GATE Chemical Engineering Syllabus 2024

GATE Chemical Engineering Syllabus 2024, Download CH Syllabus PDF

GATE Chemical Engineering Syllabus 2024, Download CH Syllabus PDF: Access the GATE 2024 Chemical Engineering Syllabus and prepare for the GATE 2024 exam.

GATE Chemical Engineering Syllabus 2024: IISc Bengaluru has published the official GATE Chemical Engineering Syllabus 2024. Candidates who are interested in appearing for the GATE exam in chemical engineering can find the syllabus for GATE 2024 on this page.

The syllabus provides a list of topics that candidates should study for the exam. It is important for applicants to refer to the official GATE 2024 syllabus to make sure they cover all the necessary topics. The GATE 2024 exam will cover 30 subjects, including Chemical Engineering.

GATE Chemical Engineering Syllabus 2024

GATE Chemical Engineering Syllabus 2024

The complete GATE chemical engineering syllabus 2024 is divided into nine major sections. Some of the topics from the GATE 2024 chemical engineering syllabus include Thermodynamics, Process Calculations, Engineering Mathematics, Fluid Mechanics, Mechanical Operations, Heat Transfer, Chemical Reaction Engineering, Mass Transfer, Instrumentation, and Process Control, including Plan Design and Chemical Technology.

Chemical engineering uses the laws of physics and chemistry with applied mathematics for the conversion of raw and chemical materials into useful substances. Chemical Engineers have a major role in it; they essentially design large-scale processes for such types of transformation. GATE Chemical Engineering Syllabus 2024 is given below:

GATE Chemical Engineering Syllabus 2024

The GATE Chemical Engineering Syllabus 2024 covers a total of nine sections consisting of various topics. Aspirants preparing for GATE 2024 may refer to the topic-wise table given below in order to cover all the sections of the GATE 2024 Chemical Engineering syllabus.

