GPAT Syllabus 2025 (Soon):Download PDF, Exam Pattern, Topic-Wise Analysis, Last 36 Years’ Question Papers, Month-Wise Preparation Plan

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Ratnam Agarwal

Content Writer| Mechanical Engineer| Engineering Specialist | Updated 3+ months ago

The Graduate Pharmacy Aptitude Test (GPAT) is a national-level entrance exam conducted by the National Testing Agency (NTA) for admission to postgraduate pharmacy programs (M. Pharm). GPAT 2025 syllabus will be released on the official NTA and NBEMS websites in the third week of April,2025. The syllabus will be made available in PDF format, along with the exam schedule and other key details for aspirants' convenience.

“For more Information on GPAT Syllabus, read the subsection 5.2 under the “Scheme of GPAT” section number 5 on page number 27 of the GPAT Information Bulletin.”

GPAT 2025 Syllabus: Topics-Wise Coverage
  • Pharmaceutical Chemistry (25-30%): Focus on organic reactions and medicinal chemistry.
  • Pharmaceutics (20-25%): Key areas include biopharmaceutics and dosage form design.
  • Pharmacology (25-30%): Emphasis on mechanisms of drug action and toxicology.
  • Pharmacognosy (15-20%): Pay attention to natural products and phytochemistry.

“Stay updated with the official NTA, NBEMS websites, and Collegedunia for the latest and most accurate information regarding the GPAT 2025 syllabus.”

GPAT Syllabus PDF

Research indicates that 85% of previous top scorers emphasized conceptual clarity in core pharmacy subjects and regular practice with mock exams, while 72% relied on analyzing trends in past GPAT question papers.
GPAT 2025 Trending News

GPAT Exam Pattern

GPAT Exam Pattern in Brief

GPAT Exam Pattern in Brief

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GPAT Syllabus Subject-Wise Analysis

GPAT 2025 Syllabus: Subject-Wise Breakdown with Expected Weightage Analysis

The GPAT syllabus 2025 covers core pharmacy topics like Pharmaceutical Chemistry, Pharmacology, Pharmaceutics, and more. Here’s the detailed breakdown for all headings from the GPAT syllabus, including past years’ (2024-2020) analysis and expected weightage for 2025 for all subjects.

GPAT Physical Chemistry Syllabus Analysis

The GPAT Physical Chemistry syllabus has maintained a steady weightage from 2020 to 2024, making preparation easier. The most important topic, thermodynamics (~2%), requires special attention to laws and equations. Calculation-intensive subjects like electrochemistry, kinetics, and colliding properties (~1% each) demand practice. The Refractive Index (~1%) is increasingly important for applications in pharmacy, even though it has a little weight. The consistent pattern allows students to focus on these crucial topics for the 2025 test.

GPAT Physical Chemistry Year-wise Weightage Analysis (2020-2024)

  • Consistent Pattern: GPAT Physical Chemistry topics have had steady weightage, making the syllabus reliable.

  • Thermodynamics Key Role: Thermodynamics consistently holds 2%, showing its importance.

  • Equal Focus: Topics like Electrochemistry, Ionic Equilibrium, and Kinetics have 1% each, giving them equal attention.

  • Basic Concepts Matter: Topics like Physical States and Colligative Properties, though at 1%, support other important topics.

  • No Surprises for 2025: Stable trends make preparation easier and more focused.

Topic 2020-2024 (%)
Composition & Physical States 1%
Colligative Properties 1%
Thermodynamics 2%
Refractive Index 1%
Solutions 1%
Electrochemistry 1%
Ionic Equilibrium 1%
Kinetics 1%

GPAT Physical Chemistry Expected Weightage for 2025

  • Thermodynamics: About 2% importance requires an in-depth understanding of principles, equations, and energy ideas.
  • Continuous Fair Coverage: Topics including Composition and Physical States, Colligative Properties, Electrochemistry, and Kinetics are expected to account for roughly 1% of the total material, necessitating sufficient preparation.
  • Refractive Index Will Gain Importance: Despite having a weight of only about 1%, the topic will become significant due to its practical uses in pharmacy.
  • Calculative Topics Will Require Focus: Problem-solving will remain critical for topics such as Colligative Properties, Ionic Equilibrium, and Solutions because to their calculative nature.
Key Topics Expected Weightage (2025)
Thermodynamics: First, second, and third laws of thermodynamics, thermochemical laws, Gibbs and Helmholtz equations, isothermic and adiabatic processes, enthalpy, heat capacity, and chemical potential. ~2%
Composition & Physical States of Matter: Intermolecular forces, Van Der Waal's equation, liquefaction of gases, aerosols, critical phenomenon, dipole moment, dielectric constant, and physical properties of matter. ~1%
Colligative Properties: Vapor pressure, Raoult's law, boiling point elevation, freezing point depression, osmotic pressure, molecular weight determination, and ideal vs real solutions. ~1%
Refractive Index: Specific and molar refractivity, refractometers, and their applications. ~1%
Solutions: Solubility, solubility curves, critical solution temperature, solute-solvent interactions, molarity, molality, mole fraction, and law of partitioning. ~1%
Electrochemistry: Electrolysis, Faraday’s law, Nernst equation, concentration cells, reference electrodes, standard potentials, and SHE (Standard Hydrogen Electrode). ~1%
Ionic Equilibrium: Theory of conductivity, equivalent conductance, mobility of ions, specific conductance, and applications in equilibrium analysis. ~1%
Kinetics: Order of reactions, rate laws derivation, rate constants, and molarities of reactions. ~1%

GPAT Physical Pharmacy Syllabus Analysis

The GPAT Physical Pharmacy syllabus has remained consistent in weightage from 2020 to 2024, ensuring balanced preparation. Each topic, such as Matter, Micromeritics, Surface Phenomenon, and Buffer Systems (~1% each), is equally important. Subjects such as Dispersion Systems, Complexation, and Solubility deserve attention due to their practical importance. Numerical subjects such as micromeritics, rheology, and buffer systems require problem-solving skills. Students can concentrate on basic concepts and applicable subjects to do well on the 2025 examination thanks to the steady trend.

GPAT Physical Pharmacy Year-wise Weightage Analysis (2020-2024)

  • Pattern Consistency: The topics included in the GPAT Physical Pharmacy exam have been given a regular weight, which makes the syllabus predictable and well-balanced.

  • Equal Importance: Topics like Matter, Micromeritics, and Surface Phenomenon each receive 1%, underscoring the importance of consistent preparation.

  • Practical Importance: Applied topics (~1% each) like complexation , solubility, and dispersion systems are crucial for pharmaceutical formulations.

  • Foundational Focus: Knowledge of fundamental subjects like buffer systems and the characteristics of matter is necessary for understanding more complex ideas (~1%).

  • Practical relevance: Topics such as complexation, solubility, and dispersion systems are important for pharmaceutical formulations (~1% each).

