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CSIR NET Life Science Hindi Syllabus 2026, Exam Pattern

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📅 Updated On 2026-06-01✨ Update By Divya Mehra🌐 Hindi & English
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CSIR NET Life Science Hindi Syllabus 2026, Exam Pattern

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CSIR NET Life Science (Hindi) Exam - Hindi145 questions • 180 mins • 145 marks
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Combo PackageCSIR NET Life Science Hindi

CSIR NET Life Science Hindi

Combo - 1 (Hindi)

1. Online Mock Test Series in Hindi = 05 Tests.

2. Question Bank - 1500 Questions with Answer.

3. 1500 (+) Current Affairs MCQ with Answer PDF in Hindi.

4. 1000 (+) GK MCQ with Answer PDF Book in Hindi.
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Combo PackageCSIR NET Life Science Hindi

CSIR NET Life Science Hindi

Combo - 2 (Hindi)

1. Online Mock Test Series in Hindi = 07 Tests.

2. Question Bank - 1500 Questions with Answer.

3. 1500 (+) Current Affairs MCQ with Answer PDF in Hindi.

4. 1000 (+) GK MCQ with Answer PDF Book in Hindi.
₹201₹231
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Combo PackageCSIR NET Life Science Hindi

CSIR NET Life Science Hindi

Combo - 3 (Hindi)

1. Online Mock Test Series in Hindi = 07 Tests.

2. Question Bank - 1500 Questions with Answer.

3. Printed Material 07 Mock Test Papers with OMR Sheet.

4. 1500 (+) Current Affairs MCQ with Answer PDF in Hindi.

5. 1000 (+) GK MCQ with Answer PDF Book in Hindi.
₹621₹691
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Combo PackageCSIR NET Life Science Hindi

CSIR NET Life Science Hindi

Combo - 5 (Hindi)

1. Online Mock Test Series in Hindi = 07 Tests.

2. Question Bank - 1500 Questions with Answer.

3. Printed Material 07 Mock Test Papers with OMR Sheet.

4. EBook of CSIR NET Life Science (Hindi) (1000 MCQ) PDF Format in Hindi.

5. 1500 (+) Current Affairs MCQ with Answer PDF in Hindi.

6. 1000 (+) GK MCQ with Answer PDF Book in Hindi.
₹721₹881
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Combo PackageCSIR NET Life Science Hindi

CSIR NET Life Science Hindi

Combo - 5 (Hindi) (old)

1. Online Mock Test Series in Hindi - 05 Tests

2. Question Bank - 1500 Questions with Answer.
₹131₹161
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CSIR NET Life Science Hindi Syllabus 2026, Exam Pattern

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NET Life Science (Hindi) Syllabus 2026, CSIR NET Exam Pattern, CSIR NET Life Science Exam Date 2026

Detail Information about CSIR UGC NET has published notification 2026 for the recruitment of Life Science (Hindi). Those Candidates who are Interested to the following Exam and completed all Eligibility Criteria can read the Notification & Apply Online. In this page we provide the Complete Syllabus of this Recruitment with Latest Update Exam Pattern and the Exam Date also.

CSIR NET 2026 Exam Highlights
 
Exam Name CSIR NET (Council of Scientific and Industrial Research National Eligibility Test)
Conducting Body National Testing Agency (NTA)
Exam Level National
Exam Frequency Twice a year
Mode of Exam Online - CBT (Computer-Based Test)
Language/Medium of Exam English and Hindi
Exam Purpose To determine the eligibility of candidates for Junior Research Fellowship (JRF) and for Lectureship (LS)/ Assistant Professor in the universities and colleges of India
Official Website https://csirnet.nta.nic.in/webinfo/public/home.aspx

CSIR NET Life Science (Hindi) Syllabus 2026

Part A :
 
Numerical Ability :
 
1. Number and Simplification
2. Average
3. Quadratic Equations
4. Sequence and Series
5. Surd and Indices
6. Logarithms
7. Percentage
8. Profit and Loss
9. Simple Interest & Compound Interest
10. Partnership
11. LCM and HCF
12. Probability
13. Mensuration.
 
