.
Telecommunication Engineering : Remuneration
Remuneration of the telecommunication engineer depends upon the status of the industry, experience, qualification and ability of the employee. When compared with the government sectors, private firms offer much better salary. Depending upon the firm, fresh graduates can expect an initial monthly salary of Rs. 10,000 and above. With a few years of experience it may gradually increase to Rs. 20,000 or more per month.
Telecommunication Engineering : Institutes(INDIA)
Course Name :B.E. Electronics and Telecommunication Engineering
Total found 75 List 0 to 15 Next >>
Amrutvahini College of Engineering, Ahmednagar( Maharashtra )
Sangamner , Ahmednagar ( Ahmednagar Dist. ) - 422608
Army Institute of Technology, Pune( Maharashtra )
Dighi Hills, Alandi Road , Pune ( Pune Dist. ) - 411015
Assam Engineering College, Guwahati( Assam )
P.O.Jalukbari , Guwahati ( Kamrup (Guwahati) Dist. ) - 781013
Bengal Engineering and Science University, Howrah( West Bengal )
P.O.Botanical Garden, Shibpur , Howrah ( Howrah Dist. ) - 711103
Bhilai Institute of Technology, Durg( Chhattisgarh )
Bhilai House , Durg ( Durg Dist. ) - 491001
Cusrow Wadia Institute of Technology, Pune( Maharashtra )
19, Late Prin. V. K. Joag Path , Pune ( Pune Dist. ) - 411001
D.K.T.E. Society's Textile and Engineering Institute, Ichalkaranji( Maharashtra )
Rajwada, P.O.Box. No.130 , Ichalkaranji ( Kolhapur Dist. ) - 416115
Devi Ahilya Vishwavidyalaya : Institute of Engineering and Technology, Indore( Madhya Pradesh )
DAVV, Khandwa Road , Indore ( Indore Dist. ) - 452017
Dr. D. Y. Patil College of Engineering, Pune( Maharashtra )
Sr. No. 124 & 126, A/p Ambi, MIDC Road, Tal Maval, Talegaon Dabhade , Pune ( Pune Dist. ) - 410506
Goa College of Engineering, Ponda( Goa )
Farmagudi , Ponda ( South Goa Dist. ) - 403401
Government College of Engineering, Amravati( Maharashtra )
Kathora Naka , Amravati ( Amravati Dist. ) - 444604
Government College of Engineering, Aurangabad( Maharashtra )
Railway Station Road, Osmanpura , Aurangabad ( Aurangabad Dist. ) - 431005
Government Engineering College, Bilaspur( Chhattisgarh )
Koni , Bilaspur ( Bilaspur Dist. ) - 495009
Government Engineering College, Jagdalpur( Chhattisgarh )
Jagdalpur ( Bastar Dist. ) - 494005
J.S.P. (Janata Shikshan Prasarak) Mandal's Babasaheb Naik College of Engineering, Pusad( Maharashtra )
215 Karla Road, Near Sooth Girni , Pusad ( Yavatmal Dist. ) - 445215
Course Name :M.E. Electronics and Telecommunication Engineering
Jabalpur Engineering College, Jabalpur( Madhya Pradesh )
Gokalpur, Ranjhi , Jabalpur ( Jabalpur Dist. ) - 482011
Jadavpur University : Faculty of Engineering and Technology, Kolkata( West Bengal )
Kolkata
( Kolkata Dist. ) - 700032
Jai Narain Vyas University : Faculty of Engineering and Architecture, Jodhpur( Rajasthan )
Bhagat ki Kothi, Pali Road , Jodhpur ( Jodhpur Dist. ) - 342001
Kolhapur Institute of Technology's college of Engineering, Kolhapur( Maharashtra )
Gokul Shirgaon , Kolhapur ( Kolhapur Dist. ) - 416234
Terna Engineering College, Navi Mumbai( Maharashtra )
Plot No. 12, Sector-22, Opp. Nerul Railway Station, Phase-II, Nerul (W) , Navi Mumbai ( Thane Dist. ) - 400706
Vivekanand Education Society's Institute of Technology (V.E.S.I.T.), Mumbai( Maharashtra )
Sindhi Society, Chembur , Mumbai ( Mumbai Dist. ) - 400071
Course Name :Post Graduate Diploma in Telecommunication
University Of Hyderabad Centre For Distance Education, Hyderabad( Andhra Pradesh )
Centre for Distance Education, University of Hyderabad, Central University P.O. , Hyderabad ( Hyderabad Dist. ) - 500046
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Showing posts with label engineering career. Show all posts
Showing posts with label engineering career. Show all posts
Tuesday, November 23, 2010
career options in Telecommunication engineering 3
Telecommunication Engineering : Job Prospects & Career Options
The career prospects for Telecom engineers are increasing rapidly both in India and abroad because of the boom in this industry. Telecommunication Engineers are concerned with establishing communication by means of telephones, telegraphs, radar, radio, tele printers etc. Their work deals with designing, manufacturing, operating, maintaining, installing and troubleshooting of telecom devices. Telephone industry, computer industry, microwave radio systems, satellite communications, earth stations using satellite dishes, cellular phone industry, fiber optics communication systems etc. are some of the areas which provide job opportunities to the Telecommunication Engineers.
