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IIT Bombay GATE Cutoff 2025: IIT Bombay will release the IIT Bombay GATE 2025 cutoff on the official website, iitb.ac.in. Candidates can check the IIT Bombay GATE cutoff 2025 on this page. The GATE 2025 cutoff is the minimum score required for admission to the M.Tech programmes. Candidates scoring less than the GATE cutoff 2025 will not be considered for M.Tech admission. The admissions into IIT Bombay will be based on the scores of the GATE exam. The authority will announce the GATE 2025 results on March 19, 2025.
GATE 2025: Syllabus | Sample Papers
Candidates whose rank will be more than the GATE IIT Bombay Cutoff will have a higher chance of admission. The IIT Bombay GATE cutoff 2025 is different as per the category of the candidate and the courses applied for. While preparing the GATE cutoff of IIT Bombay various factors, such as difficulty level and previous years’ GATE cutoff trends will be considered. Candidate can check the GATE opening and closing rank for IIT bombay in the table below.
Candidates can refer to the previous year's IIT Bombay Mtech cutoff in the table below.
Branch | Link |
Aerospace Engineering (AE) | |
Biomedical Engineering (BM) | |
Chemical Engineering (CH) | |
Civil Engineering (CE) | |
Computer Science & Engineering (CS) | |
Earth Sciences (ES) | |
Electrical Engineering (EE) | |
Energy Science & Engineering (EN) | |
Environmental Science & Engineering (EV) | |
Geoinformatics & Natural Resources Engineering (GNR) | |
Industrial Engineering & Operations Research (IO) | |
Mechanical Engineering (ME) | |
Metallurgical Engineering & Materials Science (MM) | |
Materials, Manufacturing and Modeling (MMM) | |
Systems & Control Engineering (SC) | |
(Technology And Development) (TD) (CTARA) | |
Educational Technology (ET) | |
Urban Systems (US) (CUSE) | |
M.S. by Research(Data Science and Artificial Intelligence in CMInDs) | |
M.S. by Research(Koita Centre for Digital Health) |
Branch | Link |
Aerospace Engineering (AE) | |
Biomedical Engineering (BM) | |
Chemical Engineering (CH) | |
Civil Engineering (CE) | |
Computer Science & Engineering (CS) | |
Earth Sciences (ES) | |
Electrical Engineering (EE) | |
Energy Science & Engineering (EN) | |
Environmental Science & Engineering (EV) | |
Geoinformatics & Natural Resources Engineering (GNR) | |
Industrial Engineering & Operations Research (IO) | |
Mechanical Engineering (ME) | |
Metallurgical Engineering & Materials Science (MM) | |
Materials, Manufacturing and Modeling (MMM) | |
Systems & Control Engineering (SC) | |
(Technology And Development) (TD) (CTARA) | |
Educational Technology (ET) | |
Urban Systems (US) (CUSE) |
Branch | Link |
Aerospace Engineering (AE) | |
Biomedical Engineering (BM) | |
Chemical Engineering (CH) | |
Civil Engineering (CE) | |
Computer Science & Engineering (CS) | |
Earth Sciences (ES) | |
Electrical Engineering (EE) | |
Energy Science & Engineering (EN) | |
Environmental Science & Engineering (EV) | |
Geoinformatics & Natural Resources Engineering (GNR) | |
Industrial Engineering & Operations Research (IO) | |
Mechanical Engineering (ME) | |
Metallurgical Engineering & Materials Science (MM) | |
Materials, Manufacturing and Modeling (MMM) | |
Systems & Control Engineering (SC) | |
(Technology And Development) (TD) (CTARA) | |
Educational Technology (ET) | |
Urban Systems (US) (CUSE) |
Branch | Link |
Aerospace Engineering (AE) | |
Biomedical Engineering (BM) | |
Chemical Engineering (CH) | |
Civil Engineering (CE) | |
Computer Science & Engineering (CS) | |
Earth Sciences (ES) | |
Electrical Engineering (EE) | |
Energy Science & Engineering (EN) | |
Environmental Science & Engineering (EV) | |
Geoinformatics & Natural Resources Engineering (GNR) | |
Industrial Engineering & Operations Research (IO) | |
Mechanical Engineering (ME) | |
Metallurgical Engineering & Materials Science (MM) | |
