If you thoroughly go through the GATE Mechanical Syllabus, you will find details of each section in the syllabus. Looking at GATE Previous Year Question Paper also helps better understand the GATE exam pattern and the subject-wise weightage of the GATE Exam Syllabus For Mechanical Engineering.
We have listed the topics under each syllabus section, as a table below. By referring to the GATE syllabus for Mechanical Engineering, candidates can prepare ahead for the exams. They can plan their studies, based on the marks weightage and the topics covered in the GATE mechanical syllabus.
The Major Field Examination is an eight hour examination covering material from the syllabus. Part of the examination will cover material in the core; all students are responsible for this pan. The remainder of the examination will cover material from the elective sections of the syllabus.
In advance of the examination, each student shall inform his adviser of the core elective topics on which he wishes to be tested.
Students
selecting Applied Plasma Physics and Fusion Engineering as their major
field are responsible for the core sections I and II comprising material
contained in EE185 and MAE137. In addition to this core material, students
are to choose four elective sections from those numbered ill through
XVI. The material described in sections ill through XVI is contained
in one or more appropriate courses, as indicated in the syllabus for
each section. Those students who wish to emphasize applied plasma physics
in the Ph.D. dissertation research should select the majority of their
four electives from sections III-IX. Students wishing to emphasize fusion
engineering in their PhD. dissertation research should select the majority
of their four electives from Sections VIII-XVI. Thesis students should
be familiar with the current literature in their chosen field of research
and become acquainted with recent developments in plasma physics and
fusion engineering by attending the various seminars, colloquia. and
tutorials offered by the faculty, staff, and visitors working in the
field.
The musculoskeletal system; general characteristics and classification of tissues and joints. Elastic and viscoelastic mechanical characterization of biological tissues including bone, cartilage, ligament and tendon. Principles of viscoelastic and the rate sensitivity of biological materials. The stress-strain-time or constitutive equations for soft connective tissue components. Biomechanics and clinical problems in orthopaedics. Modelling and force analysis of musculoskeletal systems. Passive and active kinematics. Mechanical properties of biological and commonly used biomedical engineering materials.
The preparation for GATE mechanical engineering begins with analysis of syllabus and exam pattern followed by selection of study material and making a plan and time table for study. The preparation strategy for GATE is very essential to score good marks in exam.
GATE Syllabus for Mechanical Engineering 2024(ME)- IISc Bangalore has released the GATE 2024 syllabus for Mechanical Engineering online at the official website, gate2024.iisc.ac.in. The GATE 2024 syllabus for Mechanical Engineering pdf can be downloaded from this page. The Mechanical Engineering GATE syllabus consists of section-wise topics from which questions will be asked in the GATE examination. As per the GATE 2024 Mechanical Engineering syllabus, there are four sections - Applied Mechanics & Design, Engineering Mathematics, Fluid Mechanics & Thermal Sciences and Materials, and Manufacturing & Industrial Engineering. The GATE 2024 exam dates, branch-wise will be available soon. However, the authorities have announced that GATE 2024 will be held on February 3, 4, 10 and 11, 2024. Candidates must check the page for the GATE syllabus for Mechanical Engineering 2024.
The Electronics and Communication Engineering 2024 GATE syllabus has been made available online by IISC Bangalore. Candidates can visit the website gate2024.iisc.ac.in to view the GATE ECE syllabus in PDF format. The topics covered in the GATE 2024 curriculum for ECE are crucial for getting ready for the GATE exam. It is recommended that candidates closely review the GATE exam ece syllabus in order to understand the subjects that are required to be covered for the Graduate Aptitude Test in Engineering. The GATE 2024 will be administered by the authorities to thirty disciplines.
The ISRO exam appears to be challenging; however, applicants can undoubtedly pass it with ease if they carefully read the syllabus, analyze the exam pattern, and practice on a consistent basis by making a robust study plan.