Plenty of job opportunities are available for graduates in the telephone industry. They could be employed as engineers/ test engineers, software/ application engineers, product managers, customer support staff, installers/ repairers, power reactor operators, power distributors/ dispatchers and many more.
Cable and satellite networks, information and broadcasting sectors , railways or police wireless organizations, aerospace industry, telecommunication service providers, mobile phone service providers are some other areas that one could get a job. They can also find employment in this field as design development, production, quality assurance, sales, servicing and software engineers.
Graduates with excellent talent in designing, installing and troubleshooting telecom networks are in great demand in telecommunication companies such as VSNL, Airtel, Vodafone, BSNL, Reliance, Tata Indicom, Nokia, Siemens, Motorola etc. They can work as Telecom hardware and software engineer, telecom system solutions engineer, real-time computer systems developer, performance optimizer, DSP chip design engineer, image processor, video engineer, artificial intelligence and neural network engineer.
Employment opportunities are available in the filed of paramilitary force like the BSF, CRPF and defense-related organisations. Candidates with B.E/ B.Tech in telecommunication with 2 or 3 years experience can works as teachers and those with ME / M.Tech can work as lecturers or researchers etc. Those with MBA graduation can obtain managerial jobs.
..
Some of the career prospects in the field of telecommunication engineering are :
• Research and Development : Telecommunication engineers can work in the field of research and development, which involves testing and conducting studies on new materials and chemical interactions.
• Production : The production engineers are engaged in developing and building the materials, machinery, assembly line operations and quality standardization.
• Sales and Marketing : Telecommunication engineers with the ability to understand customer needs, evaluate potential applications and advise on matters regarding marketing can work in the field of sales and marketing.
• Teaching : People with excellent academic record, great communication skills, great interest in teaching, and excellent command over the subject can work as teachers in this field. They are responsible for completing the syllabus of the students within the stipulated period and should handle all type of teaching work in accordance with the task.
The career prospects for Telecom engineers are increasing rapidly both in India and abroad because of the boom in this industry. Telecommunication Engineers are concerned with establishing communication by means of telephones, telegraphs, radar, radio, tele printers etc. Their work deals with designing, manufacturing, operating, maintaining, installing and troubleshooting of telecom devices. Telephone industry, computer industry, microwave radio systems, satellite communications, earth stations using satellite dishes, cellular phone industry, fiber optics communication systems etc. are some of the areas which provide job opportunities to the Telecommunication Engineers.
Plenty of job opportunities are available for graduates in the telephone industry. They could be employed as engineers/ test engineers, software/ application engineers, product managers, customer support staff, installers/ repairers, power reactor operators, power distributors/ dispatchers and many more.
Cable and satellite networks, information and broadcasting sectors , railways or police wireless organizations, aerospace industry, telecommunication service providers, mobile phone service providers are some other areas that one could get a job. They can also find employment in this field as design development, production, quality assurance, sales, servicing and software engineers.
Graduates with excellent talent in designing, installing and troubleshooting telecom networks are in great demand in telecommunication companies such as VSNL, Airtel, Vodafone, BSNL, Reliance, Tata Indicom, Nokia, Siemens, Motorola etc. They can work as Telecom hardware and software engineer, telecom system solutions engineer, real-time computer systems developer, performance optimizer, DSP chip design engineer, image processor, video engineer, artificial intelligence and neural network engineer.
Employment opportunities are available in the filed of paramilitary force like the BSF, CRPF and defense-related organisations. Candidates with B.E/ B.Tech in telecommunication with 2 or 3 years experience can works as teachers and those with ME / M.Tech can work as lecturers or researchers etc. Those with MBA graduation can obtain managerial jobs.
..
Some of the career prospects in the field of telecommunication engineering are :
• Research and Development : Telecommunication engineers can work in the field of research and development, which involves testing and conducting studies on new materials and chemical interactions.
• Production : The production engineers are engaged in developing and building the materials, machinery, assembly line operations and quality standardization.
• Sales and Marketing : Telecommunication engineers with the ability to understand customer needs, evaluate potential applications and advise on matters regarding marketing can work in the field of sales and marketing.