Reasoning :
 
1. Series Formation
2. Ranking and Arrangement
3. Puzzles
4. Coding-Decoding
5. Distance and Directions
6. Calendar and Clock
 
Data Interpretation, and Graphical Analysis :
 
1. Mean
2. Median & Mode
3. Measures of Dispersion
4. Graphical Analysis
5. Bar Graph
6. Line Graph
7. Pie-Chart
8. Tabulation
 
General Science :
 
1. Vitamins
2. Diseases and affected organ
3. Instruments and Innovation
 
Part B and C:
 
1. STRUCTURE AND FUNCTION OF BIOMOLECULES
 
A. Structure of atoms, molecules and chemical bonds.
B. Composition, structure and function of biomolecules (carbohydrates, lipids, proteins, nucleic acids and vitamins).
C. Stabilizing interactions (van der Waals, electrostatic, hydrogen bonding, hydrophobic interaction, etc.).
D. Principles of biophysical chemistry (pH, buffer, reaction kinetics, thermodynamics, colligative properties).
E. Bioenergetics, glycolysis, oxidative phosphorylation, coupled reactions, group transfer, biological energy transducers.
F. Principles of catalysis, enzymes and enzyme kinetics, enzyme regulation, mechanism of enzyme catalysis, isozymes
G. Conformation of proteins (Ramachandran plot, secondary structure, domains, motif and folds).
H. Conformation of nucleic acids (Structural characteristics of A, B and Z DNA; RNA conformation).
I. Stability of proteins and nucleic acids.
J. Metabolism of carbohydrates, lipids, amino acids, nucleotides and vitamins.
 
2. CELLULAR ORGANIZATION
 
A. Cell wall and cell membrane: structure and function
 
Cell wall, physical structure of model membranes in prokaryotes and eukaryotes, lipid bilayer, membrane proteins, diffusion, osmosis, ion channels, active transport, membrane pumps, mechanism of sorting and regulation of intracellular transport, electrical properties of membranes.
 
B. Structural organization and function of intracellular organelles
 
Nucleus and its organization and dynamics, mitochondria, Golgi bodies, lysosomes, endoplasmic reticulum, peroxisomes, plastids, vacuoles, chloroplast, structure & function of cytoskeleton and its role in motility.
 
C. Organization of genes and chromosomes
 
Operon, unique and repetitive DNA, interrupted genes, gene families, structure of chromatin and chromosomes, heterochromatin, euchromatin, transposons.
 
D. Cell division and cell cycle
 
Mitosis and meiosis, their regulation, steps in cell cycle, regulation and control of cell cycle, apoptosis, necrosis and autophagy.
 
E. Microbial Physiology
 
Growth kinetics, strategies of cell division, stress response, antimicrobial resistance (AMR).
 
3. FUNDAMENTAL PROCESSES
 
A. DNA replication, repair and recombination
 
Unit of replication, enzymes involved, replication origin and replication fork, fidelity of replication, extrachromosomal replicons, DNA damage and repair mechanisms, homologous and site-specific recombination.
 
B. RNA synthesis, processing and regulation
 
Mechanism and regulation of transcription, transcriptional inhibitors, transcription factors and machinery, transcription activators and repressors, RNA polymerases, capping, RNA processing, RNA editing, splicing, and polyadenylation, structure and function of different types of RNA, RNA transport, ribozyme, riboswitches, non-coding RNA.
 
C. Protein synthesis, processing and degradation
 
Ribosome, mechanism of translation and its regulation, translational inhibitors, posttranslational modification of proteins, protein trafficking and transport, protein degradation.
 
D. Control of gene expression at transcription and translation level
 
Regulation of gene expression in phages, viruses, prokaryotes and eukaryotes, role of chromatin in gene expression and gene silencing, epigenetic regulation.
 
4. CELL COMMUNICATION AND CELL SIGNALING
 
A. Cell signaling
 
Hormones and their receptors, cell surface receptors, signaling through G-protein coupled receptors, signal transduction pathways, second messengers, regulation of signaling pathways, bacterial and plant two-component systems, light-signaling in plants, bacterial chemotaxis and quorum sensing.
 
