Amity University Noida B.Tech Admissions 2025
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IIT Fee Structure 2025- IIT aspirants can check this article regarding the IIT fees for 4 years BTech. It includes IIT admission fees, tuition fees, exam fees and other amenities fees. As observed, the overall tuition fees for IITs vary between Rs 8 lakhs to 11 Lakhs. To gain admission to these colleges, candidates have to take IIT JEE Main and JEE Advanced exams. The number of seats for undergraduate programmes was 17740 in the Indian Institutes of Technology in 2024. Further information will be updated on the official website of JoSAA.
The Indian Institutes of Technology are autonomous and are considered some of the prime institutes in India. The Government of India places a huge emphasis on these institutions of prime importance. There are 23 IITs in India funded and supported by the central government. The Institutes of Technology Act, of 1961 is the governing body of all the IITs in India and they have been declared as institutes of national importance. The IITs are autonomous and are some of the top-ranked institutions in India that offer admissions at undergraduate, postgraduate and PhD levels. Candidates can check the article for more details on each IIT college fee.
Candidates can check the approximate IIT Fees structure for BTech degrees at all the 23 IIT colleges in India. The following table consists of the total tuition fee for 4-year BTech programmes.
Institute Name | Total IIT Fees |
---|---|
IIT Madras | 8,58,000 |
IIT Delhi | 8,58,000 |
IIT Bombay | 8,69,000 |
IIT Kanpur | 11,67,000 |
IIT Kharagpur | 10,42,000 |
IIT Roorkee | 8,90,000 |
IIT Guwahati | 11,99,000 |
IIT Hyderabad | 9,08,000 |
IIT BHU | 8,58,000 |
ISM Dhanbad | 10,95,000 |
IIT Indore | 9,91,000 |
IIT Gandhinagar | 8,67,000 |
IIT Ropar | 9,36,000 |
IIT Jodhpur | 10,25,000 |
IIT Mandi | 8,63,000 |
IIT Patna | 9,85,000 |
IIT Bhubaneswar | 8,94,000 |
IIT Tirupati | 8,90,000 |
IIT Jammu | 8,19,000 |
IIT Palakkad | 8,93,000 |
IIT Bhilai | 8,92,000 |
IIT Dharwad | 9,06000 |
IIT Goa | 11,09,000 |
Here in this article, we have discussed the IIT fee structure of the top five Indian Institutes of Technology (IITs) in India.
Indian Institute of Technology, Kharagpur: The first institute which has been recognized as a national institute is the Indian Institute of Technology, Kharagpur. IIT Kharagpur was established in 1951. In the year 2019, it has been acknowledged as the Institute of Eminence. After the Indian Institute of Engineering Science and Technology Shibpur and Jadavpur University, IIT Kharagpur is the 3rd oldest technical institute in West Bengal. NIRF gives the fifth rank to IIT Kharagpur in the engineering category.
Course | Specialization | IIT fees per year (Rs. in Thousands) | Duration (Years) |
---|---|---|---|
IIT MTech fees structure | 74.40 | 2 | |
Computer Science and Engineering | 74.40 | 2 | |
Metallurgical and Materials Engineering | 74.40 | 2 | |
Mechanical Systems Design | 74.40 | 2 | |
Thermal Science and Engineering | 74.40 | 2 | |
Course | Specialization | IIT Fees (Rs. in Lakhs) | Duration (Years) |
Dual Degree | B.Tech and M.Tech Mechanical Engineering | 13.26 | 5 |
M.Sc Mathematics and Computing Integrated | 13.26 | 5 | |
B.Tech and M.Tech Computer Science and Engineering | 13.26 | 5 | |
M.Sc Economics Integrated | 13.26 | 5 | |
M.Sc Applied Geology Integrated | 13.26 | 5 | |
IIT Fee Structure for B.Tech. | 10.42 | 4 | |
B.Arch | 13.26 | 5 | |
Executive MBA | 6 | 3 | |
MBA | 9.30 | 2 | |
Post Graduate Diploma in Business Analytics | 20 | 2 |
Indian Institute of Technology, Bombay: The government of India established the Indian Institute of Technology, Bombay in 1958. With fourteen academic departments, ten centres, two schools and three interdisciplinary programmes, IIT Bombay started their journey. Now it has fifteen academic departments, twenty centres, a school of excellence and four interdisciplinary programmes. IIT Bombay, the second IIT in India provides several undergraduate, postgraduate and doctoral programmes in different disciplines. According to the NIRF 2024 ranking, it is ranked 3rd in the engineering category.