GATE Chemical Engineering Syllabus 2024
Subjects Topics
Section 1: Engineering Mathematics
  • Linear Algebra: Matrix algebra, Systems of linear equations, eigenvalues, and eigenvectors.
  • Calculus: Functions of a single variable, Limit, continuity and differentiability, Taylor series, Mean value theorems, Evaluation of definite and improper integrals, Partial derivatives, Total derivative, Maxima and minima, Gradient, Divergence and Curl, Vector identities, Directional derivatives, Line, Surface and Volume integrals, Stokes, Gauss, and Green’s theorems
  • Complex variables: Complex number, polar form of complex number, triangle inequality
  • Probability and Statistics: Definitions of probability and sampling theorems, Conditional probability, Mean, median, mode and standard deviation, Random variables, Poisson, Normal and Binomial distributions, Linear regression analysis
  • Numerical Methods: Numerical solutions of linear and non-linear algebraic equations. Integration by trapezoidal and Simpson’s rule. Single and multi-step methods for numerical solution of differential equations
  • Differential equations: First-order equations (linear and nonlinear), Higher order linear differential equations with constant coefficients, Cauchy’s and Euler’s equations, Initial and boundary value problems, Laplace transforms, Solutions of one-dimensional heat and wave equations, and Laplace equation.
Section 2: Process Calculations and Thermodynamics Steady and unsteady state mass and energy balances include multiphase, multicomponent, reacting, and non-reacting systems. Use of tie components; recycle, bypass, and purge calculations; Gibb’s phase rule and degree of freedom analysis First and Second laws of thermodynamics. Applications of first law to close and open systems. Second Law and Entropy. Thermodynamic properties of pure substances: Equation of State and residual properties, properties of mixtures: partial molar properties, fugacity, excess properties, and activity coefficients; phase equilibria: predicting VLE of systems; chemical reaction equilibrium
Section 3: Fluid Mechanics and Mechanical Operations Fluid statics, surface tension, Newtonian and non-Newtonian fluids, transport properties, shell-balances including differential form of Bernoulli equation and energy balance, equation of continuity, equation of motion, equation of mechanical energy, Macroscopic friction factors, dimensional analysis, and similitude, flow through pipeline systems, velocity profiles, flow meters, pumps and compressors, elementary boundary layer theory, flow past immersed bodies including packed and fluidized beds, Turbulent flow: fluctuating velocity, universal velocity profile, and pressure drop. Particle size and shape, particle size distribution, size reduction and classification of solid particles; free and hindered settling; centrifuge and cyclones; thickening and classification, filtration, agitation and mixing; conveying of solids.
Section 4: Heat Transfer Equation of energy, steady and unsteady heat conduction, convection and radiation, thermal boundary layer and heat transfer coefficients, boiling, condensation, and evaporation; types of heat exchangers and evaporators and their process calculations; design of double pipe, shell, and tube heat exchangers, and single and multiple effect evaporators.
Section 5: Mass Transfer Fick’s laws, molecular diffusion in fluids, mass transfer coefficients, film, penetration, and surface renewal theories; momentum, heat, and mass transfer analogies; stage-wise and continuous contacting and stage efficiencies; HTU & NTU concepts; design and operation of equipment for distillation, absorption, leaching, liquid-liquid extraction, drying, humidification, dehumidification and adsorption, membrane separations (micro-filtration, ultra-filtration, nano-filtration and reverse osmosis).
Section 6: Chemical Reaction Engineering Theories of reaction rates; kinetics of homogeneous reactions, interpretation of kinetic data, single and multiple reactions in ideal reactors, kinetics of enzyme reactions (Michaelis-Menten and Monod models), non-ideal reactors; residence time distribution, single parameter model; non-isothermal reactors; kinetics of heterogeneous catalytic reactions; diffusion effects in catalysis; rate and performance equations for catalyst deactivation.
Section 7: Instrumentation and Process Control Measurement of process variables; sensors and transducers; P&ID equipment symbols; process modeling and linearization, transfer functions and dynamic responses of various systems, systems with the inverse response, process reaction curve, controller modes (P, PI, and PID); control valves; transducer dynamics; analysis of closed-loop systems including stability, frequency response, controller tuning, cascade, and feed-forward control.
Section 8: Plant Design and Economics Principles of process economics and cost estimation including depreciation and total annualized cost, cost indices, rate of return, payback period, discounted cash flow, optimization in process design, and sizing of chemical engineering equipment such as heat exchangers and multistage contactors.
Section 9: Chemical Technology Inorganic chemical industries (sulfuric acid, phosphoric acid, chlor-alkali industry), fertilizers (Ammonia, Urea, SSP and TSP); natural products industries (Pulp and Paper, Sugar, Oil, and Fats); petroleum refining and petrochemicals; polymerization industries (polyethylene, polypropylene, PVC and polyester synthetic fibers).

GATE Chemical Engineering Syllabus PDF

The Indian Institute of Science has published the GATE Chemical Engineering Syllabus 2024 PDF on its official website. The GATE Chemical Engineering Syllabus 2024 is organized into nine primary sections, each covering essential topics.

These sections encompass various subjects such as Engineering Mathematics, Process Calculations and Thermodynamics, Fluid Mechanics and Mechanical Operations, Heat Transfer, Mass Transfer, Chemical Reaction Engineering, Instrumentation and Process Control, Plant Design and Economics, and Chemical Technology. Aspirants can download the GATE Chemical Engineering Syllabus PDF using the direct link provided below.

Download GATE Chemical Engineering Syllabus PDF  Click Here

GATE Chemical Engineering Syllabus 2024 Marking Scheme

Understanding the marking approach as well as the GATE Chemical Engineering Syllabus 2024 can greatly help candidates to achieve scores. They can prioritize the topics in the GATE exams by being thorough with the marking framework. Further details regarding the GATE syllabus for Chemical Engineering marking criteria are outlined below.