B. Cellular communication
 
General principles of cell communication, cell adhesion and roles of different adhesion molecules, gap junctions, extracellular matrix, integrins, neurotransmission and its regulation, regulation of haematopoiesis.
 
C. Innate and adaptive immune system
 
Cells and molecules involved in innate and adaptive immunity, antigens, antigenicity and immunogenicity, B and T cell epitopes, structure and function of antibody molecules, generation of antibody diversity, monoclonal antibodies, antibody engineering, antigenantibody interactions, MHC molecules, antigen processing and presentation, activation and differentiation of B and T cells, B and T cell receptors, humoral and cell- mediated immune responses, primary and secondary immune modulation, the complement system, Toll-like receptors, cell-mediated effector functions, inflammation, hypersensitivity and autoimmunity, immune response during bacterial, parasitic and viral infections, congenital and acquired immunodeficiencies, vaccines.
 
D. Host pathogen interaction
 
Recognition and entry processes of different pathogens like bacteria, viruses into animal and plant host cells, alteration of host cell behaviour by pathogens, virus-induced cell transformation, pathogen-induced diseases in animals and plants, cell-cell fusion in both normal and abnormal cells.
 
E. Cancer
 
Genetic rearrangements in progenitor cells, oncogenes, tumor suppressor genes, cancer and the cell cycle, virus-induced cancer, metastasis, interaction of cancer cells with normal cells, therapeutic interventions of uncontrolled cell growth.
 
5. DEVELOPMENTAL BIOLOGY
 
A. Basic concepts of development
 
Potency, commitment, specification, induction, competence, determination and differentiation, morphogenetic gradients, cell fate and cell lineages, stem cells, genomic equivalence and the cytoplasmic determinants, imprinting, mutants and transgenics in analysis of development.
 
B. Gametogenesis, fertilization and early development
 
Production of gametes, cell surface molecules in sperm-egg recognition in animals, zygote formation, cleavage, blastula formation, embryonic fields, gastrulation and formation of germ layers in animals.
 
Male gametophyte development, embryo sac development and double fertilization in plants, embryogenesis, establishment of symmetry in plants, seed formation, embryo and endosperm developmental dynamics and germination.
 
C. Morphogenesis and organogenesis in animals
 
Cell aggregation and differentiation in Dictyostelium, axes and pattern formation in
Drosophila, amphibia and chick; organogenesis - vulva formation in Caenorhabditis elegans, eye lens induction, limb development and regeneration in vertebrates, differentiation of neurons, post embryonic development - larval formation, metamorphosis; environmental regulation of normal development; sex determination.
 
D. Morphogenesis and organogenesis in plants
 
Organization of shoot and root apical meristem, shoot and root development, leaf development and phyllotaxy, transition to flowering, floral meristems, organogenesis and floral development.
 
E. Programmed cell death, aging and senescence in animals and plants
 
6. SYSTEM PHYSIOLOGY - PLANT
 
A. Photosynthesis
 
Light harvesting complexes, mechanisms of electron transport, photoprotective mechanisms, CO2 fixation - C3, C4 and CAM pathways.
 
B. Respiration and photorespiration
 
Citric acid cycle, plant mitochondrial electron transport and ATP synthesis, alternate oxidase, photorespiratory pathway.
 
C. Nitrogen metabolism
 
Nitrate and ammonium assimilation; amino acid biosynthesis, biological nitrogen fixation.
 
D. Plant hormones
 
Biosynthesis, storage, breakdown and transport, physiological effects and mechanisms of action.
 
E. Sensory photobiology
 
Light perception, structure, function and mechanisms of action of phytochromes, cryptochromes and phototropins, stomatal movement, photoperiodism and biological clock.
 
F. Solute transport and photoassimilate translocation
 
Uptake, transport and translocation of water, ions, solutes and macromolecules from soil, through cells, across membranes, through xylem and phloem, transpiration, mechanisms of loading and unloading of photoassimilates.
 
G. Secondary metabolites
 
Biosynthesis of terpenes, phenolics, alkaloids, phenylpropanoids, nitrogenous compounds and their roles, metabolic engineering in plants.
 