Materials, Manufacturing and Modeling (MMM) | |
Systems & Control Engineering (SC) | |
(Technology And Development) (TD) (CTARA) | |
Educational Technology (ET) | |
Urban Systems (US) (CUSE) |
Specialization | GEN | GN (EWS) | OBC-NC | SC | ST | PwD | |
Department: Aerospace Engineering | |||||||
Aerodynamics | 785 | 530 | 630 | 381 | | | |
Dynamics and Control | 777 | 664 | 625 | 376 | | | |
Aerospace Propulsion | 781 | 625 | 630 | 386 | 343 | | |
Aerospace Structures | 743 | 723 | 612 | 482 | | – | |
Department: Chemical Engineering | |||||||
| 716 | 653 | 617 | 513 | 481 | 605 (GN)/369 (OBCNC) | |
Department: Civil Engineering | |||||||
Transportation Systems Engineering | 785 | 779 | 772 | 618 | | 533 (OBC NC) | |
Geotechnical Engineering | 774 | | 725 | 574 | 537 | | |
Water Resources Engineering | 695 | 664 | 636 | 518 | | | |
Structural Engineering | 838 | 786 | 779 | 559 | 703 | | |
Ocean Engineering | 724 | 704 | 714 | 492 | | | |
Remote Sensing | 719 | 671 | 686 | 533 | | | |
Construction Technology and Management | 831 | 746 | 764 | 555 | 607 | | |
Department: Computer Science and Engineering | |||||||
| 830 | 807 | 725 | 616 | 756 | 539(GN) 515(OBC NC) | |
Department: Earth Sciences | |||||||
Geoexploration | 545 | 411 | 368 | 240 | 292 | – | |
Petroleum Geoscience | 621 | 459 | 497 | 340 | 282 | – | |
Department: Electrical Engineering | |||||||
Communication Engineering | 807 | 738 | 734 | 523 | 494 | 389 (GN) | |
Control and Computing | 856 | 697 | 718 | 494 | 369 | 539(GN) | |
Power Electronics and Power Systems | 869 | 779 | 813 | 523 | 425 | 375(GN)/ 562(OBC NC) | |
Electronic Systems | 856 | 811 | 770 | 527 | 438 | | |
Integrated Circuit & Systems | 884 | 835 | 807 | 567 | 511 | 446(GN) | |
Solid State Devices | 762 | 718 | 693 | 482 | 389 | | |
Department: Mechanical Engineering | |||||||
Thermal and Fluids Engineering | 836 | 820 | 793 | 501 | 424 | 482(GN) | |
Design Engineering | 880 | 840 | 844 | 752 | 590 | 414(OBC NC) | |
Manufacturing Engineering | 806 | | 785 | 543 | 515 | 463(OBC NC) | |
Department: Metallurgical Engineering and Materials Science | |||||||
Materials Science | 699 | 537 | 468 | 365 | | 424 (SC) | |
Process Engineering | 706 | 593 | 461 | | 376 | | |
Steel Technology | | 658 | 550 | 724 | | | |
Corrosion Science and Engineering | 674 | 533 | 448 | 400 | 364 | | |
Department: Energy Science and Engineering | |||||||
| 779 | | 721 | 559 | 573 | 366 (GN) | |
Department of Environment Science & Engineering | |||||||
| 719 | 533 | 471 | 414 | | 473 (GN) | |
Department: Industrial Engineering and Operations Research | |||||||
| 852 | 723 | 728 | 484 | | 457 (GN) | |
Department: Systems and Control Engineering | |||||||
| 783 | 746 | 745 | 591 | 507 | | |
Department: Biosciences & Bioengineering | |||||||
| 743 | 591 | 416 | 350 | | 396 (GN) | |
Department: Centre of Studies in Resources Engineering | |||||||
Geoinformatics & Natural Resources Engineering | 764 | 707 | 663 | 463 | | | |
Department: Centre for Technology Alternatives for Rural Areas | |||||||
Technology & Development | 592 | 575 | 527 | 510 | 271 | | |
Department: Materials, Manufacturing and Modelling | |||||||
| 781 | 700 | 436 | 274 | | | |
Department: Educational Technology | |||||||
| 760 | 740 | | 567 | | |
To check GATE Cutoff 2019 for IIT Bombay
While preparing for the IIT Bombay gate cutoff marks 2025, the responsible authorities will be considering various factors related to the qualifying exam. After checking the factors, the IIT Bombay cutoff of GATE 2025 will be prepared for admission purposes. The following factors are considered during the preparation of the GATE cutoff for IIT Bombay 2025;
Candidates must have a bachelor's degree in engineering or technology, or a master's degree in science, with a minimum grade point average (CGPA) of 6.0 on a scale of 10 for general admission, EWS, and OBC, and a minimum grade point average (CGPA) of 5.5 on a scale of 10 for SC/ST.