Key Topics 2020-2024 (%)
Matter, Properties of Matter 1%
Micromeritics and Powder Rheology 1%
Surface and Interfacial Phenomenon 1%
Viscosity and Rheology 1%
Dispersion Systems 1%
Complexation 1%
Buffer Systems 1%
Solubility 1%

GPAT Physical Pharmacy Expected Weightage for 2025

  • Balanced Weightage of topics : Each major area (Matter, Micromeritics, Surface Phenomenon, and Buffer Systems) is intended to get around 1% weightage, highlighting the importance of balanced preparation across all topics
  • Focus on Fundamental ideas: Topics such as states of matter, phase transitions, and buffer systems will continue to serve as the foundation for understanding complicated pharmaceutical concepts.
  • Practical relevance will dominate. Applied subjects such as Dispersion Systems, Complexation, and Solubility will require attention due to their practical applications in pharmaceutical formulations.
  • Calculation-Based Topics Will Be Critical: Micromeritics, Rheology, and Buffer Systems will most likely require strong problem-solving abilities, especially for numerical questions.
  • Interdisciplinary Applications Will Gain Focus: Topics such as Surface Phenomenon and Solubility will overlap with other disciplines, requiring conceptual clarity and application-oriented learning.
Key Topics Expected Weightage (2025)
Matter, Properties of Matter: States of matter, phase transitions, polymorphism, vapor pressure. ~1%
Micromeritics and Powder Rheology: Particle size, porosity, flow properties. ~1%
Surface and Interfacial Phenomenon: Surface tension, adsorption, detergency. ~1%
Viscosity and Rheology: Newtonian and non-Newtonian systems, thixotropy. ~1%
Dispersion Systems: Colloids, suspensions, emulsions, sedimentation. ~1%
Complexation: Classification, preparation, applications. ~1%
Buffer Systems: Equations, capacity, isotonicity. ~1%
Solubility: Dielectric constant, solvation, distribution coefficient. ~1%

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GPAT Organic Chemistry Syllabus Analysis

GPAT Organic Chemistry has maintained a steady weightage from 2020 to 2024, making preparation easier and more predictable. More focus is needed on major topics including stereochemistry, heterocyclic chemistry, and carbonyl chemistry (~2% each). Additional topics like Aromaticity, Protection/Deprotection of Groups, and General Principles (~1% each) are equally important. For their uses, practical subjects like carbohydrates and amino acids (~1%) are crucial.

GPAT Organic Chemistry Year-wise Weightage Analysis (2020-2024)

  • Consistent Patterns: The weightage of organic chemistry topics has been stable over the years, indicating predictable trends for GPAT.

  • Core Topics Steady Across Years: Carbonyl and Heterocyclic Chemistry, as well as Stereochemistry, have consistently held higher weightage compared to other topics.

  • Importance of Comprehensive Preparation: All topics hold uniform distribution, emphasizing the need for thorough understanding rather than selective focus
Key Topics 2020-2024 (%)
Carbonyl Chemistry 2%
Heterocyclic Chemistry 2%
Stereochemistry 2%
General Principles 1%
Different Classes of Compounds 1%
Protection and Deprotection of Groups 1%
Aromaticity & Chemistry of Aromatic Compounds 1%
Aromatic Classes 1%
Bridged Rings 1%
Kinetic & Thermodynamic Control 1%
Carbohydrates 1%
Amino Acids & Proteins 1%
Pericyclic Reactions 1%

GPAT Organic Chemistry Expected Weightage for 2025.

  • Important Topics with More Weight: Stereochemistry, Heterocyclic Chemistry, and Carbonyl Chemistry will have about 2% of the total weight and need more preparation.
  • Focus on Basics: Topics like General Principles, Compound Classes, and Aromatic Chemistry, each with ~1% weightage, demand continuous preparation.
  • Real-World Applications: Because of their practical application in pharmaceuticals, concepts such as protection and deprotection, amino acids and proteins, and pericyclic processes will be important.
  • Solving problems: For kinetics, thermodynamic control, and carbohydrates, calculation and reaction-based questions will be important.
Key Topics Expected Weightage (2025)
Carbonyl Chemistry: Group conversions, Michael addition, Mannich condensation, rearrangements. ~2%
Heterocyclic Chemistry: Nomenclature, synthesis of O, S, N-containing rings, fused systems. ~2%
Stereochemistry: Chirality, R/S configuration, conformations, stereoisomers. ~2%
General Principles: Classification, hybridization, bond properties, resonance, and hyperconjugation. ~1%
Different Classes of Compounds: Alkanes, alkenes, alkynes, alcohols, aldehydes, ketones, carboxylic acids. ~1%
Protection and Deprotection of Groups: Functional group protection strategies. ~1%
Aromaticity & Chemistry of Aromatic Compounds: Huckel’s rule, substitution reactions, benzyne mechanism. ~1%
Aromatic Classes: Phenolic compounds, aromatic amines, diazonium salts, nitro-compounds, ethers. ~1%
Bridged Rings: Nomenclature and examples like bicyclic alkanes, hexamine. ~1%
Kinetic & Thermodynamic Control: Sulfonation, alkylation of enamines. ~1%
Carbohydrates: Structure, reactions, interconversions, mutarotation. ~1%
Amino Acids & Proteins: Preparation methods, peptide bond formation, sequencing. ~1%
Pericyclic Reactions: HOMO-LUMO, Diels-Alder reaction, sigmatropic rearrangements. ~1%

GPAT Pharmaceutical Chemistry Syllabus Analysis

The GPAT Pharmaceutical Chemistry syllabus has been consistent from 2020 to 2024, making it predictable for students. Major topics that require comprehensive study include pharmaceutical inorganic chemistry, antibiotics, and antimicrobial drugs (around 3% each). Equal attention must be paid to topics such as neurological drugs, steroids, and adrenaline agents (~2% each). Emerging areas like QSAR and Combinatorial Chemistry (~1%) highlight advancements in drug design. 

GPAT Pharmaceutical Chemistry Year-wise Weightage Analysis (2020-2024)

  • Consistent Weightage for Core Topics: Topics like Pharmaceutical Inorganic Chemistry, Antimicrobial Drugs, and Antibiotics (~3%) have maintained stable weightage.
  • Balanced Coverage for Therapeutic Classes: Adrenergic Drugs, Steroids, and Neurological Agents (~2% each) have equal focus..
  • Focus on Emerging Topics: Niche areas like QSAR and Combinatorial Chemistry (~1%) reflect advancements in drug design and personalized medicine.
  • Thorough Preparation Required: Stable trends suggest the need for comprehensive preparation rather than selective study approaches.
Key Topics 2020-2024 (%)
Pharmaceutical Inorganic Chemistry 3%
Therapeutic Classes of Drugs 2%
Antimicrobial Drugs 3%
Antibiotics 3%
Steroids 2%
Adrenergic and Cholinergic Drugs 2%
Neurological and Neuromuscular Agents 2%
Anti-Hypertensives and Cardiovascular Drugs 2%
QSAR and Drug Design 1%
Asymmetric Synthesis 1%
Combinatorial Chemistry 1%

GPAT Pharmaceutical Chemistry Expected Weightage for 2025.