H. Stress physiology
 
Physiological and molecular responses of plants to biotic and abiotic stresses, innate immunity.
 
7. SYSTEM PHYSIOLOGY - ANIMAL
 
A. Blood and circulation
 
Blood corpuscles, haemopoiesis and formed elements, plasma function, blood volume, blood volume regulation, blood groups, haemoglobin, immunity, haemostasis.
 
B. Cardiovascular system
 
Comparative anatomy of heart structure, myogenic heart, specialized tissue, ECG – its principle and significance, cardiac cycle, heart as a pump, blood pressure, neural and chemical regulation of cardiovascular system.
 
C. Respiratory system
 
Comparison of respiration in different species, anatomical considerations, transport of gases, exchange of gases, waste elimination, neural and chemical regulation of respiration.
 
D. Nervous system
 
Neurons, action potential, gross neuroanatomy of the brain and spinal cord, central and peripheral nervous system, neural control of muscle tone and posture.
 
E. Sense organs:

Vision, hearing and tactile responses.
 
F. Excretory system
 
Comparative physiology of excretion, kidney, urine formation, urine concentration, waste elimination, micturition, regulation of water balance, blood volume, blood pressure, electrolyte balance, acid-base balance.
 
G. Thermoregulation:

Comfort zone, body temperature – physical, chemical, neural regulation, acclimatization.
 
H. Stress and adaptation
 
I. Digestive system:

Digestion, absorption, energy balance, BMR.
 
J. Endocrinology and reproduction:

Endocrine glands, basic mechanism of hormone action, hormones and diseases; reproductive processes, gametogenesis, ovulation, neuroendocrine regulation.
 
K. Concept of metaorganisms/holobionts:

Gut microbiome in physiology; study of gut microbiome; germ-free animals; gut-brain axis, dysbiosis, and disease
 
L. Interorgan communication and energy homeostasis; metabolic health and disorders
 
8. INHERITANCE BIOLOGY
 
A. Chromosomal and extrachromosomal inheritance
 
Principles of Mendelian inheritance, codominance, incomplete dominance, penetrance and expressivity, gene interactions, pleiotropy, genomic imprinting, linkage and cross-over, sexlinked inheritance, inheritance of mitochondrial and chloroplast genes, maternal inheritance.
 
B. Genes and mutations
 
Allele, multiple alleles, pseudoallele, complementation tests; Mutation types, causes and detection; mutant types – lethal, conditional, biochemical, loss of function, gain of function, dominant-negative; germinal verses somatic mutations.
 
C. Genetic analysis
 
Linkage maps, mapping with molecular markers in plants, animals and bacteria, tetrad analysis, gene transfer in bacteria: transformation, conjugation, transduction, sex-duction, fine structure analysis of gene, development of mapping population in plants.
 
D. Human genetics
 
Pedigree analysis, LOD score for linkage testing, karyotypes, genetic disorders.
 
E. Quantitative genetics
 
Population genetics and Hardy-Weinberg equilibrium, polygenic inheritance, heritability and its measurements, molecular mapping.
 
F. Structural and numerical alterations of chromosomes
 
Recombination, deletion, duplication, inversion, translocation, ploidy and their genetic implications.
 
9. EVOLUTION AND DIVERSITY OF LIFE FORMS
 
A. Evolution of Life and Life Forms
 
Origin of life and early evolution; Evolution of cellular structures, functions and multicellularity; Mechanisms of evolution - Natural selection, genetic drift, gene flow, and mutation; Mechanisms of speciation; Extinction events and their role in shaping biodiversity; Adaptive radiation and convergent evolution; Coevolution and evolutionary arms races; Human evolution.
 
B. Principles & Methods of Taxonomy
 
Concepts of species and hierarchical taxa, biological nomenclature, classical & quantitative methods of taxonomy of plants, animals and microorganisms.
 
C. Microbial Life
 
Bacteria and Archaea: diversity and ecological roles; Viruses: structure, replication, and impact on life; Economically and pathologically important microbes.
 
D. Protists
 
Algae; Protozoa; Slime molds and water molds; Ecological roles of protists.
 