GATE Cutoff is made public in two formats: qualifying and admission cutoffs. For various courses, each of the participating institutes publishes its own minimal admission criteria. Candidates are eligible for admission to their selected M.E./M. programme if their GATE scores are higher than the cutoff.
The IIT Bombay cutoff for BTech Mechanical Engineering is expected to be around a rank of 1675 for the general category.
Based on previous year's trends, candidates typically need a GATE rank of 200 or better to have a strong chance of securing a seat at IITs. The competitive GATE scores for IIT admissions generally range from 400 to 800, depending on the branch and category.
There is no fixed minimum GATE score for IIT admissions, as the cutoff varies across different IITs and departments. The score required depends on factors such as the number of applicants, the difficulty of the exam, and the availability of seats in a particular branch. A score of 40 marks may not guarantee admission, especially for highly competitive branches.
To be eligible for MTech admission at IIT Bombay, candidates must meet the minimum percentage requirement in their qualifying degree, as per the institute's guidelines: GN/EWS/OBC-NC candidates need 60%, and SC/ST/PwD candidates need 55%. Alternatively, candidates should have a minimum Cumulative Grade Point Average (CGPA) of 6.0 on a scale of 0-10 or an equivalent CGPA based on their institution's grading scale.
For admission to IIT Bombay, candidates typically need to secure at least 285–290 marks out of 360 in JEE Advanced to be competitive, especially for highly sought-after branches like Computer Science.
Hello there,
Yes, you can apply for PSU jobs with a valid GATE rank, even if you have completed your MSc in Electronics and Communication. However, PSUs generally mention the eligibility criteria for engineering graduates (BTech/B.E.) in their official notifications. Some PSUs have specific requirements regarding the educational qualification, typically looking for BTech candidates, but there are a few that may consider MSc graduates, especially in disciplines like Electronics and Communication.
Here’s what you can do:
Check the Detailed Eligibility
: Carefully read the eligibility criteria mentioned in the PSU recruitment notification. Some PSUs do accept MSc graduates for specific roles, especially if the specialization aligns with their requirements.
Look for MSc-Friendly PSUs
: While most PSUs prefer BTech graduates, there are a few that have specific opportunities for MSc graduates, especially in the fields of physics, chemistry, and electronics. PSUs like BHEL, DRDO, ISRO, and others might have occasional openings for MSc candidates in certain technical roles.
Alternative Options
: Some PSUs may allow MSc graduates to apply for entry-level technical positions if they meet the other criteria (such as the relevant specialization). It’s also worth looking into Public Sector Research Organizations and other government bodies that may have opportunities for MSc graduates with a valid GATE score.
Prepare for Further Exams : If PSUs do not directly offer opportunities to MSc candidates, consider looking into higher studies or other government jobs that accept MSc qualifications.
While BTech is the preferred qualification for many PSUs, it’s always worth checking individual PSU notifications for exceptions or specific roles where an MSc might be eligible.
I hope this answer helps you. If you have more queries then feel free to share your questions with us we will be happy to assist you.
Thank you and wishing you all the best for your bright future.
Hello,
Based on your GATE 2024 score of 226 in Electronics and Communication Engineering (ECE) under the SC category, securing admission to IITs may be challenging due to the following considerations:
Qualifying Marks : The GATE 2024 qualifying cutoff for ECE in the SC category was 16.6 marks.
Admission Cutoffs : Admission cutoffs for IITs are typically higher than the qualifying marks and vary across institutes and specializations. For instance, in previous years, the cutoff scores for SC candidates in ECE-related M.Tech programs at IITs ranged significantly higher than your score.