• Teaching : People with excellent academic record, great communication skills, great interest in teaching, and excellent command over the subject can work as teachers in this field. They are responsible for completing the syllabus of the students within the stipulated period and should handle all type of teaching work in accordance with the task.
career options in Telecommunication engineering 2
Telecommunication Engineering : Eligibility & Course Areas
Students who have a strong foundation in Physics, Chemistry and Mathematics can opt for a career in Telecommunication engineering. To become a telecommunication engineer one should have a graduate degree (B.E / B. Tech) or postgraduate degree (M.E) or at least a diploma in Telecommunication engineering.
Educational: The basic eligibility criteria for B.E / B.Tech is higher secondary or 10+2 with Physics, Chemistry and Mathematics with fairly high percentage of marks in aggregate. In some universities diploma holders in telecommunication engineering or those with B.Sc. degree are eligible for admission to the B.E. course. After the bachelor's degree, one can go in for a post graduate degree; i.e. M.E/ M.Tech in telecommunication engineering. Some institutes offer MBA course besides certificate, diploma and post graduate diploma courses in telecommunication, while some institutes offer various certificate and diploma and post graduate diploma courses. The basic eligibility for MBA and diploma courses is graduation and for post graduate diploma courses it is B.Tech / B.E
Selection: Admission to the B.E/ B.Tech courses is made on the basis of the marks obtained in +2 and the merit in the entrance examinations. Entrance to the IIT's is through the JEE' (Joint Entrance Exam) and for other major institutions through AIEEE (All India Engineering/Pharmacy/Architecture Entrance Examination) or their own separate entrance exams and other state level and national level exams.
A student with B.Tech degree in telecommunication from an A.I.C.T.E (All India Council of Technical Education) approved University can get admission to M.E/ M.Tech courses.
Symbiosis Institute of telecom management admit students to MBA course on the basis of the marks obtained in Symbiosis National Aptitude Test (SNAP), Group Discussion and Personal Interview. In Amity Institute of Telecom Technology and Management, Noida the admission is based on CAT, MAT and GMAT score.
The Institute of Electronics and Telecommunication Engineers (IETE) is the National Apex Professional body of electronics and telecommunication, computer and IT professionals. The institute conducts both the graduate ship examination (AMIETE – Associate Membership of Institute of Electronics and Telecommunication Engineers) and diploma examination (DIPIETE – Diploma of Institute of Electronics and Telecommunication Engineers) in Electronics and Telecommunication and Computer Science and Engineering streams. A pass in AMIETE examination is recognised by Government of India for the purposes of recruitment to superior posts and services under the Central Government while a pass in DIPIETE examination is recognised by the Ministry of HRD, Govt. of India for the purpose of employment to posts and services under the Central Government in the appropriate field. The institute also conducts postgraduate level course ALCCS (Advanced Level Course in Computer Science) which 9s equivalent to M. Tech in Computer Science and is recognised by the Ministry of HRD for the appointment to superior posts and services under the Central Government.
Duration and Course Content : BE / B.Tech courses are of 4 years duration and the post graduate diploma, ME/ M.Tech and MBA courses are of 2 years. The duration of the diploma courses are 1 year and that of certificate course is 3 months.
A course on telecommunication teach students on various telecommunication devices such as mobile phones, cable TV, satellites, computer networking, radar, navigation etc. Particular emphasis is placed on wireless communication, mobile telephony, GSM architecture, internet protocol media system, CDMA, GPRS network, symbian operating system, voice over internet protocol, designing optical networks and understanding and designing data network etc.
Personal skill:
The personal attributes needed for a telecommunication engineer is good communication skills, organisational ability, skills in evaluating situations, making quick decisions and solving problems. Excellent analytical and teamwork skills is a necessity, as is a sound knowledge of both computer hardware and software. They should possess a creative and inventive mind, an eye for detail, sustained attention and be very adept in public speech, technical writing and project management. Besides these, good knowledge of science, mathematics and strong background in computer hardware and C-language programming is very essential for the telecommunication engineer.
Students who have a strong foundation in Physics, Chemistry and Mathematics can opt for a career in Telecommunication engineering. To become a telecommunication engineer one should have a graduate degree (B.E / B. Tech) or postgraduate degree (M.E) or at least a diploma in Telecommunication engineering.
Educational: The basic eligibility criteria for B.E / B.Tech is higher secondary or 10+2 with Physics, Chemistry and Mathematics with fairly high percentage of marks in aggregate. In some universities diploma holders in telecommunication engineering or those with B.Sc. degree are eligible for admission to the B.E. course. After the bachelor's degree, one can go in for a post graduate degree; i.e. M.E/ M.Tech in telecommunication engineering. Some institutes offer MBA course besides certificate, diploma and post graduate diploma courses in telecommunication, while some institutes offer various certificate and diploma and post graduate diploma courses. The basic eligibility for MBA and diploma courses is graduation and for post graduate diploma courses it is B.Tech / B.E
Selection: Admission to the B.E/ B.Tech courses is made on the basis of the marks obtained in +2 and the merit in the entrance examinations. Entrance to the IIT's is through the JEE' (Joint Entrance Exam) and for other major institutions through AIEEE (All India Engineering/Pharmacy/Architecture Entrance Examination) or their own separate entrance exams and other state level and national level exams.