E. Fungi
 
Diversity of fungal groups: chytrids, zygomycetes, glomeromycetes, ascomycetes, and basidiomycetes; Important fungal pathogens of plants and humans.
 
F. Plant Life
 
Evolution and diversity of land plants: bryophytes, ferns, gymnosperms, and angiosperms; Plant morphology, anatomy, and reproduction.
 
G. Animal Life
 
Evolutionary relationships and key characteristics of Invertebrates and Vertebrates.
 
10. ECOLOGY AND BEHAVIORAL BIOLOGY
 
A. Introduction to Ecology
 
Levels of organization- individual, population, community, ecosystem, biosphere; Abiotic and biotic ecological factors, Ecological adaptations.
 
B. Population Ecology
 
Population growth models- Exponential growth, logistic growth, density-dependent and density-independent factors, life tables, survivorship curves; Population dynamics- Age structure, sex ratio, life history strategies (r-selected vs. K-selected); MetapopulationsHabitat fragmentation, connectivity, and extinction risk.
 
C. Community Ecology
 
Community structure - Food webs, trophic levels, keystone species; Species interactions - Competition, predation, mutualism, parasitism; Succession- Primary and secondary succession, community stability.
 
D. Ecosystem Ecology
 
Energy flow in ecosystems- Primary production, trophic levels, energy pyramids; Biogeochemical cycles- Carbon, nitrogen, phosphorus, water cycles; Ecosystem services and human impacts.
 
E. Human Impacts on Ecosystems
 
Anthropogenic pressures: Land use and land-cover change; Climate change, pollution, invasive species.
 
F. Biodiversity and Conservation
 
Biodiversity and its importance; Threats to biodiversity; IUCN categories of threat; Conservation genetics; Population viability analysis (PVA); Ex-situ and in-situ conservation strategies; Community-based conservation and the role of indigenous knowledge; International and national conservation policies and legislation.
 
G. Act and policies
 
Biodiversity Act 2002; Agricultural biodiversity; International Treaty on Plant Genetic Resources for Food and Agriculture (PGRFA); Conservation strategies for seed gene bank; Climate change and conservation of plant genetic resources; Strategies on PPVFR and Biodiversity Acts.
 
H. Behavioural Ecology
 
Introduction to animal behaviour- Proximate and ultimate causes of behaviour; Foraging behaviour; Communication; Conflict and aggression; Migration, dispersal, and navigation; Social behaviour; Sexual selection and mating systems; Parental care.
 
11. BIOINFORMATICS AND COMPUTATIONAL BIOLOGY
 
A. Major Bioinformatic Resources
 
Sequence databases, gene expression databases, 3D structure database, pattern sequence databases.
 
B. Basic Concepts of Sequence Analysis
 
Database searches, BLAST and FASTA, sequence identity and similarity, definitions of homologues, orthologues, paralogues, repeat finding, scoring matrix, pairwise sequence alignments, multiple sequence alignments (MSA), application in taxonomy and phylogeny, comparative genomics.
 
C. Gene annotation
 
Prediction of gene function using homology, context, structures, networks; Genetic variationpolymorphism, deleterious mutations; Phylogenetics.
 
D. Molecular Modelling and Dynamics
 
3-D structure visualization and simulation, Basic concepts in molecular modeling, Molecular Mechanics, Force fields etc.
 
E. Classification and comparison of protein 3D structures
 
Anatomy of proteins – Hierarchical organization of protein structure, Secondary and tertiary structure prediction, homology/comparative modeling, fold recognition, threading approaches, and ab initio structure prediction methods, AI-based methods of structure prediction (eg. AlphaFold).
 
F. Drug design
 
Chemical databases like NCI /PUBCHEM, Fundamentals of Receptor-ligand interactions, Structure-based drug design, Ligand based drug design: Structure-Activity Relationship, QSARs and pharmacophores, in silico predictions of drug activity and ADMET.
 
G. Systems Biology
 
Data science applications in biology, health and drug discovery, mathematical modelling of metabolic pathways and disease, digital health, personalized medicine.
 