  • Consistent Weighting for Core Topics: The relevance of topics like pharmaceutical inorganic chemistry, antibiotics, and antimicrobial drugs (~3%) in GPAT can be seen by their consistent weightage.
  • Equitable Attention to Therapeutic Classes: Adrenergic Substances, Steroids, and Neurological Agents (~2% each) receive equal attention, emphasizing their constant applicability in examinations.
  • Emphasis on Emerging Topics: Advances in drug design and personalized treatment are reflected in specialised fields such as QSAR and Combinatorial Chemistry (~1%).
Key Topics Expected Weightage (2025)
Pharmaceutical Inorganic Chemistry: Impurities, limit tests, monographs, isotopes, dentifrices, anticaries agents. ~3%
Antimicrobial Drugs: Antimalarials, antifungal agents, antivirals, antibacterial sulpha drugs. ~3%
Antibiotics: Penicillins, cephalosporins, beta-lactam antibiotics, macrolides, tetracyclines. ~3%
Therapeutic Classes of Drugs: Anesthetics, antiseptics, anticoagulants, coagulants, laxatives, anti-diarrheal agents. ~2%
Steroids: Corticosteroids, sex steroids, anabolic steroids, anti-inflammatory steroids. ~2%
Adrenergic and Cholinergic Drugs: Agonists, antagonists, neurotransmitter functions. ~2%
Neurological and Neuromuscular Agents: Antiepileptics, neuroleptics, anti-Parkinson’s agents. ~2%
Anti-Hypertensives and Cardiovascular Drugs: Hypertensive agents, diuretics, anti-anginals. ~2%
QSAR and Drug Design: Quantitative structure-activity relationship, Hansch analysis, substituent constants. ~1%
Asymmetric Synthesis: Chirality, enantioselectivity, asymmetric synthesis examples like captopril. ~1%
Combinatorial Chemistry: Solid-phase synthesis, linkers, mix and split methods. ~1%

GPAT Pharmaceutics Syllabus Analysis

The GPAT Pharmaceutics syllabus has stayed the same from 2020 to 2024, making it easier to prepare. Important topics like Dosage Forms, GMP, and Tablets (~3% each) are very important and need extra focus. Topics like Parenterals, Aerosols, and Preformulation (~2% each) also need equal attention. New topics like Novel Drug Delivery Systems and Prolonged Action Pharmaceuticals (~2%) show the latest developments in pharmacy. This steady pattern helps students plan their studies for the 2025 exam.

GPAT Pharmaceutics Year-wise Weightage Analysis (2020-2024)

  • Consistency in Core Topics: Dosage forms, GMP, and tablets consistently hold higher weightage (~3%) across years, indicating their foundational importance.
  • Balanced Weightage Across Categories: Topics like parenterals, aerosols, and preformulation have shown steady representation (~2%), reflecting their significance in the GPAT syllabus.
  • Minimal Variation: The stable trend across years suggests a predictable focus, enabling targeted preparation for high-yield topics.
  • Emerging Trends: Increased relevance of novel drug delivery systems and prolonged action pharmaceuticals (~2%) aligns with advancements in the industry.
Key Topics 2020-2024 (%)
Pharmacy Profession & Introduction to Pharmaceuticals 2%
Dosage Forms and Drug Delivery Systems 3%
Pharmaceutical Plant Layout and Design 2%
Dosage Form Additives and Necessities 3%
Powders and Capsules 2%
Tablets: Formulation, Coating, and Troubleshooting 3%
Parenterals and Sterile Products 3%
Suspensions and Emulsions 2%
Suppositories, Semisolids, and Liquids 2%
Pharmaceutical Aerosols 2%
Ophthalmic Preparations 1%
Preformulation and Stability Studies 2%
Prolonged Action Pharmaceuticals 2%
Novel Drug Delivery Systems 2%
GMP, Validation, and Packaging Materials 3%
Cosmetics and Pilot Plant Scale-Up Techniques 2%

GPAT Pharmaceutics Expected Weightage for 2025

  • Emphasis Will Be on Dosage Forms: Pharmaceutics will continue to revolve around topics including dosage forms, additives, and delivery systems (~3%).
  • Extensive Coverage Will Continue: Industrial and technological improvements will involve novel medication delivery technologies (~2-3%), prolonged action pharmaceuticals, and plant structure.
  • Regulatory and Quality Aspects Will Remain Important: GMP, validation, and packaging materials (~3%) will prioritize adherence to regulations in the manufacturing of pharmaceuticals.
  • Specialized Topics Will Be Moderately Important: Aerosols, cosmetics, and ophthalmic preparations (~1-2%) will continue to be specialized but significant topics.
Key Topics Expected Weightage (2025)
Pharmacy Profession & Introduction to Pharmaceuticals ~2%
Dosage Forms and Drug Delivery Systems ~3%
Pharmaceutical Plant Layout and Design ~2%
Dosage Form Additives and Necessities ~3%
Powders and Capsules ~2%
Tablets: Formulation, Coating, and Troubleshooting ~3%
Parenterals and Sterile Products ~3%
Suspensions and Emulsions ~2%
Suppositories, Semisolids, and Liquids ~2%
Pharmaceutical Aerosols ~2%
Ophthalmic Preparations ~1%
Preformulation and Stability Studies ~2%
Prolonged Action Pharmaceuticals ~2%
Novel Drug Delivery Systems ~2%
GMP, Validation, and Packaging Materials ~3%
Cosmetics and Pilot Plant Scale-Up Techniques ~2%

GPAT Pharmacology Syllabus Analysis

Major topics like Chemotherapy, CNS Pharmacology, and General Pharmacology (~5-6% each) are the most important and need detailed preparation. Topics like Peripheral Nervous System, Endocrine System, and Drugs for Urinary and Respiratory Systems (~3-4%) are also important. Smaller topics like Chronopharmacology (~1%) and Toxicology (~2%) are steady and important for full syllabus coverage.

GPAT Pharmacology Year-wise Weightage Analysis (2020-2024)

  • Consistent Topics: Core areas like Chemotherapy, CNS Pharmacology, and General Pharmacology (~5-6%) have consistently held high weightage across years.
  • Balanced Representation: Peripheral and Endocrine Pharmacology, along with Drugs Acting on the Urinary and Respiratory Systems (~3-4%), show steady weightage, indicating their importance in scoring well.
  • Stable Trends: Minimal variation in topic weightage over the years highlights a predictable pattern, enabling efficient revision.
  • Specialized Focus: Niche topics like Chronopharmacology (~1%) and Toxicology (~2%) remain consistent but are crucial for full syllabus coverage.
Key Topics 2020-2024 (%)
General Pharmacology 5%
Neurohumoral Transmission 4%
Pharmacology of Peripheral Nervous System 3%
Pharmacology of Central Nervous System 5%
Pharmacology of Cardiovascular System 5%
Drugs Acting on Urinary System 2%
Drugs Acting on Respiratory System 3%
Pharmacology of Endocrine System 4%
Chemotherapy 6%
Autacoids and Their Antagonists 3%
Drugs Acting on the Gastrointestinal Tract 3%
Chronopharmacology 1%
Immunopharmacology 2%
Vitamins & Minerals 2%
Principles of Toxicology 2%

GPAT Pharmacology Expected Weightage for 2025

  • General Pharmacology Will Dominate: Topics like pharmacodynamics, pharmacokinetics, and drug development will need a lot of focus, as they make up just about 5% of the total weightage.
  • The Endocrine and Neurohumoral Systems Will Be Important: Pharmacology of the Endocrine System (~4%) and Neurohumoral Transmission (~4%) will continue to be key areas.
  • High Weightage for Cardiovascular Pharmacology and CNS: Both fields are projected to account for around 5%, highlighting their importance in pharmaceutical mechanisms and therapy.
  • Chemotherapy Will Take the Lead: Due to their greater weight, topics including antibiotics, tuberculosis, and AIDS (~6%) will require more attention.
  • Moderate Emphasis on Specialized Topics: Topics such as GI Pharmacology, Autacoids, and the Respiratory System (~3% each) will remain pertinent but need well-rounded preparation.
Key Topics Expected Weightage (2025)
General Pharmacology (Pharmacodynamics, Pharmacokinetics, Adverse Drug Reactions, Drug Development) ~5%
Neurohumoral Transmission (Autonomic and CNS) ~4%
Pharmacology of Peripheral Nervous System ~3%
Pharmacology of Central Nervous System ~5%
Pharmacology of Cardiovascular System ~5%
Drugs Acting on Urinary System ~2%
Drugs Acting on Respiratory System ~3%
Pharmacology of Endocrine System ~4%
Chemotherapy (Antibiotics, Tuberculosis, AIDS, and Malignancy) ~6%
Autacoids and Their Antagonists ~3%
Drugs Acting on the Gastrointestinal Tract ~3%
Chronopharmacology ~1%
Immunopharmacology ~2%
Vitamins & Minerals ~2%
Principles of Toxicology ~2%

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GPAT Pharmacognosy Syllabus Analysis

The GPAT Pharmacognosy Syllabus Analysis highlights consistent trends in key topics like Alkaloids, Volatile Oils, and Phytoconstituents (~4% weightage), emphasizing their importance. Topics such as Herbal Formulations, Glycosides, and Resinous Drugs (~3%) show steady relevance, while niche areas like Herbal Cosmetics and Patents (~1-2%) demand focused preparation. This concise weightage overview aids in targeted study planning for GPAT.