Competition and Seat Availability : Admission to IITs is highly competitive, and candidates with higher GATE scores are generally preferred.
Recommendations :
Explore Other Institutes : Consider applying to National Institutes of Technology (NITs) or other reputable engineering colleges where the cutoff scores may align more closely with your GATE score.
Review Specific Cutoffs : Research the previous years' cutoffs for the specific institutes and programs you're interested in to assess your chances accurately.
Enhance Qualifications : If feasible, consider improving your GATE score in future attempts to increase the likelihood of admission to your desired institute.
While admission to IITs with a GATE score of 226 in the SC category is unlikely, exploring alternative institutes and programs can provide valuable opportunities for your academic and professional growth.
Hope it helps !
it is true that many Public Sector Undertakings (PSUs) recruit candidates based on their performance in the Graduate Aptitude Test in Engineering (GATE) exam, meaning you can get a PSU job through the GATE exam with msc electronics and communication essentially, a good GATE score opens doors to various PSU recruitment opportunities.
If you have high ranks like in top 300,than only you can get job in PSUs(Powergrid,BHEL,ONGC,NTPC etc.)
If your rank is under 2000 you can do masters from IITs/NITs with 12400 stipened per month. I addition with this Many private companies also consider if you are gate qualified for their recruitment.so its a win win situation if you crack gate with good rank.
You can use GATE TIPS AMD TRICKS to achieve good rank for PSUs recruitment.
Hello aspirant,
One of the most prestigious tests in India is the Graduate Aptitude Test in Engineering, or GATE, which gives applicants a wealth of career advancement prospects. Depending on their interests and niche, candidates can choose from any of the 29 disciplines or subjects that will be offered as of 2024.
For complete information about GATE exam, you can visit our site through following link:
https://engineering.careers360.com/exams/gate
Thank you
dropping out of a BTech program in the middle can be a problem but you must focus on your future goals and then you can definitely overcome it first you need to prioritise clearing your backlogs and focus on clearing them as soon as possible. You can consult with your college or university and well then prepare for GATE properly. understand the syllabus properly and focus on the core subjects and understand their marks criteria. practice regularly solve previous year question papers of Gates And also possible join a coaching institute. GATE 2025
A flight attendant is a professional whose primary duty is to ensure the safety and comfort of passengers during an airline flight. An individual who is pursuing a career as a flight attendant is part of the cabin crew for the plane, a team of personnel who operate a commercial, business, or even military aircraft while travelling domestically or internationally.
An individual pursuing a career as a flight attendant is specially trained for the aircraft in which he or she works since passenger safety is their foremost concern. In this article, we will discuss how to become a flight attendant in India or how to become a flight attendant after graduation.
An aerospace engineer is an individual who develops new ideas and technologies that can be used in defence systems, aviation, and spacecraft. He or she not only designs aircraft, spacecraft, satellites, and missiles but also creates test vehicles to ensure optimum functionality. Aerospace engineering is a branch of engineering that deals with the study, design, and development of aerial vehicles such as aircraft and spacecraft.
Aerospace engineering jobs deal with employees who design or build missiles and aircraft for national defence, or spacecraft. Aerospace engineering or aircraft engineering is often referred to as rocket science. The bottom line is that the person who is pursuing a career in aerospace engineering has to deal with multiple teams at different levels and work across various technologies.
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An aircrew officer or airline commanders fly aircraft to provide transportation to passengers or cargo. The aircrew officer operates the engines of aircraft and controls to navigate and fly the airplane. The ability to learn new technologies every time and to stay up-to-date with the changes in the industry is what the aircrew officer should possess.
This could be possible through membership with professional pilot associations. The aircrew officer is also one of the highest-paid professionals and the job is quite coveted. Keep reading to find out what you need to know about how to become aircrew officer.
You may also read career as Airline Pilot.
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Air hostesses play a crucial role in the flight crew, working closely with pilots and ground personnel to provide a safe and comfortable travel experience, even beyond their hospitality responsibilities. Being flexible, having strong communication skills, and being dedicated to the comfort of passengers are all necessary for their dynamic function, which makes them essential to the entire travel experience.