Course | Specialization | Fees (Rs. in Thousands) | Duration (Years) |
---|---|---|---|
IIT Fee Structure for M.Tech. | Aerodynamics | 50.40 | 2 |
Aerospace Propulsion | 50.40 | 2 | |
Aerospace Structures | 50.40 | 2 | |
Biomedical Engineering | 50.40 | 2 | |
Chemical Engineering | 50.40 | 2 | |
M.Sc. | Applied Geology | 49.60 | 2 |
Applied Geophysics | 49.60 | 2 | |
Applied Statistics and Informatics | 49.60 | 2 | |
Biotechnology | 49.60 | 2 | |
Chemistry | 49.60 | 2 | |
M.Des. | Communication Design | 59.60 | 2 |
Industrial Design | 59.60 | 2 | |
Interaction Design | 59.60 | 2 | |
Animation Design | 59.60 | 2 | |
Mobility and Vehicle Design | 59.60 | 2 | |
M.Phil. | Planning and Development | 50.40 | 2 |
Course | Specialization | Fees (Rs. in Lakhs) | Duration (Years) |
Dual Degree | B.Tech and M.Tech Electrical Engineering Dual Degree | 8.67 | 5 |
B.Tech and M.Tech Energy Science and Engineering Dual Degree | 8.67 | 5 | |
B.Tech and M.Tech Mechanical Engineering Dual Degree | 8.67 | 5 | |
B.Tech and M.Tech Metallurgical Process Engineering Dual Degree | 8.67 | 5 | |
B.Tech and M.Tech Aerospace Engineering Dual Degree | 8.67 | 5 | |
IIT Fee Structure for B.Tech | 8.69 | 4 | |
BS | Chemistry | 8.46 | 4 |
Economics | 8.46 | 4 | |
Mathematics | 8.46 | 4 | |
B.Des | 8.46 | 4 | |
Executive MBA | 36.30 | 1.5 | |
MBA | 8.30 | 2 |
Indian Institute of Technology, Kanpur: The Government of India established the Indian Institute of Technology, Kanpur in 1959. In the canteen of Harcourt Butler Technological Institute at Agricultural Gardens, Indian Institute of Technology, Kanpur started functioning. The institute moved to its present location in 1963. IIT Kanpur stands 4th in the engineering category of the NIRF 2024 ranking.
Course | Specialization | Fees (Rs. in Thousands) | Duration (Years) |
---|---|---|---|
IIT Fee Structure for M.Tech. | Aerospace Engineering | 36.65 | 2 |
Biological Sciences and Bioengineering | 36.65 | 2 | |
Chemical Engineering | 36.65 | 2 | |
Civil Engineering | 36.65 | 2 | |
Computer Science and Engineering | 36.65 | 2 | |
MS | Aerospace Engineering | 36.65 | 2 |
Chemical Engineering | 36.65 | 2 | |
Civil Engineering | 36.65 | 2 | |
Cognitive Science | 36.65 | 2 | |
Computer Science and Engineering | 36.65 | 2 | |
M.Sc. | Chemistry | 28.65 | 2 |
Mathematics | 28.65 | 2 | |
Physics | 28.65 | 2 | |
Statistics | 28.65 | 2 | |
M.Des | 36.65 | 2 | |
Course | Specialization | IIT Fees (Rs. in Lakhs) | Duration (Years) |
IIT Fee Structure for B.Tech. | 11.67 | 2 | |
BS | Mathematics and Scientific Computing | 8.31 | 4 |
Chemistry | 8.31 | 4 | |
Economics | 8.31 | 4 | |
Physics | 8.31 | 4 | |
Earth Sciences | 8.31 | 4 | |
MBA | 2.97 | 2 | |
M.Des | 36.65 | 2 |
Indian Institute of Technology, Madras: The third institute which has been recognized as a national institute is the Indian Institute of Technology, Madras. IIT Madras was established in 1959. At the time of its establishment, the Indian Institute of Technology, Madras got assistance from the former government of West Germany, both financially and technically. In a stretch of four years, starting from 2016 to 2019, the IIT Madras has been ranked as the top engineering institute in India. IIT Madras remains first in the NIRF 2024 Ranking for the 6th year in a row.
