy
- NMR
- ESR
- Mössbauer spectroscopy
- Magnetic properties of complexes
- Structural elucidation of coordination compounds
- Ligands such as NH₃, H₂O, CO, NO, OH⁻, SO₂, CN⁻, SCN⁻, CH₃COO⁻ and halides
- Changes in ligand vibration on coordination
- CD and ORD spectra
- NMR of metal nuclides, with emphasis on ¹¹B, ³¹P and ¹⁹F
- ESR spectra
- Applications to Cu(II) complexes and inorganic free radicals
- Mössbauer spectroscopy of iron and tin complexes
- Organometallic compounds
- Metal carbonyls and cyanides
- π-donor ligand complexes
- Olefin, acetylene, diene and allyl complexes
- Cyclopentadiene and benzene complexes
- Ferrocene
- Dibenzene chromium complexes
- Metal-metal bonds
- Metal atom clusters
- Nuclearity in metal clusters
- Isoelectronic and isolobal relationships
- Carbonyl clusters
- Cubane clusters
- Chalcogenide clusters
- Chevrel phases
- Zintl anions and cations
- Capping rule
- Organometallic and cluster catalysis
- Hydrogenation
- Hydroformylation
- Polymerisation
- Essential and trace metals in biological systems
- Biological roles of iron, calcium, copper, lithium, aluminium and magnesium
- Biological membranes
- Ion transport
- Sodium-potassium pump
- Coenzymes
- Cytochromes
- Chlorophylls
- Hormones
- Photosynthesis
- Porphyrin ring system
- Photosystems I and II
- Synthetic models for photosynthesis
- Inorganic medicinal chemistry
- Metals in medicine
Module 3: Inorganic Chemistry – 3
The third Inorganic Chemistry module in Kerala PSC Scientific Officer Chemistry Syllabus combines nuclear chemistry, solid-state chemistry and advanced materials.
Topics include:
- Nuclear reactions
- Nuclear structure and stability
- Magic numbers
- Nuclear models
- Radioactive equilibria
- Radioactive decay and growth equations
- Direct nuclear reactions
- Heavy-ion induced nuclear reactions
- Photonuclear reactions
- Neutron capture cross-section
- Critical size
- Applications of nuclear reactions
- Nuclear fission and fusion
- Neutron activation analysis
- Counting techniques
- Crystal symmetry
- Point groups and space groups
- Miller indices
- Bravais lattices
- BCC, FCC and HCP structures
- Voids
- Coordination number
- X-ray diffraction by crystals
- Bragg's equation
- Indexing methods
- Crystal defects
- Electronic structure of solids
- Conductors, insulators and semiconductors
- Doping and band-gap adjustment
- AX, AX₂, AmX₂ and ABX₃ structures
- Spinel and inverse spinel structures
- Structure and theories of liquids
- Liquid crystals
- Conductivity, carrier density and carrier mobility in semiconductors
- Superconductivity
- Photoconductivity
- Photovoltaic effect
- Colour in inorganic solids
- Dielectric properties
- Ferroelectricity
- Pyroelectricity
- Piezoelectricity
- Ionic conductivity
- Applications of ferro-, piezo- and pyroelectrics
- Solid electrolytes
- Mixed oxides
- Cationic and anionic solid electrolytes
- Mixed ionic-electronic conductors
- Solid Oxide Fuel Cells
- Rechargeable battery materials
- Metal nitrides and fluorides
- Chalcogenides
- Intercalation chemistry
- Metal-rich phases
- Inorganic pigments and phosphors
- Molecular materials
- Fullerides
- Molecular magnets
- Inorganic liquid crystals
Module 4: Organic Chemistry – 1
The first Organic Chemistry module in Kerala PSC Scientific Officer Chemistry Syllabus focuses heavily on stereochemistry, reaction mechanisms and organic transformations.