An Aeronautical Engineer job comes with the responsibility of designing aircraft and thrust systems. He or she is employed in aviation, defence or civil aviation industries. Aeronautical Engineer is generally engaged in the design of aircraft and propulsion systems as well as the analysis of building materials and aircraft's aerodynamic performance. The role of an Aeronautical Engineer may involve assembling parts of aircraft, testing and maintaining them.
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Are you searching for an 'airline pilot job description'? An airline pilot or airline commander flies aircraft and helicopters to provide transportation to passengers or cargo. The airline pilot operates the engines of the aircraft and controls them to navigate and fly the airplane. The ability to learn new technologies every time and to stay up-to-date with the changes in the industry is what aviators should possess. The career as airline pilot is also one of the highest-paid professionals and the job is quite coveted.
Welding Engineer Job Description: A Welding Engineer work involves managing welding projects and supervising welding teams. He or she is responsible for reviewing welding procedures, processes and documentation. A career as Welding Engineer involves conducting failure analyses and causes on welding issues.
A career as Transportation Planner requires technical application of science and technology in engineering, particularly the concepts, equipment and technologies involved in the production of products and services. In fields like land use, infrastructure review, ecological standards and street design, he or she considers issues of health, environment and performance. A Transportation Planner assigns resources for implementing and designing programmes. He or she is responsible for assessing needs, preparing plans and forecasts and compliance with regulations.
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A Conservation Architect is a professional responsible for conserving and restoring buildings or monuments having a historic value. He or she applies techniques to document and stabilise the object’s state without any further damage. A Conservation Architect restores the monuments and heritage buildings to bring them back to their original state.
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Highway Engineer Job Description: A Highway Engineer is a civil engineer who specialises in planning and building thousands of miles of roads that support connectivity and allow transportation across the country. He or she ensures that traffic management schemes are effectively planned concerning economic sustainability and successful implementation.
Are you searching for a Field Surveyor Job Description? A Field Surveyor is a professional responsible for conducting field surveys for various places or geographical conditions. He or she collects the required data and information as per the instructions given by senior officials.
Individuals who opt for a career as geothermal engineers are the professionals involved in the processing of geothermal energy. The responsibilities of geothermal engineers may vary depending on the workplace location. Those who work in fields design facilities to process and distribute geothermal energy. They oversee the functioning of machinery used in the field.
A geologist attempts to comprehend the historical backdrop of the planet we live on, all the more likely to anticipate the future and clarify current events. He or she analyses the components, deployments, results, physical characteristics, and past of the planet. A geologist examines the landforms and landscapes of the earth in relation to the geology, climatic, and human processes that have shaped them.
A geologist studies earth procedures, for example, seismic tremors, avalanches, floods, and volcanic eruptions to review land and draw up safe structure plans. When he or she researches earth materials, explores metals and minerals, yet in addition search for oil, petroleum gas, water, and strategies to extricate these.
Energy efficiency engineering is a broad field of engineering which deals with energy efficiency, energy services, facility management, plant engineering, and sustainable energy resources. Energy efficiency engineering is one of the most recent engineering disciplines to emerge. The field combines the knowledge and understanding of physics, chemistry, and mathematics, with economic and environmental engineering practices. The main job of individuals who opt for a career as an energy performance engineer is to find the most efficient and sustainable path to operate buildings and manufacturing processes.
Individuals who opt for a career as energy performance engineers apply their understanding and knowledge to increase efficiency and further develop renewable sources of energy. The energy efficiency engineers also examine the use of energy in those procedures and suggest the ways in which systems can be improved.
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A career as Transportation Planner requires technical application of science and technology in engineering, particularly the concepts, equipment and technologies involved in the production of products and services. In fields like land use, infrastructure review, ecological standards and street design, he or she considers issues of health, environment and performance. A Transportation Planner assigns resources for implementing and designing programmes. He or she is responsible for assessing needs, preparing plans and forecasts and compliance with regulations.
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As a Transport Engineer, he or she needs to solve complex problems such as accidents, costs, traffic flow, and statistics. A Transport Engineer also collaborates for projects with some other companies.
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A loco pilot has thorough knowledge and understanding of the railway operations, rules, regulations, protocols, and measures to take in times of emergency. Their role is crucial in ensuring passenger and freight trains' smooth and safe operation. Here, in this article, we will discuss everything on how to how to become a loco pilot.
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