Prerequisite: permission of instructor. (1-3 credits)
Individual or group project work where student(s) must apply mechanical engineering principles to research, innovation, service or entrepreneurship projects. Student(s) work under the direction of mechanical engineering faculty. (Course Profile)
Prerequisite: Permission of instructor. (2-3 credits)
Individual or group project work where student(s) must apply mechanical engineering principles to research, innovation, service or entrepreneurship projects. Student(s) work under the direction of Mechanical Engineering faculty. The student(s) submits proposal and presents poster at ME Undergraduate Symposium. (Course Profile)
Prerequisite: MECHENG 211, MECHENG 240, Math 216. (3 credits)
Exact and approximate techniques for the analysis of problems in mechanical engineering including structures, vibrations, control systems, fluids, and design. Emphasis is on application. (Course Profile)
Prerequisite: MECHENG 320, MECHENG 350, MECHENG 360, and either MECHENG 395 or AEROSP 305. May not be taken concurrently with MECHENG 455 or MECHENG 495. Student must be declared in Mechanical Engineering. Not open to graduate students. (4 credits)
A mechanical engineering design project by which the student is exposed to the design process from concept through analysis to layout and report. Projects are proposed from the different areas of study within mechanical engineering and reflect the expertise of instructional faculty and industrial representatives. (Course Profile)
Prerequisite: MECHENG 350 or equivalent design course. (3 credits)
This course examines processes of front-end of engineering design, including opportunity discovery, problem definition, developing mechanisms to gather data from users and other stakeholders, translating user data into design requirements and specifications, creating innovative solutions during concept generation, representing design ideas, and evaluating possible solutions. (Course Profile)
Prerequisite: permission of instructor. (3 credits)
Individual or group project work where student(s) must apply mechanical engineering principles to research, innovation, service or entrepreneurship projects. Student(s) work under the direction of Mechanical Engineering faculty. (Students should work on project approximately 10 hours/week for 3 credits. The student(s) submits proposal and presents poster at ME Undergraduate Symposium.) (Course Profile)
Prerequisite: MECHENG 490, permission of instructor; mandatory pass/fail. (1-3 credits)
Individual or group experimental or theoretical research in the area of mechanical engineering. A topic in mechanical engineering under the direction of a member of the department. The student will submit a final report. Two four-hour laboratories per week. For undergraduates only. (Course Profile)
Prerequisite: MECHENG 240. (3 credits)
Newton/Euler and Lagrangian formulations for three dimensional motion of particles and rigid bodies. Principles of dynamics applied to various rigid-body and multi-body dynamics problems that arise in aerospace and mechanical engineering.
Prerequisite: MECHENG 350 or equivalent design course. (3 credits)
This course examines processes of front-end of engineering design, including opportunity discovery, problem definition, developing mechanisms to gather data from users and other stakeholders, translating user data into design requirements and specifications, creating innovative solutions during concept generation, representing design ideas, and evaluating possible solutions.
Prerequisite: graduate standing; permission of the instructor who will guide the work; mandatory satisfactory/unsatisfactory. (3/6 credits)
Individual or group study, design or laboratory research in a field of interest to the student. Topics may be chosen from any of the areas of mechanical engineering. The student will submit a report on the project at the close of the term.
IISc Bangalore will be releasing GATE Syllabus for Mechanical Engineering soon on their official portal. It contains a list of all the important topics for the upcoming GATE ME exam. The important sections in the GATE syllabus for Mechanical Engineering are Applied Mechanics Design, Manufacturing Industrial Engineering, Engineering Mathematics, Fluid Mechanics, Thermal Sciences, and Materials.
Candidates are advised to review the complete GATE Syllabus for Mechanical Engineering and download a PDF copy of the same. A detailed description of the GATE Syllabus For Mechanical Engineering 2024 is provided in the sections given below, along with a brief break-up of each section covered in the syllabus which will provide a stable base for the exam preparation.
GATE syllabus for Mechanical Engineering is the collection of topics considered while creating the question paper for the upcoming GATE exam. No new major changes are expected in the syllabus this year from the previous year. Candidates planning to appear for the GATE Mechanical exam must be familiar with the syllabus and important topics for fruitful preparation.
aa06259810