Topics include:
- Nomenclature of organic compounds
- Cyclic hydrocarbons
- Fused polycyclic hydrocarbons
- Bridged polycyclic systems
- Spirocyclic hydrocarbons
- Nitrogen- and oxygen-containing heterocycles
- Molecular symmetry and chirality
- Axial chirality
- Planar chirality
- Helicity
- Relative configuration
- R and S nomenclature
- E and Z nomenclature
- Stereochemistry of biphenyls and allenes
- Topicity
- Pro-stereoisomerism
- Asymmetric synthesis
- Atropisomerism
- M and P configurations
- Enantioselectivity
- Diastereoselectivity
- Stereoconvergence
- Stereospecific and stereoselective synthesis
- Stereotopicity and stereoprojections
- Prochiral centres
- Re and Si faces
- Geometrical isomerism
- Conformational analysis
- Cram's rule
- Felkin-Ahn model
- Electron displacement effects
- Aromaticity and antiaromaticity
- Homoaromatic and heteroaromatic systems
- Annulenes
- Mesoionic compounds
- Metallocenes
- Cyclic carbocations and carbanions
- Substitution, addition, elimination and rearrangement reactions
- SN1 and SN2 reactions
- SN1', SN2', SNi, SNAr and benzyne mechanisms
- Neighbouring group participation
- Nonclassical carbocations
- Nitrenes, carbenes and free radicals
- Important organic reactions and condensations
- Addition reactions of alkenes
- Michael addition
- Robinson annulation
- Aldol condensation
- Grignard reaction
- Mannich reaction
- Dieckmann condensation
- E1, E2 and E1cb reactions
- Hoffmann and Saytzeff elimination
- Shapiro reaction
- Peterson and Julia olefination
- Wittig and Wittig-Horner reactions
- Chugaev and Cope eliminations
- Reduction of alkynes using sodium in liquid ammonia and Lindlar's catalyst
Module 5: Organic Chemistry – 2
Module 5 in Kerala PSC Scientific Officer Chemistry Syllabus moves further into rearrangements, oxidation-reduction, organic synthesis and coupling reactions.
Topics include:
- Wagner-Meerwein rearrangement
- Pinacol rearrangement
- Demjanov rearrangement
- Hofmann rearrangement
- Curtius rearrangement
- Schmidt rearrangement
- Lossen rearrangement
- Beckmann rearrangement
- Fries rearrangement
- Hofmann-Martius rearrangement
- Dienone-phenol rearrangement
- Benzilic acid rearrangement
- Benzidine rearrangement
- Favorskii rearrangement
- Stevens rearrangement
- Wolff rearrangement
- Oxidation and reduction in organic synthesis
- Borane reductions
- NaBH₄
- LiAlH₄
- DIBAL-H
- Tri-n-butyltin hydride
- Diimide
- Aluminium alkoxides
- Birch reduction
- Clemmensen reduction
- Wolff-Kishner reduction
- Rosenmund reduction
- Sharpless epoxidation
- Jones oxidation
- Swern oxidation
- Moffatt oxidation
- Sommelet reaction
- HIO₄, OsO₄ and mCPBA applications
- Hammett equation
- Taft equation
- Kinetic isotope effects
- Salt effects
- Retrosynthetic analysis
- Disconnection approach
- Olefin metathesis
- Grubbs' catalysts
- Umpolung
- Benzoin condensation
- Heck coupling
- Negishi coupling
- Sonogashira coupling
- Kumada coupling
- Stille coupling
- Suzuki coupling
- Organometallic reagents
- Protecting groups in peptide synthesis
- Phase-transfer catalysis
Module 6: Organic Chemistry – 3
The final Organic Chemistry module in Kerala PSC Scientific Officer Chemistry Syllabus covers photochemistry, pericyclic reactions, natural products, polymers, drug design and spectroscopy.
Topics include:
- Photochemical processes
- Singlet and triplet states
- Jablonski diagram
- Energy transfer
- Sensitisation and quenching
- Photoreactions of carbonyl compounds, enes, dienes and arenes
- Paternò-Büchi reactions
- Barton reactions
- Hofmann-Löffler-Freytag reaction
- Photo-Fries reaction
- Di-π-methane rearrangement
- Applications of photochemistry
- Pericyclic reactions
- Frontier Molecular Orbital theory
- Correlation diagrams
- Möbius and Hückel theory
- Electrocyclic reactions
- Cycloaddition reactions
- Diels-Alder reaction
- 1,3-dipolar cycloaddition
- Sigmatropic rearrangements
- Natural products
- Terpenes
- Steroids
- Alkaloids
- Carbohydrates
- Proteins
- Nucleic acids
- Vitamins
- Prostaglandins
- Hormones
- Enzymes
- Combinatorial organic synthesis
- Solid-supported and solution-phase synthesis
- Drug design and development
- Polymerisation
- Structure-property relationships of polymers
- Protein sequencing by Edman method
- Protein denaturation
- Stereoregular polymers
- Ziegler-Natta catalyst
- Biodegradable polymers and biopolymers
- UV, IR, ¹H NMR, ¹³C NMR and Mass Spectroscopy
- 2D NMR
- NOE
- DEPT
- COSY
- HSQC
- HMQC
- HMBC
- Spectral interpretation
- Structural elucidation
- ORD and CD
Module 7: Physical Chemistry – 1
Physical Chemistry is covered in Modules 7, 8 and 9 and includes thermodynamics, kinetics, electrochemistry, quantum chemistry, statistical thermodynamics and spectroscopy.