GPAT Pharmacognosy Year-wise Weightage Analysis (2020-2024)

  • Stable Trends: Core topics like Alkaloids, Volatile Oils, and Phytoconstituents have consistently held high weightage (~4%).
  • Balanced Distribution: Topics such as Herbal Formulations, Resinous Drugs, and Glycosides (~3%) show steady representation.
  • Specialized Topics: Areas like Traditional Herbal Drugs, Patents, and Herbal Cosmetics (~1-2%) remain consistent but niche, requiring focused preparation.
Key Topics 2020-2024 (%)
Introductory Pharmacognosy 3%
Classification of Crude Drugs 2%
Factors Influencing Quality of Crude Drugs 3%
Techniques in Microscopy 2%
Phytoconstituents 4%
Principles of Plant Classification 3%
Pharmaceutical Aids 2%
Animal Products 2%
Plant Products 2%
Toxic Drugs 1%
Enzymes 2%
Natural Pesticides 1%
Adulteration and Evaluation of Crude Drugs 2%
Quantitative Microscopy 1%
Biogenetic Pathways 3%
Carbohydrates and Lipids 2%
Tannins 1%
Volatile Oils 4%
Resinous Drugs 3%
Glycosides 3%
Alkaloids 4%
Extraction and Isolation Techniques 2%
Phytopharmaceuticals 3%
Quality Control and Standardization of Herbal Drugs 3%
Herbal Formulations 2%
Worldwide Trade of Crude Drugs 1%
Herbal Cosmetics 1%
Traditional Herbal Drugs 2%
Plant-Based Industries and Research Institutes in India 1%
Patents 1%
Ayurvedic System of Medicine 3%
Homeopathic System of Medicine 2%

GPAT Pharmacognosy Expected Weightage for 2025

  • Phytoconstituents and Volatile Oils Are Key: Topics like Alkaloids, Carbohydrates, and Volatile Oils (~4% each) will need focused preparation.
  • Core Areas Stay Important: Subjects like Biogenetic Pathways, Glycosides, and Quality Control (~3% each) will remain essential for understanding basics.
  • Practical Topics Get Moderate Focus: Areas like Extraction, Pharmaceutical Aids, and Herbal Formulations (~2% each) will help in practical applications.
  • Small but Important Topics: Topics like Adulteration, Herbal Cosmetics, and Patents (~1% each) will still require attention for niche knowledge.
Key Topics Expected Weightage (2025)
Introductory Pharmacognosy ~3%
Classification of Crude Drugs ~2%
Factors Influencing Quality of Crude Drugs ~3%
Techniques in Microscopy ~2%
Phytoconstituents (Carbohydrates, Proteins, Alkaloids, etc.) ~4%
Principles of Plant Classification ~3%
Pharmaceutical Aids (Starches, Gums, Oils) ~2%
Animal Products ~2%
Plant Products (Bitters, Sweeteners, etc.) ~2%
Toxic Drugs ~1%
Enzymes (Sources, Preparation, Uses) ~2%
Natural Pesticides ~1%
Adulteration and Evaluation of Crude Drugs ~2%
Quantitative Microscopy ~1%
Biogenetic Pathways (TCA Cycle, Shikimic Acid Pathway, etc.) ~3%
Carbohydrates and Lipids ~2%
Tannins ~1%
Volatile Oils ~4%
Resinous Drugs ~3%
Glycosides ~3%
Alkaloids ~4%
Extraction and Isolation Techniques ~2%
Phytopharmaceuticals ~3%
Quality Control and Standardization of Herbal Drugs ~3%
Herbal Formulations ~2%
Worldwide Trade of Crude Drugs ~1%
Herbal Cosmetics ~1%
Traditional Herbal Drugs ~2%
Plant-Based Industries and Research Institutes in India ~1%
Patents (Herbal and Natural Products) ~1%
Ayurvedic System of Medicine ~3%
Homeopathic System of Medicine ~2%

GPAT Pharmaceutical Analysis Syllabus Breakdown

Main topics like Spectroscopy and Chromatography (~4% each) are very important and need thorough preparation. Topics like Oxidation-Reduction Titrations, Acid-Base Titrations, and Flame Photometry (~2% each) are also key and should be covered well. Smaller topics like Gravimetry, Nephelometry, and Calibration of Instruments (~1% each) are steady but need only basic preparation.

GPAT Pharmaceutical Analysis Year-wise Weightage Breakdown (2020-2024)

  • Stable Trends: Core topics like Spectroscopy, Chromatography, and Oxidation-Reduction Titrations consistently hold significant weightage (~4% and ~2%, respectively).
  • Balanced Distribution: Topics such as Acid-Base Titrations, Flame Photometry, and Complexometric Titrations (~2%) show steady representation.
  • Specialized Topics: Areas like Gravimetry, Nephelometry, and Calibration of Instruments (~1%) remain consistent but niche, requiring minimal preparation effort.
Key Topics 2020-2024 (%)
Importance of Quality Control in Pharmacy 1%
Acid-Base Titrations 2%
Non-Aqueous Titrations 1%
Oxidation-Reduction Titrations 2%
Precipitation Titrations 1%
Complexometric Titrations 2%
Gravimetry 1%
Extraction Techniques 1%
Potentiometry 1%
Miscellaneous Methods of Analysis 2%
Spectroscopy (UV-Vis, IR, NMR, Mass Spectrometry) 4%
Flame Photometry and Atomic Absorption Spectrometry 2%
Chromatography (TLC, HPTLC, HPLC, GC) 4%
Polarography 1%
Nephelometry and Turbidimetry 1%
Statistical Treatment to Experimental Data 1%
Calibration of Instruments 1%