Course | Specialization | IIT Fees (Rs. in Thousands) | Duration (Years) |
---|---|---|---|
IIT Fee Structure for M.Tech. | Computer Science and Engineering | 28.95 | 2 |
Thermal Engineering | 28.95 | 2 | |
Chemical Engineering | 28.95 | 2 | |
Design Engineering | 28.95 | 2 | |
Ocean Engineering | 28.95 | 2 | |
MS | Metallurgical and Material Engineering | 26.85 | 3 |
Aerospace Engineering | 26.85 | 3 | |
Applied Mechanics | 26.85 | 3 | |
Biotechnology | 26.85 | 3 | |
Chemical Engineering | 26.85 | 3 | |
M.Sc. | Chemistry | 20.32 | 2 |
Mathematics | 20.32 | 2 | |
Physics | 20.32 | 2 | |
Course | Specialization | Fees (Rs. in Lakhs) | Duration (Years) |
Dual Degree | B.Tech and M.Tech Engineering Design | 11.80 | 5 |
B.Tech and M.Tech Electrical Engineering | 8.26 | 5 | |
B.Tech and M.Tech Biological Engineering | 8.26 | 5 | |
IIT Fee Structure for B.Tech. | 8.58 | 4 | |
MBA | 6.35 | 2 | |
MBA | 8 | 2 | |
Executive MBA | 13 | 2 |
Indian Institute of Technology, Delhi: The Government of India established the Indian Institute of Technology, Delhi in 1961 but got the status of an Institute of National Importance in 1963. In the year 2018, it has been acknowledged as the Institute of Eminence. The NIRF 2024 ranking of IIT Delhi in the engineering category is 2nd.
Course | Specialization | Fees (Rs. in Thousands) | Duration (Years) |
---|---|---|---|
M.Sc. | Chemistry | 85.80 | 2 |
Mathematics | 85.80 | 2 | |
Physics | 85.80 | 2 | |
Course | Specialization | Fees (Rs. in Lakhs) | Duration (Years) |
IIT Fee Structure for M.Tech. | Applied Optics | 2.60 | 2 |
Atmospheric Oceanic Science and Technology | 2.60 | 2 | |
Biomedical Engineering | 2.60 | 2 | |
Chemical Engineering | 2.60 | 2 | |
Communications Engineering | 2.60 | 2 | |
IIT BTech fees structure | 8.58 | 4 | |
MS | Applied Mechanics | 2.60 | 2 |
Biological Sciences | 2.60 | 2 | |
Chemical Engineering | 2.60 | 2 | |
Civil Engineering | 2.60 | 2 | |
Electrical Engineering | 2.60 | 2 | |
Dual Degree | B.Tech and M.Tech Chemical Engineering | 12.45 | 5 |
B.Tech and M.Tech Computer Science and Engineering | 12.45 | 5 | |
B.Tech and M.Tech Mathematics and Computing | 12.45 | 5 | |
B.Tech and M.Tech Biochemical Engineering and Biotechnology | 12.45 | 5 | |
MBA | 9.60 | 2 | |
Technology Management Part-Time | 11.70 | 2 | |
Telecommunication Systems Management | 8.80 | 3 | |
Executive MBA Technology Management | 10.80 | 3 | |
M.Des Industrial Design | 3.30 | 2 |
S. No. | Name | Short Name | State |
---|---|---|---|
1 | Indian Institute of Technology, Madras | IITM | Tamil Nadu |
2 | Indian Institute of Technology, Delhi | IITD | Delhi |
3 | Indian Institute of Technology, Bombay | IITB | Maharastra |
4 | Indian Institute of Technology, Kanpur | IITK | Uttar Pradesh |
5 | IITR | Uttarakhand | |
6 | Indian Institute of Technology, Kharagpur | IITKGP | West Bengal |
7 | IITG | Assam | |
8 | IITH | Telangana | |
9 | IITI | Madhya Pradesh | |
10 | IIT (BHU) | Uttar Pradesh | |
11 | IIT (ISM) | Jharkhand | |
12 | IITGN | Gujarat | |
13 | IITRPR | Punjab | |
14 | IITJ | Rajasthan | |
15 | IITMandi | Himachal Pradesh | |
16 | IITP | Bihar | |
17 | IITBBS | Odisha | |
18 | IITTP | Andhra Pradesh | |
19 | IITJM | Jammu & Kashmir | |
20 | IITPKD | Kerala | |
21 | IITBH | Chattishgarh | |
22 | IITDH | Karnataka | |
23 | IITGOA | Goa |
IIT are an autonomous public technical and research university located in India. They are governed by the Institutes of Technology Act, 1961 which has declared them as institutions of national importance and lays down their powers, duties, and framework for governance.