  • In the GATE Chemical Engineering (CH) exam, the General Aptitude (GA) section carries a weightage of 15 marks.
  • The remaining 85 marks are allocated for the subject-specific section.
  • Thus, the total marks for Chemical Engineering are 100.
  • The GATE exam duration is 180 minutes, or 3 hours.

GATE Chemical Engineering Syllabus 2024 Weightage

Applicants can check the Subject Wise Weightage for GATE Chemical Engineering.

GATE Chemical Engineering Syllabus 2024 Weightage
Stream/ Course Subject Total number of Questions Marks Allotted
GATE Chemical Engineering Syllabus 2024 General Aptitude 10 15
Engineering Mathematics 10 13
Chemical Engineering Subjects 45 72
Total 65 100

How to Prepare for GATE 2024 Chemical Engineering? 

The candidates will have to keep a few things in their mind to start their preparation for the GATE Chemical Engineering Exam from exam pattern to its syllabus. By doing so they will come to know about the important points of the exam such as major topics, marking scheme, etc.

Section Wise Preparation 

GATE Question Paper is generally divided into three different sections which are

  • General Aptitude: For this section candidates will have to focus more on reasoning questions, and numerical and verbal aptitude questions.
  • Engineering Mathematics: For preparing engineering mathematics candidates will have to practice more and more to prepare for this section. As we know practice makes perfect so practicing a lot of mathematics questions makes the section strong.
  • Chemical Engineering: In this section, it is better to first collect the important topics of the subject and focus more on the topics that have a major part in the exam.

Practice Mock Test 

Attempting a mock test is one of the most important methods for preparing for any examination. This will help in providing the environment of a real competitive exam and also help in analyzing the types of questions that have been asked in the examination.

Time Management 

Time Management is one of the most important aspects of the exam. For the preparation of the GATE exam, candidates must spend at least 5 to 6 hours studying for the exam every day. Try to divide the time as per your preference to avoid any difficulty. While in mock tests do not try to spend more time on questions that are looking hard for you, skip the questions and answers the next to manage the time.

Try To Solving The Previous Year Questions Paper 

Best Study Material 

The last step in the preparation of the exam is to refer to the best study material. Good study material will have the best questions, deeper information on every major topic, sections-wise topics, etc.

GATE Chemical Engineering Syllabus 2024 Books

To effectively prepare for the GATE 2024, it is essential to have the right study materials and reference books. Here are some highly recommended books that cover the topics specified in the GATE Chemical Engineering syllabus for 2024.

GATE Chemical Engineering Syllabus 2024 Books
Book Name Authors
Basic Principles and Calculations in Chemical Engineering David M. Himmelblau
A Textbook of Chemical Engineering Thermodynamics K. V. Narayanan
An Introduction to Chemical Engineering Thermodynamics J. M. Smith, H. C. Van Ness, and M. M. Abbott
Introduction to Fluid Mechanics Yunus A. Cengel and John M. Cimbala
Chemical Engineering for GATE Mr. Ram Prasad
Engineering Mathematics B.S. Grewal
Transport Phenomena R. Byron Bird, Warren E. Stewart, and Edwin N. Lightfoot
Dryden’s Outlines of Chemical Technology Gopala Rao M. and Marshall S
Mass Transport Phenomena Christie J. Geankoplis
Mass Transfer Operations Robert E. Treybal
Heat Transfer Binay K. Dutta
Unit Operations of Chemical Engineering Warren McCabe, Julian Smith, and Peter Harriott
Mechanical Operation For Chemical Engineering Narayanan C. M. and Bhattacharyya B. C
Chemical Reaction Engineering Fogler and Gurmen
Process Systems Analysis and Control Donald R. Coughanowr and Steven E. LeBlanc
An Introduction To Theory And Practice Stephanopoulos
Process Dynamics and Control Seborg, D.E., Edgar, T.F. and Mellichamp, D.A
Plant design and Economics Peters, M. S. and Timmerhaus, K. D

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