12. BIOCHEMICAL ENGINEERING AND INDUSTRIAL BIOTECHNOLOGY
 
A. Introductory Mathematics
 
Calculus review, Ordinary differential equations, Second and higher order differential equations, Linear algebra, Numerical methods.
 
B. Engineering Principles
 
Material and energy balance, Steady state energy and material balance, Properties of substances, Introduction to transport phenomena, momentum transfer, heat and mass transfer, Introduction to mass transfer equipment.
 
C. Thermodynamics in Biological Systems
 
First and second law of thermodynamics, Biological systems as open non-equilibrium systems, Failure of classical thermodynamics in describing biological processes, Concepts of thermodynamics flux and force, Concept of entropy production, Constitutive equations, Thermodynamics of coupled biochemical reactions, Thermodynamic analysis of oxidative phosphorylation, Glycolytic oscillations; biological clocks.
 
D. Bioprocess Engineering and Technology
 
Principles of microbial growth and factors affecting growth, Growth kinetics and substrate utilization in batch, fed-batch and continuous systems, Introduction to bioreactors: batch and fed-batch, plug flow, continuous, enzyme reactors, Sterilization, Mass and energy balance in microbial process-effects of dissolved oxygen, Mass transfer of oxygen, aeration and agitation, fluid rheology, Fermentation technology for antibiotics, organic acids, alcohol, bioplastics, vitamins, enzymes; biotransformation of steroids, Process flow sheet and process economics.
 
E. Enzymes and microbial technology
 
Enzymes in organic solvents and ionic liquids, biocatalysts, enzyme engineering, random and rational approach to protein engineering, Biocatalysis, techniques of immobilization of enzymes and whole cells: design, operation and kinetics of immobilized enzyme reactors, diffusional resistance and Thiele modulus.
 
F. Downstream processing in biotechnology
 
Biomass removal and disruption, Precipitation by salts, solvents, Membrane based purification, Adsorption and chromatography, Extraction (solvent, aqueous two-phase, super critical), Drying.
 
G. Bioprocess Plant Design
 
General design information, Process flow sheet, Scale-up and scale-down issues, Scale up of downstream processes. Selection and specifications of bioprocess equipment.
 
H. Metabolic Engineering and Synthetic Biology
 
13. ADVANCES IN BIOTECHNOLOGY
 
A. Recombinant DNA technology
 
Molecular cloning, expression of recombinant proteins, In vitro mutagenesis and deletion techniques, gene knock out in bacterial and eukaryotic organisms, genome editing techniques. Protein sequencing methods, DNA sequencing methods, strategies for genome sequencing and gene expression analysis.
 
B. Medical Biotechnology
 
Application of immunological principles (autoimmunity, transplantation, tumor immunology, stem cell therapy, cell-based vaccines), vaccines (Live, killed, attenuated, subunit, and recombinant nucleic acid vaccines) and diagnostics, adjuvants, cell therapy, stem cell therapy, immunotherapy, r-DNA based therapy, antibody engineering, phage display libraries, tissue engineering.
Stem cell technology: induced pluripotent stem cells, guided/directed differentiation methods; application in drug screening and disease biology; Organoid: Stem-cell based, selforganizing 3D models for disease and developmental biology.
Neurobiology: Electrophysiological studies of the brain, behavioural tests.
Medical devices and implants, Biosensors
 
C. Animal Biotechnology
 
Transgenic animals, animal breeding, conservation of germplasm, genetic health monitoring, molecular medicine and surgery, concept of molecular diagnosis of pathogens, cell cloning and selection, cell and tissue culture methods in biotechnological applications.
 
D. Agriculture Biotechnology
 
Transgenic plants, molecular approaches to diagnosis and strain identification; genomics and its application to agriculture, development of ESTs, molecular markers for plant genotyping and germplasm analysis, marker assisted breeding for various traits, foreground and background selection, gene introgression and pyramiding, non-gel based techniques for plant genotyping, impact of GE crops on biodiversity; tissue and cell culture methods in plants, plantibodies.
 