Topics include:
- Gaseous state
- Maxwell distribution
- Transport phenomena
- Chapman equation
- Equations of state of real gases
- van der Waals equation
- Virial equations
- Intermolecular forces
- Electronic structure of solids
- Crystal symmetry
- Theories of solids
- Electrical, magnetic and optical properties of solids
- Crystal defects
- Structure and theories of liquids
- XRD of liquids
- Surface tension
- Viscosity
- Liquid crystals
- Laws of thermodynamics
- Entropy
- Equations of state
- Euler's relation
- Gibbs and Helmholtz equations
- Maxwell relations
- Gibbs-Duhem equation
- Partial molar quantities
- Chemical potential
- Fugacity
- Activity coefficients
- Thermodynamics of solutions
- Duhem-Margules equation
- van't Hoff equations
- Phase equilibria
- Two- and three-component systems
- Statistical thermodynamics
- Molecular partition function
- Quantum statistics
- Heat capacities
- Sackur-Tetrode equation
- Equipartition of energy
- Chemical equilibrium
- Law of mass action
Module 8: Physical Chemistry – 2
This module in Kerala PSC Scientific Officer Chemistry Syllabus focuses on surface chemistry, electrochemistry, chemical kinetics and catalysis.
Topics include:
- Gas-solid interface
- Adsorption
- Monolayer and multilayer adsorption
- Adsorption isotherms
- Heat of adsorption
- Determination of surface area
- Harkins-Jura method
- Point B method
- Langmuir method
- BET method
- LEED
- SEM
- TEM
- ECSA
- Photoelectron spectroscopy
- Scanning probe microscopy
- Auger electron spectroscopy
- Activity and activity coefficients of electrolytes
- Electrodes and electrochemical cells
- Nernst equation
- Debye-Hückel equation
- Onsager equation
- Overpotentials
- Butler-Volmer equation
- Tafel equation and Tafel plots
- Electrolytic polarisation
- Fuel cells
- Electroanalytical methods
- Potentiometry
- Polarography
- Coulometry
- Conductometry
- Cyclic voltammetry
- Stripping voltammetry
- Amperometry
- Colloids
- Zeta potential
- Electrokinetic phenomena
- Chemical kinetics
- Complex reactions
- Steady-state approximation
- Theories of reaction rates
- Arrhenius equation
- Fast reactions
- Reactions in solution
- Ionic strength
- Cage effect
- Bronsted-Bjerrum equation
- Primary and secondary kinetic salt effects
- Solvent effects
- Volume of activation
- Hammett and Taft equations
- Homogeneous and heterogeneous catalysis
- Bimolecular surface reactions
- Langmuir-Hinshelwood mechanism
- Enzyme catalysis
Module 9: Physical Chemistry – 3
The final Physical Chemistry module in Kerala PSC Scientific Officer Chemistry Syllabus deals extensively with quantum mechanics, chemical bonding, quantum statistics, group theory and molecular spectroscopy.
Topics include:
- Limitations of classical mechanics
- Need for quantum mechanics
- de Broglie relation
- Experimental proof of de Broglie relation
- Uncertainty principle
- Postulates of quantum mechanics
- Exactly solvable model problems
- Translational motion
- Quantum mechanical tunnelling
- Vibrational motion
- Rotational motion
- Simple harmonic oscillator
- Rigid rotor
- Legendre polynomials
- Associated Legendre functions
- Hydrogen-like atoms
- Multi-electron systems
- Angular momentum
- SCF method
- Variation method
- Molecular orbital diagrams
- Homonuclear diatomic molecules
- Heteronuclear diatomic molecules
- Multi-electron wave functions
- Symmetric and antisymmetric wave functions
- Pauli antisymmetry principle
- Spin and spin orbitals
- Spin-orbit coupling
- Vector atom model
- Term symbols
- Selection rules
- Spectral lines of hydrogen
- Chemical bonding in diatomic and polyatomic molecules
- Computational chemistry
- Ab initio methods
- Semi-empirical methods
- Molecular mechanics
- Bose-Einstein statistics
- Maxwell-Boltzmann statistics
- Fermi-Dirac statistics
- Quantum theory of heat capacity
- Dulong-Petit law
- Kopp's law
- Einstein theory
- Debye theory
- Symmetry elements and operations
- Group theory
- Character tables
- Point groups
- Identification of point groups
- C₂v, C₃v and C₂h groups
- Applications to MO theory
- Chemical bonding and spectroscopy
- Electronic spectroscopy
- Microwave spectroscopy
- Infrared spectroscopy
- Raman spectroscopy
- NMR
- ESR
- Mössbauer spectroscopy
Module 10: Analytical, Environmental, Material and Supramolecular Chemistry
The tenth module in Kerala PSC Scientific Officer Chemistry Syllabus brings together several applied areas of Chemistry and is particularly broad.