GPAT Pharmaceutical Analysis Expected Weightage for 2025

  • Spectroscopy and Chromatography Will Stand out: UV-Vis, IR, NMR, and HPLC will all need in-depth attention, with each topic receiving about 4% of the overall weightage.
  • Constant Attention to Basic Techniques: For preparation, subjects such as Acid-Base Titrations, Oxidation-Reduction Titrations, and Miscellaneous Analytical Methods (~2% each) will continue to be crucial.
  • Specialized techniques: Such as Flame Photometry, Atomic Absorption Spectrometry, and Complexometric Titrations are moderately important for practical understanding (~2% each).
  • Niche Topics Will Need Lesser Work: Compared to high-weightage topics, subjects like gravimetry, nephelometry, and instrument calibration (~1% each) will be relevant but require less preparation
Key Topics Expected Weightage (2025)
Importance of Quality Control in Pharmacy ~1%
Acid-Base Titrations ~2%
Non-Aqueous Titrations ~1%
Oxidation-Reduction Titrations ~2%
Precipitation Titrations ~1%
Complexometric Titrations ~2%
Gravimetry ~1%
Extraction Techniques ~1%
Potentiometry ~1%
Miscellaneous Methods of Analysis (Diazotization, Kjeldahl, Karl Fisher, etc.) ~2%
Spectroscopy (UV-Vis, IR, NMR, Mass Spectrometry) ~4%
Flame Photometry and Atomic Absorption Spectrometry ~2%
Chromatography (TLC, HPTLC, HPLC, GC) ~4%
Polarography ~1%
Nephelometry and Turbidimetry ~1%
Statistical Treatment to Experimental Data ~1%
Calibration of Instruments ~1%

GPAT Biochemistry Syllabus Analysis

Main topics like Metabolism of Carbohydrates, Proteins, and Lipids, along with Enzymes and Biological Oxidations (~2% each), are consistently important and require thorough preparation. Topics like Nucleic Acids and Vitamins (~2% each) are also key and should be well-covered. Smaller topics like Hereditary Diseases and Cell Structure (~1% each) are simple and scoring but need minimal effort.

GPAT Biochemistry Year-wise Weightage Analysis (2020-2024)

  • Consistent Topics: Metabolism-related topics (Carbohydrates, Proteins, Lipids) and key biochemical processes (Enzymes, Biological Oxidations) have consistently appeared with a stable weightage (~2% each year).
  • Stable Trends: Topics like Nucleic Acids and Vitamins remain steady in representation (~2% annually), reinforcing their importance in exam preparation.
  • Niche Topics: Hereditary Diseases and Cell Structure carry low weightage (~1%), but questions from these areas are generally straightforward and can be scoring.
Key Topics 2020-2024 (%)
Cell Structure and Functions 1%
Carbohydrates: Types, Functions, Metabolism 2%
Proteins: Types, Functions, Digestion, Urea Cycle 2%
Lipids: Types, Digestion, Beta-Oxidation, Cholesterol Biosynthesis, Ketone Bodies 2%
Vitamins: Classification, Biochemical Role, Deficiency Symptoms 2%
Biological Oxidation and Reductions 2%
Enzymes: Classification, Kinetics, Michaelis-Menton Equation, Inhibition 2%
Nucleic Acids: DNA/RNA Structure, Central Dogma, Transcription, Translation 2%
Hereditary Diseases 1%

GPAT Biochemistry Expected Weightage for 2025

  • Topics Concerning Metabolism Will Dominate: Carbohydrates, proteins, and lipids (around 2% each) will require an in-depth study of biochemical processes and metabolism.
  • Equitable Representation of Biochemical Processes: Vitamins, Enzymes, and Biological Oxidations (about 2% each) will remain essential for preparation.
  • Moderate Focus on Molecular Biology: Nucleic acids and transcription and translation (~2%) will continue to be important.
  • Specialized Subjects Will Need Little Work: Less preparation will be needed for topics like Cell Structure, Functions, and Hereditary Diseases (~1% each), but they will still be relevant.
Key Topics Expected Weightage (2025)
Cell Structure and Functions ~1%
Carbohydrates: Types, Functions, Metabolism (Glycogenesis, Glycogenolysis, HMP Shunt, etc.) ~2%
Proteins: Types, Functions, Digestion, Urea Cycle ~2%
Lipids: Types, Digestion, Beta-Oxidation, Cholesterol Biosynthesis, Ketone Bodies ~2%
Vitamins: Classification, Biochemical Role, Deficiency Symptoms ~2%
Biological Oxidation and Reductions: ETC, Oxidative Phosphorylation ~2%
Enzymes: Classification, Kinetics, Michaelis-Menton Equation, Inhibition ~2%
Nucleic Acids: Types, DNA/RNA Structure, Central Dogma, Transcription, Translation ~2%
Hereditary Diseases ~1%

GPAT  Biotechnology Syllabus Analysis

Important topics like Recombinant DNA Technology (~3%) and Fermentation Technology (~2%) are steady and need proper preparation. Topics like PCR, Gene Therapy, and Cell Culture (~2% each) are also consistent and should be studied well. Smaller topics like Plant Cell Culture and Gene Transfer Techniques (~2% each) are reliable and should not be missed.

GPAT Biotechnology Year-wise Weightage Analysis (2020-2024).

  • Stable Trends: Topics like Recombinant DNA Technology and Fermentation Technology consistently appear with stable weightage (~3% and ~2%, respectively) and PCR, Gene Therapy, and Cell Culture Techniques too have maintained a steady weight (~2% annually), indicating their integral role in biotechnology.
  • Balanced Representation: Each topic has been consistently represented with no significant year-to-year fluctuations, ensuring predictable preparation focus.
Key Topics 2020-2024 (%)
Plant Cell and Tissue Culture 2%
Gene Transfer Techniques 2%
Animal Cell Culture 2%
Fermentation Technology and Industrial Microbiology 2%
Recombinant DNA Technology 3%
PCR and Its Applications 2%
Human Gene Therapy 2%

GPAT Biotechnology Expected Weightage for 2025

  • Recombinant DNA Technology Shall Dominate: Topics like restriction enzymes, cloning, and DNA vectors will need careful preparation, as they will account for about 3% of the total weight.
  • Essential Techniques Will Remain Relevant: Fields such as Fermentation Technology, Animal Cell Culture, and Plant Cell Culture (~2% each) will maintain consistent coverage.
  • Moderate Emphasis on Molecular Methods: To fully understand advanced applications, topics like PCR, Gene Transfer Techniques, and Human Gene Therapy (~2% each) will continue to be crucial.
  • Practical Applications Will Attract Attention: Due to their practical applications, industrial microbiology, somatic hybridization, and germplasm conservation (~2%) will continue to be important.
Key Topics Expected Weightage (2025)
Plant Cell and Tissue Culture: Cell structure, somatic hybridization, secondary metabolite production ~2%
Gene Transfer Techniques: Methods, applications, and germplasm conservation ~2%
Animal Cell Culture: Mediums, cell lines, cloning, transgenic animals ~2%
Fermentation Technology and Industrial Microbiology: Fermenter design, monitoring, product recovery ~2%
Recombinant DNA Technology: Restriction enzymes, cloning, DNA vectors, expression systems ~3%
PCR and Its Applications: Methodology and uses ~2%
Human Gene Therapy: Concept, drug delivery systems, and applications ~2%
GPAT Subject-Wise Syllabus Topics

GPAT 2025 Topic and Subject-Wise Syllabus (Expected)

The GPAT syllabus is comprehensive, covering nineteen subjects aligned with the four-year BPharma curriculum. Below is the detailed breakdown of the syllabus by subject and topic:

GPAT Syllabus Key Topics
Physical Chemistry
  • Composition & Physical States of Matter: Intermolecular forces, Van der Waals equation, liquefaction of gases, aerosols.
  • Colligative Properties: Vapor pressure, Raoult's law, boiling point elevation, freezing point depression, osmotic pressure.
  • Thermodynamics: Laws of thermodynamics, Gibbs and Helmholtz equations, enthalpy, chemical potential.
  • Refractive Index: Specific and molar refractivity, refractometers.
  • Solutions: Solubility, solute-solvent interactions, partitioning, molarity, molality.
  • Electrochemistry: Electrolysis, Nernst equation, concentration cells, reference electrodes.
  • Ionic Equilibrium: Conductivity, specific conductance, equivalent conductance.
  • Kinetics: Reaction rates, derivation of rate laws.
Physical Pharmacy
  • Matter & Properties: States of matter, polymorphism, latent heat, vapor pressure.
  • Micromeritics and Powder Rheology: Particle size, surface area, porosity.
  • Surface and Interfacial Phenomenon: Surface tension, adsorption, detergency.
  • Viscosity and Rheology: Newtonian and non-Newtonian systems, thixotropy.
  • Dispersion Systems: Colloids, suspensions, emulsions.
  • Complexation: Preparation, analysis, applications.
  • Buffers: Buffer capacity, pharmaceutical systems, isotonic solutions.
  • Solubility: Solubility curves, effects of pH and co-solvents.
Organic Chemistry
  • General Principles: Bonding, resonance, acidity/basicity.
  • Classes of Compounds: Alkanes, alkenes, alkynes, carboxylic acids and derivatives.
  • Protection and Deprotection of Groups: Examples and synthesis applications.
  • Aromatic Compounds: Huckel's rule, electrophilic/nucleophilic substitution.
  • Carbonyl Chemistry: Group conversions, Michael addition, Mannich reaction.
  • Heterocyclic Chemistry: Synthesis and reactions of heterocyclic compounds.
  • Stereochemistry: Chirality, conformations, R/S configuration.
  • Carbohydrates & Proteins: Structures, properties, synthesis.
  • Pericyclic Reactions: Diels-Alder reaction and sigmatropic rearrangements.
Pharmaceutical Chemistry
  • Pharmaceutical Inorganic Chemistry: Impurities, limit tests, isotopes, radiopharmaceuticals.
  • Medicinal Chemistry: Therapeutic drugs, structure-activity relationships (SAR), synthesis of prototypes.
Pharmaceutics
  • Introduction to Pharmaceuticals: Dosage forms and drug development.
  • Dosage Forms: Powders, capsules, tablets, suspensions, emulsions.
  • Novel Drug Delivery Systems: Transdermal systems and controlled release.
  • GMP and Validation: Good manufacturing practices and validation types.
Pharmacology
  • General Pharmacology: Pharmacodynamics and pharmacokinetics.
  • Systems Pharmacology: CNS (central nervous system), cardiovascular system.
  • Chemotherapy: Antibacterial and antiviral drugs.
  • Immunopharmacology: Immunostimulants and immunosuppressants.
Pharmacognosy
  • Crude Drugs: Classification and quality factors.
  • Phytoconstituents: Carbohydrates and glycosides.
  • Volatile Oils and Resins: Sources and extraction methods.
  • Herbal Drugs: Traditional uses and quality control measures.
Pharmaceutical Analysis
  • Titrations: Acid-base titrations and redox reactions.
  • Spectroscopy: UV-Vis spectroscopy and mass spectrometry.
  • Chromatography: TLC (thin-layer chromatography), HPTLC (high-performance thin-layer chromatography), HPLC (high-performance liquid chromatography).
  • Miscellaneous Techniques: Potentiometry and gravimetry.
Biochemistry
  • Cell Structure: Organelles and their biochemical roles.
  • Metabolism: Carbohydrates, proteins and lipids.
  • Enzymes: Kinetics and clinical applications.
  • Nucleic Acids: DNA/RNA structure and functions such as transcription and translation.
Biotechnology
  • Plant and Animal Tissue Culture Techniques.
  • Recombinant DNA Technology including gene cloning and PCR (Polymerase Chain Reaction).
  • Industrial Microbiology focusing on fermentation processes.
Microbiology
  • Microscopy Techniques for microbial structure analysis.
  • Sterilization Methods for various applications.
  • Vaccines Production including quality control measures.
Pathophysiology
  • Cell Injury Mechanisms including adaptation processes.
  • Common Diseases such as inflammation and cancer pathogenesis.
Biopharmaceutics & Pharmacokinetics
  • Bioavailability & Bioequivalence Definitions.
  • Pharmacokinetics covering absorption & distribution processes.
Human Anatomy & Physiology
  • Systems Overview including cardiovascular & respiratory systems.
  • Cell Physiology related to homeostasis & organ functions.
Pharmaceutical Engineering
  • Processes such as distillation & crystallization methods.
  • Materials focusing on properties & safety measures in pharmaceuticals.
Pharmaceutical Management
  • Management Principles including HRD (Human Resource Development) & inventory management.
  • Regulations related to WTO (World Trade Organization) & GATT (General Agreement on Tariffs and Trade).
GPAT 2024 Answer Key

GPAT 2024 Question Paper with Solution and Answer Key PDFs

Exam Date Answer Key PDF Solution PDF
June 8, 2024 Download PDF Download PDF
Year-Wise GPAT Question Papers

Year-Wise GPAT (2024-1988) Question Papers with Solutions PDFs

Exam Date Question Paper PDF
June 8, 2024 Download PDF
May 22, 2023 Shift 1 Check Here
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GPAT One-Month Preparation Strategy

GPAT 2025 One-Month Preparation Strategy

This one-month preparation plan can be followed anytime before the GPAT exam for maximum efficiency. It focuses on daily targets, subject-specific revisions, and mock test practice.

GPAT 2025 One-Month Day-Wise Plan

Day Focus Area Tasks
Day 1 Pharmaceutical Chemistry (Inorganic) Revise impurities, isotopes, radiopharmaceuticals, and limit tests; solve 30 MCQs.
Day 2 Organic Chemistry Study reactions (nucleophilic/electrophilic substitutions), aromatic compounds; solve 25 MCQs.
Day 3 Medicinal Chemistry Revise SAR charts, therapeutic drug classes, and prototypes; solve 30 MCQs.
Day 4 Pharmacology (General) Study receptor interactions, mechanisms of drug action; solve 30 MCQs.
Day 5 Pharmaceutics (Dosage Forms) Cover powders, tablets, capsules, and emulsions; solve 30 MCQs.
Day 6 Physical Pharmacy Revise dispersion systems, viscosity, and solubility; solve 25 MCQs.
Day 7 Mock Test + Revision Attempt a full-length test; analyze errors and revise weak areas.
Day 8 Pharmacognosy (Crude Drugs and Phytochemistry) Study classification, adulteration, and quality control; solve 20 MCQs.
Day 9 Physical Chemistry (Thermodynamics) Revise Gibbs/Helmholtz equations, laws of thermodynamics; solve 20 numerical problems.
Day 10 Pharmaceutical Analysis (Spectroscopy) Focus on UV-Vis, IR, and NMR spectroscopy; solve 25 MCQs.
Day 11 Pharmaceutics (Biopharmaceutics) Revise bioavailability, pharmacokinetics, and controlled drug delivery; solve 20 MCQs.
Day 12 Biochemistry Study carbohydrate, protein, and lipid metabolism; solve 15 MCQs.
Day 13 Mock Test Attempt a sectional test for Pharmaceutical Chemistry and Analysis.
Day 14 Pharmacology (Chemotherapy) Revise antibiotics, antivirals, antifungals; solve 30 MCQs.
Day 15 Pharmaceutical Engineering Cover drying, crystallization, and distillation; solve 20 MCQs.
Day 16 Biotechnology (Tissue Culture and Recombinant DNA) Study gene cloning, PCR, fermentation; solve 20 MCQs.
Day 17 Mock Test Attempt a full-length test; analyze and focus on weak areas.
Day 18 Pharmacognosy (Volatile Oils and Alkaloids) Study sources, extraction, and applications; solve 20 MCQs.
Day 19 Pathophysiology Revise cell injury, inflammation, infections, and cancer; solve 20 MCQs.
Day 20 Mock Test Attempt a previous year's question paper; review and analyze errors.
Day 21-22 Quick Revision Focus on SAR charts, formulas, and high-weightage topics; solve 20 MCQs daily.
Day 23 Mock Test Attempt a full-length test under exam conditions; review performance.
Day 24-26 High-Weightage Topics Revise Pharmacology, Pharmaceutics, and Pharmaceutical Chemistry.
Day 27-29 Quick Notes Review Focus on last-minute revisions; solve 20 MCQs/day from random topics.
Day 30 Confidence Building Attempt 1 final mock test; relax and review critical points only.