E. Marine Biotechnology
 
Important marine organisms, their biology and behaviour, marine resources assessment, Population study and marine environment protection, role of microbes in marine environment, microbial metabolites, seafood microbiology, marine pharmacology, fouling and corrosion, biofilms; oceanography
 
F. Environmental Biotechnology
 
Wastewater treatment systems, Pollution control, Environment friendly technologies: Biosurfactants, biofertilizers, biopesticides, microbially enhanced oil recovery, integrated waste management, biogas & biofuel from waste, bioremediation, phytoremediation.
 
14. METHODS IN BIOLOGY
 
A. Molecular Biology Techniques
 
Isolation, separation and analysis of biological macromolecules (DNA, RNA, proteins, carbohydrates and lipids), chromatography, electrophoresis and centrifugation.
 
B. Biophysical Methods
 
Spectroscopy (UV/visible, fluorescence, circular dichroism, NMR and ESR), molecular structure determination using X-ray diffraction, cryo-electron microscopy and NMR, Molecular analysis using light scattering, different types of mass spectrometry methods and surface plasma resonance.
 
C. Genomics, Transcriptomics, Proteomics and Metabolomics
 
Structure and organization of prokaryotic and eukaryotic genomes, Comparative genomics, Global gene expression analysis, Comparative transcriptomics, Differential gene expression; protein interaction analysis and mapping, targeted and untargeted metabolic profiling, DNA finger printing and its applications, DNA bar coding, Single-cell sequencing, single-cell omics.
 
D. Radiolabeling techniques
 
Detection and measurement of different types of radioisotopes normally used in biology, incorporation of radioisotopes in biological tissues and cells, molecular imaging of radioactive material, safety guidelines.
 
E. Histochemical and Immunotechniques
 
Antibody generation, Detection of molecules using ELISA, RIA, western blot, immunoprecipitation, flow cytometry and immunofluorescence microscopy, detection of molecules in living cells, in situ localization by techniques such as FISH and GISH.
 
F. Microscopic techniques
 
Visualization of cells and subcellular components by light microscopy and advanced microscopic techniques, resolving power of microscopes, microscopy of living cells, scanning and transmission microscopes, sample preparation techniques for microscopy.
 
G. Electrophysiological methods
 
Single neuron recording, patch-clamp recording, ECG, Brain activity recording, lesion and stimulation of brain, pharmacological testing, PET, MRI, fMRI, CAT.
 
H. Methods in field biology
 
Methods of estimating population density of animals and plants, ranging patterns through direct, indirect and remote observations, sampling methods in the study of behaviour, habitat characterization: ground and remote sensing methods.
 
I. Statistical Methods
 
Concepts of precision and accuracy in experimental measurements, signal to noise ratio, Measures of central tendency and dispersal; probability distributions (Binomial, Poisson and normal); Sampling distribution; Difference between parametric and non-parametric statistics; Confidence Interval; Errors; Levels of significance; Regression and Correlation; t-test; Analysis of variance; X2 test; basic introduction to multivariate statistics, etc.
 
J. IPR, Biosafety and Bioethics
 
Intellectual property rights, types of IP, Patent databases; Biological safety measures, biosafety levels, regulatory guidelines, animal ethics, research ethics, publication ethics, plagiarism, use of AI in research and publication.
 
* The Life Sciences question paper shall be divided into three parts, (A, B & C) as per syllabus & Scheme of Exam will contain 145 Multiple Choice Questions (MCQs).

* Life Sciences Part ‘A’ (20 Questions) shall be common to all subjects. This part shall contain questions pertaining to General Science with emphasis on logical reasoning, graphical analysis, analytical and numerical ability, quantitative comparison, series formation, puzzles etc. Candidates will be required to answer 15 in this part.

