M.Tech Chemical Engineering subjects consist of various core and elective subjects required to make the students efficient in their course domain. In addition to that, the M.Tech Chemical Engineering course imparts specific knowledge in the subject areas to the students that offer theoretical and practical knowledge to students on areas such as aerospace, chemical plant, food industries, healthcare, etc. The M.Tech Chemical Engineering syllabus is for those graduates with a strong interest in research, engineering, chemistry, material sciences, and other chemical-related domains.
M.Tech Chemical Engineering course subjects include chemical reaction engineering, applied mathematics, advanced mass transfer, process equipment design, and much more. The M.Tech Chemical Engineering course curriculum comprises four parts: foundation, core, electives, and projects. The M.Tech Chemical Engineering semester wise subjects are:
Semester I |
Semester II |
Advanced Process Control |
Advances in Fluidization Engineering |
Process Modelling and Simulation |
Chemical Process Design |
Chemical Reactor Analysis and Design |
Nanotechnology |
Computational Techniques in Chemical Engineering |
Polymer Dynamics |
Advanced Separation Process |
Fuel Cell Technology |
Semester III |
Semester IV |
Bioprocess Engineering |
Process Optimization |
Multiphase Flow |
Ecology for Engineers |
Industrial Energy Systems |
Computational Fluid Dynamics |
Wastewater and Solid Waste Treatment |
BioEnergy and Bio-Refinery Engineering |
There are many subjects in the course curriculum of M.Tech Chemical Engineering which are necessary for the students to pursue a degree related to engineering, chemistry, and material sciences. Some subjects are from undergraduate degree classes related to chemistry and related domains, and some other new topics have been covered in the course. Let's see in detail what all are the M.Tech Chemical Engineering subjects in the course curriculum:
Some of the M.Tech Chemical Engineering subjects list in the course curriculum are listed below:
Core Subjects:
Elective Courses:
The M.Tech Chemical Engineering course curriculum is structured into two categories, namely core and elective subjects. The course for the curriculum has been divided into four semesters, comprising an introduction to the basis in nanotechnology, advanced process control, chemical process design and many more. The aspirants can choose the electives for the course, apart from core courses, based on the specializations, interest and the research-based project works the students should submit at the end of the last year. M.Tech Chemical Engineering course details are:
The M.Tech Chemical Engineering degree course encompasses various teaching methods and techniques necessary for the graduates to evolve as the best M.Tech Chemical Engineering graduate. Apart from the basic traditional lecture and classroom-based training, the students are trained and proficient at excelling in various lab works, group projects, internships, and other action-based learning methods, which is a part of the course curriculum. Some of the various teaching methodology and techniques implemented in the course of M.Tech Chemical Engineering are:
Students pursuing an M.Tech Chemical Engineering degree course can take up projects on various topics such as microbial, dehydration, energy exchange effectiveness etc. The project motivates the students to develop various skills and techniques in designing and developing various chemistry and other chemistry-based domains.
Some of the popular M.Tech Chemical Engineering Project Topics are:
Reference books for the M.tech Chemical Engineering course help graduates to get additional knowledge about the course they are pursuing. The reference books support the students to expand their knowledge about various topics covered in the course curriculum. Some of the very best M.tech Chemical Engineering books are:
Books |
Authors |
Introduction to Chemical Engineering Thermodynamics |
J.m Smith, H.C Ness |
Fine Chemicals Manufacture: Technology and Engineering |
Andrzej Cybulski, Jacob A. Moulijn |
Chemical Process Design and Integration |
Robin Smith |
Unit Operations of Chemical Engineering |
Warren McCabe |
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