Analytical Chemistry
- Accuracy and precision
- Standard deviation
- Variance
- Coefficient of variation
- Student's t-test
- Q-test
- F-test
- Confidence limits
- Errors and their minimisation
- Significant figures
- Correlation analysis
- Least-squares method
- Quantitative analysis
- Qualitative analysis
- Inorganic analysis
- Organic analysis and preparations
- Postgraduate-level physical chemistry experiments
Thermal and Chromatographic Techniques
- TG
- DTA
- DSC
- Chromatographic techniques
- Column chromatography
- TLC
- Paper chromatography
- GC
- HPLC
- Ion-exchange chromatography
- Solvent extraction
- Supercritical CO₂ extraction
- Craig's liquid-liquid extraction technique
Green and Environmental Chemistry
- Twelve principles of green chemistry
- Sustainable chemistry
- Green synthesis
- Phase-transfer catalysts
- Green reactions
- Microwave-assisted synthesis
- Sonication in organic synthesis
- Chemistry of the atmosphere
- Chemistry of the hydrosphere
- Chemistry of the lithosphere
Materials and Supramolecular Chemistry
- Nanostructures
- One-dimensional, two-dimensional and three-dimensional structures
- Synthesis and applications of nanomaterials
- Piezoelectric materials
- Magnetostrictive materials
- Halochromic materials
- Chromogenic materials
- Electrochromic materials
- Thermochromic materials
- Magnetocaloric materials
- Thermoelectric materials
- Supramolecular chemistry
- Molecular recognition
- Synthetic receptors
- Cyclodextrins
- Calixarenes
- Cyclophanes
- Crown ethers
- Drug design
- Drug action
Read More at:
- Kerala PSC Scientific Officer 2027: Notification, Eligibility, Syllabus, & Preparation Guide
- Kerala PSC Scientific Officer Eligibility Criteria 2027: Qualification & Age Limit
- Kerala PSC Scientific Officer Advice Status 2026, Cut Off, Rank List & Shortlist
- How to Prepare for Kerala PSC Scientific Officer 2027: Study Plan & Preparation Strategy
- Kerala PSC Scientific Officer Physics Syllabus 2027 PDF Download & Detailed Topics
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Kerala PSC Scientific Officer Frequently Asked Questions
What is the syllabus of Kerala PSC Scientific Officer Chemistry?
The Kerala PSC Scientific Officer Chemistry syllabus covers 10 modules across Inorganic Chemistry, Organic Chemistry, Physical Chemistry, Analytical Chemistry, Environmental Chemistry, Material Chemistry and Supramolecular Chemistry.
How many modules are there in the Scientific Officer Chemistry syllabus?
The detailed syllabus contains 10 modules, beginning with Inorganic Chemistry and progressing through Organic Chemistry, Physical Chemistry and interdisciplinary Chemistry areas.
Is the Kerala PSC Scientific Officer Chemistry syllabus postgraduate level?
The Kerala PSC Scientific Officer Chemistry syllabus covers advanced topics such as coordination chemistry, organometallic chemistry, reaction mechanisms, quantum chemistry, statistical thermodynamics, spectroscopy, electrochemistry, catalysis and materials chemistry. Candidates should therefore prepare at an advanced/postgraduate level.
Where can I download the Kerala PSC Scientific Officer Chemistry syllabus PDF?
Candidates should use the official Kerala PSC syllabus document applicable to the recruitment. For the 2027 recruitment, check the official Kerala PSC notification and syllabus once released.
What are the main topics in Scientific Officer Chemistry?
The major areas of Kerala PSC Scientific Officer Chemistry syllabus are Inorganic Chemistry, Organic Chemistry, Physical Chemistry, Analytical Chemistry, Environmental Chemistry, Material Chemistry and Supramolecular Chemistry.
Is Organic Chemistry included in the Scientific Officer Chemistry syllabus?
Yes. Organic Chemistry is covered in Modules 4, 5 and 6, including stereochemistry, reaction mechanisms, rearrangements, organic synthesis, photochemistry, pericyclic reactions, natural products, polymers, drug design and spectroscopy.
Is Physical Chemistry included in the KPSC Scientific Officer Chemistry syllabus?
Yes. Physical Chemistry is covered in Modules 7, 8 and 9, including thermodynamics, kinetics, electrochemistry, adsorption, quantum chemistry, statistical thermodynamics, group theory and spectroscopy.
Is the Kerala PSC Scientific Officer Chemistry syllabus the same as a general PSC Chemistry syllabus?
No. The Kerala PSC Scientific Officer Chemistry syllabus is much more specialised and includes advanced postgraduate-level Chemistry across Inorganic, Organic, Physical and applied areas. Candidates should follow the specific syllabus prescribed for the Scientific Officer post.
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