This a vague question because it depends on the candidate and their merit as well. In 2014, 13.6 lakhs students sat for the IIT-JEE exams and only 9,784 seats were available in all the IITs put together. That's an acceptance rate of only 0.7 per cent. Even though the IIT-JEE exam is extremely tough, the number of aspirants keeps on increasing every year.
Not every IITian leaves the campus with a job offer. A country where a bunch of engineers are graduating every year it's hard for even the top institutions to guarantee 100 per cent placements.
With 64 percentile and a CRL rank around 5.4 lakh in JEE Mains 2025, getting admission in any NIT or IIIT is very unlikely, especially in the general category. Most NITs close their admissions below a rank of 1.5 lakh, and even the newer NITs usually fill seats by around 3 to 3.5 lakh rank. IIITs generally have closing ranks below 3 lakh.
Instead, you can try for state government engineering colleges through your state counselling or look for private engineering colleges that have lower cutoff ranks. Another option is to explore management quota or direct admission routes if available.
HEY THERE!!!
Hello Aspirant,
If your B.Arch rank is approximately 30,000 in JEE in general category, it might not be easy to get admission into DR-CUET (Delhi Regional Centre of the Central University of Technology) or comparable or significantly better institutions, and therefore, the cut-off is much earlier for general candidates in good reputation colleges at about a range of 5000-15,000 rank. That said, you may still have a chance at newer or even less reputed NITs, SPAs, or GFTIs as an option at JOSAA or CSAB; you are recommended to apply in all rounds of counselling, keep open state-level architecture colleges too, and explore private universities that are accepting NATA or JEE B.Arch scores.
With a JEE B.Arch rank of 30,000, getting admission in DCRUST is not possible because their cutoff ranks are much lower and they mainly consider NATA scores, not JEE Paper 2.
You can try these options instead:
Apply to other colleges accepting NATA scores.
Consider management quota seats in private colleges.
Prepare and appear for NATA exam for better chances.
With a JEE Advanced rank of 20,340, your son can likely get admission in newer IITs like IIT Bhubaneswar, Gandhinagar, Ropar, Mandi, Indore, Patna, or Jodhpur, mostly in less competitive branches.
Top IITs and popular branches like CS or ECE are unlikely.
A flight attendant ensures passenger safety and comfort during flights. Key duties include conducting safety checks, assisting passengers, serving food and drinks, and managing emergencies. They must be well-trained in safety procedures and customer service. A high school diploma is typically required, followed by rigorous training to qualify for the role.
A Flight Engineer monitors and operates an aircraft’s complex systems like engines, fuel, and hydraulics during flight, ensuring optimal performance and safety. They assist pilots with technical issues, conduct inspections, and maintain records. This role requires strong technical knowledge, problem-solving, and communication skills. Training usually involves a degree in aviation or aerospace engineering and specialised certification.
An Aircrew Officer operates and navigates aircraft, ensuring safe flights and compliance with aviation regulations. Key duties include managing flight systems, conducting pre- and post-flight checks, and adhering to safety standards. The role typically requires working five days a week, with around 120 flight hours monthly. Employment may be contractual or permanent, depending on the airline.
An aerospace engineer designs, develops, tests, and maintains aircraft, spacecraft, and related systems. They apply physics and engineering principles to improve aerospace technologies, often working in aviation, defence, or space sectors. Key tasks include designing components, conducting tests, and performing research. A bachelor’s degree is essential, with higher roles requiring advanced study. The role demands analytical skills, technical knowledge, precision, and effective communication.
An air hostess, or flight attendant, ensures passenger safety and comfort during flights. Responsibilities include safety demonstrations, serving meals, managing the cabin, handling emergencies, and post-flight reporting. The role demands strong communication skills, a calm demeanour, and a service-oriented attitude. It offers opportunities to travel and work in the dynamic aviation and hospitality industry.