* Life Sciences Part ‘B’ (50 Questions) shall contain subject-related conventional Multiple Choice questions (MCQs), generally covering the topics given in the syllabus. Candidates will be required to answer 35 in part

* Life Sciences Part ‘C’ (75 Questions) shall contain higher value questions that may test the candidate’s knowledge of scientific concepts and/or application of the scientific concepts. The questions shall be of analytical nature where a candidate is expected to apply the scientific knowledge to arrive at the solution to the given scientific problem. Candidates will be required to answer 25 in part

* Questions in Parts “A” and “B” carry two marks each and Part “C” questions carry four marks each

CSIR NET Life Science (Hindi) Exam Pattern 2026

Duration : 180 Minutes

Negative Mark : 

Part A & B : - 0.5

Part C : - 1

 
S.No. Sections No. of Questions Total Marks
1. PART A 20 (Questions to be attempted: 15*2) 30
2. PART B 50 (Questions to be attempted: 35*2) 70
3. PART C 75 (Questions to be attempted: 25*4) 100
  Total 145 (Questions to be attempted: 75) 200

CSIR NET Exam Date 2026 : 17th & 18th July 2026

Starting Date of Application Form : 27th May 2026

Last Date of Application Form : 19th June 2026
FAQs

Csir NET Life Science (hindi) 2026 Exam Syllabus Frequently Asked Questions (FAQ's)

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In this article Page, we have provided the required syllabus of the CSIR NET Life Science Hindi exam.
Being familiar with CSIR NET Life Science Hindi Exam Pattern will help you understand the types of questions asked, difficulty level of the exam and important topics that require your keen attention. It will also acquaint you with the marking scheme and time allotted to each Topics.
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CSIR NET Life Science Hindi exam is not tough but it depends on your preparation. The candidates find the Subject not challenging. The dedicated preparation in the right direction will undoubtedly take you towards the goal.
The candidates must be well versed and acquainted with the syllabus and the exam pattern. Select the areas where improvement is required and schedule your preparation accordingly. To ace this exam, the applicants ought to maintain speed with high accuracy. Practicing previous years question papers will help you understand the exam pattern and the level of difficulty of the exam. You need to hone your strengths and improve upon your weaknesses. Toppersexam.com will aid you through the preparation and drive you to success. At Toppersexam.com, you can practice a complete set of test series along with a free CSIR NET Life Science Hindi mock test designed by our expert faculty.
The syllabus of CSIR NET Life Science Hindi Exam includes all topics that are important for the exam and are necessary for thorough preparation. Toppersexam provides a complete and updated syllabus with a detailed topic-wise breakdown.
You can download the complete CSIR NET Life Science Hindi Exam syllabus PDF from toppersexam.com. The PDF is available free and includes a detailed list of topics, section-wise subjects, and weightage for better exam preparation.
Yes, CSIR NET Life Science Hindi Exam has a topic-wise syllabus that includes all relevant subtopics. Toppersexam provides the detailed breakdown, helping candidates focus on high-weightage areas and avoid missing important sections.
Toppersexam ensures that the CSIR NET Life Science Hindi syllabus is updated for 2026. The latest syllabus reflects current exam trends, question patterns, and updated topics as per official notifications.
The CSIR NET Life Science Hindi Exam pattern includes details like the number of sections, total questions, marks distribution, and exam duration. Toppersexam provides a comprehensive guide on exam format, marking scheme, and question types.
Yes, the majority of questions in CSIR NET Life Science Hindi Exam are MCQs. Toppersexam provides practice MCQs with answers to help candidates understand the question pattern and improve accuracy.
Yes, questions are divided section-wise. Toppersexam provides a clear guide on how many questions are asked per section and their difficulty level for effective preparation.
Yes, Toppersexam offers online mock tests that strictly follow the CSIR NET Life Science Hindi Exam pattern. These mocks help candidates practice time management and get real-exam experience.
Yes, exam patterns can change over time. Toppersexam provides updated information on the latest exam pattern, question types, and section-wise changes.
Understanding the exam pattern is crucial for time management, question prioritization, and strategy planning. Toppersexam guides candidates on how to use the pattern effectively to maximize scores.
Start by dividing the syllabus into sections and prioritizing high-weightage topics. Toppersexam provides a preparation strategy, along with topic-wise tips and sample questions to make syllabus analysis easier.
Yes, focusing on high-weightage topics improves efficiency. Toppersexam highlights important topics, helping candidates prioritize sections for better performance.
Toppersexam provides a free downloadable PDF that includes both the syllabus and detailed exam pattern. This helps candidates study offline and revise efficiently.