Key Features of the Plan

  • Daily MCQs: Solve a minimum of 20-30 MCQs daily to strengthen problem-solving skills.
  • Mock Tests: Attempt full-length and sectional tests every week for self-evaluation.
  • Quick Revision: Focus on SAR charts, formulas, and high-weightage topics in the last week.
  • Flexibility: This plan is adaptable and can be started any month before the exam.

GPAT Preparation Day-Wise Targets for the Last Month

Day Focus Area Tasks
Day 1 Pharmaceutical Chemistry (Inorganic) Revise impurities, limit tests, and isotopes; solve 30 MCQs.
Day 2 Organic Chemistry Focus on protection/deprotection and reactions; solve 25 MCQs.
Day 3 Medicinal Chemistry Revise SAR charts and therapeutic drugs; solve 30 MCQs.
Day 4 Pharmacology (General) Study mechanism of drug action and receptor interactions; solve 25 MCQs.
Day 5 Pharmaceutics (Biopharmaceutics) Revise bioavailability and pharmacokinetics; solve 40 MCQs.
Day 6 Pharmacognosy Revise crude drugs classification and quality factors; solve 20 MCQs.
Day 7 Mock Test Attempt a full-length test; analyze errors and revise weak topics.
Day 8 Physical Chemistry (Thermodynamics) Revise Gibbs/Helmholtz equations, enthalpy; solve 20 numerical problems.
Day 9 Pharmaceutical Analysis (Spectroscopy) Study UV-Vis and IR spectroscopy; solve 25 MCQs.
Day 10 Pharmacognosy (Phytochemistry) Focus on volatile oils and glycosides; solve 20 MCQs.
Day 11 Mock Test Attempt a sectional test (Pharmaceutical Chemistry and Analysis).
Day 12 Pharmaceutics (Novel Drug Delivery Systems) Study nanoparticles and transdermal systems; solve 20 MCQs.
Day 13 Biochemistry Revise metabolism of carbohydrates and lipids; solve 15 MCQs.
Day 14 Mock Test Attempt a full-length test; focus on Pharmacology and Pharmaceutics.
Day 15 Pharmaceutical Engineering Study crystallization, drying, and extraction; solve 20 MCQs.
Day 16 Pharmaceutical Chemistry (Medicinal SAR) Revise SAR of anti-infectives; solve 25 MCQs.
Day 17 Mock Test Solve a previous year’s question paper; analyze mistakes.
Day 18 Pharmacology (Chemotherapy) Study antibiotics, antivirals, and antifungals; solve 30 MCQs.
Day 19 Biotechnology (Tissue Culture and Recombinant DNA) Revise gene cloning and applications; solve 20 MCQs.
Day 20 Mock Test Attempt a full-length test and revise weak areas.
Day 21-22 Quick Revision Focus on SAR charts, formulas, and notes for high-weightage topics.
Day 23 Mock Test Attempt a test simulating exam conditions; review performance.
Day 24-26 High-Weightage Topics Revise Pharmacology, Pharmaceutics, and Medicinal Chemistry.
Day 27-29 Quick Notes Review Focus on last-minute revisions; solve 20 MCQs/day from random topics.
Day 30 Confidence Building Attempt 1 final mock test; relax and review only critical points.

GPAT 2025 Weekly Plan for the Last Month

Week Focus Area Tasks
Week 1 Core Topics Revision Revise high-weightage topics (Pharmaceutical Chemistry, Pharmacology). Solve 1 mock test.
Week 2 Time Management Practice Attempt 2 mock tests; spend 2 hours analyzing errors and revising weak areas.
Week 3 Practice and Speed Building Solve 50 MCQs daily; attempt 2 previous years’ question papers.
Week 4 Final Touches and Quick Revision Revise SAR charts, formulas, and key notes; attempt 1 mock test daily for confidence.
GPAT Month-Wise Preparation Plan

GPAT 2025 Month-Wise Preparation Plan with Day-Wise Targets

To ace GPAT 2025, a structured month-wise plan is essential. Assuming the exam is in May/June 2025, here’s a detailed preparation schedule for your reference:

December 2024 – February 2025: Foundation Building

Focus on building strong conceptual knowledge in core subjects.

December 2024

Day Topics Tasks
Day 1-2 Inorganic Chemistry: Limit tests, impurities, radiopharmaceuticals Study theory, solve 20 MCQs/day.
Day 3-4 Mechanism of Drug Action (Pharmacology) Study mechanisms; solve 20 MCQs/day.
Day 5-6 Organic Chemistry: Bonding, resonance, acidity/basicity Revise notes, solve 25 MCQs/day.
Day 7 Solve mock test 1 focusing on Pharmaceutical Chemistry Analyze mistakes and revise.
Day 8-9 Pharmaceutics: Introduction to dosage forms, powders Study theory, solve 15 MCQs/day.
Day 10-11 Basics of Crude Drugs (Pharmacognosy) Study classification; solve 15 MCQs/day.
Day 12-13 Thermodynamics (Physical Chemistry): Laws, Gibbs equation Focus on derivations, solve 20 MCQs/day.
Day 14 Revision: Pharmaceutical Chemistry and Pharmacology topics Solve 1 sectional mock test.
Day 15-16 Pharmaceutical Analysis: Acid-base titrations, spectroscopy Study key principles, solve 20 MCQs/day.
Day 17-18 Pharmacognosy: Phytochemistry and crude drug adulteration Study examples, solve 15 MCQs/day.
Day 19-20 Pharmaceutics: Tablets, capsules Revise processes, solve 25 MCQs/day.
Day 21-22 Solve previous year questions for Pharmaceutical Chemistry and Pharmacology Identify weak areas for review.
Day 23-24 Electrochemistry (Physical Chemistry): Nernst equation, reference electrodes Focus on problem-solving, solve 20 MCQs/day.
Day 25 Full-length mock test 2 Review mistakes and revise notes.
Day 26-27 General Pharmacology: Receptor interactions, pharmacokinetics Study applications, solve 20 MCQs/day.
Day 28-30 Medicinal Chemistry: SAR charts, therapeutic drugs Revise and solve 25 MCQs/day.