An aeronautical engineer designs, develops, tests, and maintains aircraft and related systems. They work on components like engines and wings, ensuring performance, safety, and efficiency. The role involves simulations, flight testing, research, and technological innovation to improve fuel efficiency and reduce noise. Aeronautical engineers collaborate with teams in aerospace companies, government agencies, or research institutions, requiring strong skills in physics, mathematics, and engineering principles.
A Safety Manager ensures workplace safety by developing policies, conducting training, assessing risks, and ensuring regulatory compliance. They investigate incidents, manage workers’ compensation, and handle emergency responses. Working across industries like construction and healthcare, they combine leadership, communication, and problem-solving skills to protect employees and maintain safe environments.
An airline pilot operates aircraft to transport passengers and cargo safely. Responsibilities include pre-flight planning, in-flight operations, team collaboration, and post-flight duties. Pilots work in varying schedules and environments, often with overnight layovers. The demand for airline pilots is expected to grow, driven by retirements and industry expansion. The role requires specialized training and adaptability.
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.
An architect plans and designs buildings, ensuring they are safe, functional, and aesthetically pleasing. They collaborate with clients, engineers, and contractors throughout the construction process. Key skills include creativity, design software proficiency, and knowledge of building codes. In India, a 5-year B.Arch degree and registration with the Council of Architecture are required to practise professionally.
Having a landscape architecture career, you are involved in site analysis, site inventory, land planning, planting design, grading, stormwater management, suitable design, and construction specification. Frederick Law Olmsted, the designer of Central Park in New York introduced the title “landscape architect”. The Australian Institute of Landscape Architects (AILA) proclaims that "Landscape Architects research, plan, design and advise on the stewardship, conservation and sustainability of development of the environment and spaces, both within and beyond the built environment". Therefore, individuals who opt for a career as a landscape architect are those who are educated and experienced in landscape architecture. Students need to pursue various landscape architecture degrees, such as M.Des, M.Plan to become landscape architects. If you have more questions regarding a career as a landscape architect or how to become a landscape architect then you can read the article to get your doubts cleared.
Urban Planning careers revolve around the idea of developing a plan to use the land optimally, without affecting the environment. Urban planning jobs are offered to those candidates who are skilled in making the right use of land to distribute the growing population, to create various communities.
Urban planning careers come with the opportunity to make changes to the existing cities and towns. They identify various community needs and make short and long-term plans accordingly.
A plumber installs, maintains, and repairs water, gas, and waste systems in homes and buildings. Their duties include fixing leaks, installing fixtures, testing systems, ensuring safety compliance, and working with other professionals on projects. They also document repairs and may supervise apprentices. Plumbers play a key role in ensuring public health and the smooth functioning of essential utilities.
Individuals who opt for a career as construction managers have a senior-level management role offered in construction firms. Responsibilities in the construction management career path are assigning tasks to workers, inspecting their work, and coordinating with other professionals including architects, subcontractors, and building services engineers.
Individuals who opt for a career as an environmental engineer are construction professionals who utilise the skills and knowledge of biology, soil science, chemistry and the concept of engineering to design and develop projects that serve as solutions to various environmental problems.
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.
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.
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.
A career as a Petroleum engineer is concerned with activities related to producing petroleum. These products can be in the form of either crude oil or natural gas. Petroleum engineering also requires the exploration and refinement of petroleum resources. Therefore, a career as a petroleum engineer comes up with oil and gas onshore jobs. There are also desk jobs in the petroleum industry. In layman’s terms, a petroleum engineer is a person who finds the best way to drill and extract oil from oil wells. Individuals who opt for a career as petroleum engineer also tries to find new ways to extract oil in an efficient manner.
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.
A career as a civil engineer is of great importance for the infrastructural growth of the country. It is one of the most popular professions and there is great professional as well as personal growth in this civil engineering career path. There is job satisfaction in this civil engineering career path, but it also comes with a lot of stress, as there are multiple projects that need to be handled and have to be completed on time. Students should pursue physics, chemistry and mathematics in their 10+2 to become civil engineers.
A career as a Transportation Engineer is someone who takes care of people's safety. He or she is responsible for designing, planning and constructing a safe and secure transportation system. The transportation sector has seen a huge transformation and is growing day by day and improving every day.
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.
A Loco Pilot operates trains, ensuring safe and timely transport of passengers or goods. Starting as an Assistant Loco Pilot, one can progress to senior roles with experience. The job demands technical knowledge, focus, and adherence to safety protocols. It involves coordination with train staff and may require working long hours under pressure.
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