January 2025

Day Topics Tasks
Day 1-2 Pharmaceutics: Emulsions, suspensions Study formulations, solve 15 MCQs/day.
Day 3-4 Pharmacology: Chemotherapy (antibiotics, antivirals) Study MOA, solve 20 MCQs/day.
Day 5-6 Heterocyclic Chemistry: Synthesis, applications Study mechanisms, solve 25 MCQs/day.
Day 7 Solve mock test 3 focusing on Pharmacology Analyze and review weak areas.
Day 8-9 Pharmaceutical Analysis: Chromatography (TLC, HPLC) Study techniques, solve 20 MCQs/day.
Day 10-12 Biopharmaceutics: Bioavailability, pharmacokinetics Revise calculations, solve 25 MCQs/day.
Day 13-14 Revision: Focus on Physical Chemistry (thermodynamics, solutions) Solve 1 sectional mock test.
Day 15-16 Pharmacognosy: Volatile oils, glycosides Study sources, solve 20 MCQs/day.
Day 17-19 Pharmaceutics: Aerosols, ophthalmic preparations Focus on stability, solve 15 MCQs/day.
Day 20 Full-length mock test 4 Review mistakes and revise notes.
Day 21-22 Medicinal Chemistry: Prototype drug synthesis Solve 25 MCQs/day.
Day 23-25 Solve previous year questions for Pharmacognosy and Pharmaceutics Revise weak areas.
Day 26-28 Physical Chemistry: Ionic equilibrium, kinetics Solve numerical problems, 20 MCQs/day.
Day 29-30 Final revision for January topics Attempt mock test 5.

February 2025

Day Topics Tasks
Day 1-3 Pharmacology: Systems Pharmacology (CNS, cardiovascular) Study mechanisms, solve 20 MCQs/day.
Day 4-5 Pharmaceutical Engineering: Distillation, drying Revise processes, solve 15 MCQs/day.
Day 6-7 Biotechnology: Plant and animal tissue culture Focus on applications, solve 20 MCQs/day.
Day 8-10 Pharmaceutics: Novel drug delivery systems Study techniques, solve 20 MCQs/day.
Day 11-12 Solve 2 mock tests focusing on Pharmaceutical Chemistry and Pharmacology Analyze and revise errors.
Day 13-14 Pathophysiology: Inflammation, infections Study clinical correlations, solve 15 MCQs/day.
Day 15-17 Physical Pharmacy: Viscosity, rheology Revise theory, solve 20 MCQs/day.
Day 18-20 Pharmacognosy: Herbal drugs, quality control Study traditional uses, solve 15 MCQs/day.
Day 21-22 Solve 2 full-length mock tests Review mistakes and revise weak areas.
Day 23-24 Pharmaceutical Analysis: UV-Vis, IR spectroscopy Study principles, solve 20 MCQs/day.
Day 25-28 Revision: Focus on high-weightage topics from all subjects Solve 1 mock test daily and review.

March 2025 – April 2025: Advanced Preparation Plan with Day-Wise Targets

March 2025

Day Topics Tasks
Day 1-2 Pharmacology: Chemotherapy (antibiotics, antivirals) Study mechanisms, solve 30 MCQs/day.
Day 3-4 Pharmaceutical Chemistry: Medicinal Chemistry (SAR, therapeutic drugs) Revise SAR charts, solve 25 MCQs/day.
Day 5 Mock Test 6: Focus on Pharmaceutical Chemistry and Pharmacology Analyze mistakes and revise weak topics.
Day 6-7 Pharmaceutics: Dosage forms (tablets, capsules, suspensions) Solve formulation-based MCQs, 20/day.
Day 8-9 Pharmacognosy: Phytochemistry and volatile oils Revise theory, solve 20 MCQs/day.
Day 10-11 Physical Chemistry: Colligative properties, thermodynamics Solve numerical problems, 25 MCQs/day.
Day 12 Mock Test 7: Focus on Physical Chemistry and Pharmaceutics Review errors and revise concepts.
Day 13-14 Pharmaceutical Analysis: Chromatography (TLC, HPLC) Study applications, solve 20 MCQs/day.
Day 15-16 Pharmaceutics: Ophthalmic preparations, aerosols Study stability issues, solve 20 MCQs/day.
Day 17-18 Pharmacology: Mechanism of Drug Action, systems pharmacology Revise notes, solve 25 MCQs/day.
Day 19-20 Mock Test 8: Full-length covering all topics Analyze and revise weak areas.
Day 21-22 Pharmaceutical Engineering: Distillation, drying, crystallization Revise principles, solve 20 MCQs/day.
Day 23-25 Biopharmaceutics: Pharmacokinetics, bioavailability Solve application-based questions, 25 MCQs/day.
Day 26-27 Solve 2 previous years’ question papers Analyze errors and revise.
Day 28-30 Quick revision: Focus on weak areas identified from mock tests Attempt 1 mock test daily and review errors.

April 2025

Day Topics Tasks
Day 1-2 Pharmaceutical Analysis: Spectroscopy (UV-Vis, IR, NMR) Study principles, solve 20 MCQs/day.
Day 3-4 Pharmacognosy: Crude drugs and their quality control Solve source-based MCQs, 15/day.
Day 5 Mock Test 9: Focus on Pharmacology and Pharmaceutics Analyze mistakes and revise notes.
Day 6-7 Physical Chemistry: Ionic equilibrium, electrochemistry Solve numerical problems, 25 MCQs/day.
Day 8-9 Pharmaceutics: Suspensions, emulsions Study stability and formulations, solve 20 MCQs/day.
Day 10 Mock Test 10: Full-length with focus on Physical Chemistry and Analysis Analyze mistakes and revise concepts.
Day 11-12 Pathophysiology: Inflammation, cancer, infections Study clinical aspects, solve 15 MCQs/day.
Day 13-14 Pharmacology: Chemotherapy and immunopharmacology Revise key points, solve 25 MCQs/day.
Day 15-16 Solve 2 full-length mock tests focusing on high-weightage topics Review mistakes and revise weak areas.
Day 17-18 Pharmaceutical Engineering: Drying, extraction, mixing Solve 15 MCQs/day, revise notes.
Day 19-20 Biotechnology: Tissue culture, recombinant DNA technology Solve theory-based MCQs, 20/day.
Day 21-22 Solve previous year papers (minimum 2) Revise mistakes, strengthen weak areas.
Day 23-25 Final mock tests: Solve 1 full-length test daily Analyze errors and create a last-minute revision list.
Day 26-30 Quick revision: Formulas, SAR charts, notes for all core topics Solve 30 MCQs daily from random topics.

May 2025: Final Revision Plan with Day-Wise Targets

Day Focus Areas Tasks
Day 1 Pharmaceutical Chemistry and Pharmacology Revise SAR charts and mechanisms, solve 30 MCQs.
Day 2 Pharmaceutics: Tablets, capsules, novel drug delivery systems Solve formulation-based MCQs, 25/day.
Day 3 Physical Chemistry: Thermodynamics, colligative properties Revise notes, solve 20 MCQs.
Day 4 Mock Test 11: Full-length covering all subjects Analyze errors, revise weak topics.
Day 5 Pharmacognosy: Phytochemistry, volatile oils Solve source-based MCQs, 15/day.
Day 6 Pharmaceutical Analysis: Chromatography, spectroscopy Solve 25 MCQs/day, focus on numerical problems.
Day 7 Mock Test 12: Focus on weak areas identified during April Review errors and revise concepts.
Day 8 Quick revision: High-weightage topics (Pharmaceutical Chemistry, Pharmacology) Solve 1 mock test, revise notes.
Day 9-10 Final mock tests (2 total) Analyze mistakes and revise.
Day 11-12 Quick Notes Review: All formulas, SAR charts, and processes Spend 3 hours/day revising.
Day 13 Final Preparation: Relax and review high-weightage notes only Attempt 1 mock test for confidence.

*The article might have information for the previous academic years, which will be updated soon subject to the notification issued by the University/College.

Previous Year GPAT Questions

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