A student with B.Tech degree in telecommunication from an A.I.C.T.E (All India Council of Technical Education) approved University can get admission to M.E/ M.Tech courses.
Symbiosis Institute of telecom management admit students to MBA course on the basis of the marks obtained in Symbiosis National Aptitude Test (SNAP), Group Discussion and Personal Interview. In Amity Institute of Telecom Technology and Management, Noida the admission is based on CAT, MAT and GMAT score.
The Institute of Electronics and Telecommunication Engineers (IETE) is the National Apex Professional body of electronics and telecommunication, computer and IT professionals. The institute conducts both the graduate ship examination (AMIETE – Associate Membership of Institute of Electronics and Telecommunication Engineers) and diploma examination (DIPIETE – Diploma of Institute of Electronics and Telecommunication Engineers) in Electronics and Telecommunication and Computer Science and Engineering streams. A pass in AMIETE examination is recognised by Government of India for the purposes of recruitment to superior posts and services under the Central Government while a pass in DIPIETE examination is recognised by the Ministry of HRD, Govt. of India for the purpose of employment to posts and services under the Central Government in the appropriate field. The institute also conducts postgraduate level course ALCCS (Advanced Level Course in Computer Science) which 9s equivalent to M. Tech in Computer Science and is recognised by the Ministry of HRD for the appointment to superior posts and services under the Central Government.
Duration and Course Content : BE / B.Tech courses are of 4 years duration and the post graduate diploma, ME/ M.Tech and MBA courses are of 2 years. The duration of the diploma courses are 1 year and that of certificate course is 3 months.
A course on telecommunication teach students on various telecommunication devices such as mobile phones, cable TV, satellites, computer networking, radar, navigation etc. Particular emphasis is placed on wireless communication, mobile telephony, GSM architecture, internet protocol media system, CDMA, GPRS network, symbian operating system, voice over internet protocol, designing optical networks and understanding and designing data network etc.
Personal skill:
The personal attributes needed for a telecommunication engineer is good communication skills, organisational ability, skills in evaluating situations, making quick decisions and solving problems. Excellent analytical and teamwork skills is a necessity, as is a sound knowledge of both computer hardware and software. They should possess a creative and inventive mind, an eye for detail, sustained attention and be very adept in public speech, technical writing and project management. Besides these, good knowledge of science, mathematics and strong background in computer hardware and C-language programming is very essential for the telecommunication engineer.
career options in Telecommunication engineering 1
With the explosion of electronic media, telecom industry has become one of the fast growing sectors in every corner of the world. This field plays a major role in our day to day life and its technology has helped us to see, hear and communicate over vast distances. In this era of information and communication, more digitally enhanced communication devices like mobiles, internet and satellites are paving way to expansion for the wider reach of communication technology. As a result, there is a great demand for trained professionals in this industry and hence the importance of Telecommunication Engineering.
Telecommunication, a major field within Electronic engineering, is concerned with all types of information and transmission networks.
It is the exchange of information over a distance, through electronic means and deals with communication systems such as cables, radio, satellite communications, TV, radar, navigational communication equipments etc. Telecommunication engineering is involved with the designing, manufacturing and operation of telecommunication devices. This exciting field of engineering is gaining tremendous popularity and the wide area of services provided by the telecom sector makes it a lucrative career for the youngsters with a range of opportunities.
Telecommunication engineers have always been in great demand because of the growing requisite of digital and wireless communication networks. It is an apt career for those who are interested in the fields of microelectronic devices, signal processing, data networking, coding, compression, encryption and transmission. Usually telecommunication engineers deal with the line, wireless or radio communication. The major tasks performed by them are designing and installation of telecommunications equipment according to the clients interest. They are responsible for the network maintenance, quality control of the products and developing software in the telecom industry, and troubleshooting. A telecommunication engineer should possess good knowledge of fiber optics, cellular technology, laser technology etc.
Career prospects in this highly specialised field is based on the candidates specialized skill and training, which varies from basic circuit designers to strategic mass developers. The main focal areas of telecommunication engineering are research and development, production, servicing , sales and marketing and teaching. Graduates with specialization in these areas can be employed as design development engineer, production engineer, quality assurance engineer, sales engineer, servicing engineer and software engineers.
Telecommunication, a major field within Electronic engineering, is concerned with all types of information and transmission networks.
It is the exchange of information over a distance, through electronic means and deals with communication systems such as cables, radio, satellite communications, TV, radar, navigational communication equipments etc. Telecommunication engineering is involved with the designing, manufacturing and operation of telecommunication devices. This exciting field of engineering is gaining tremendous popularity and the wide area of services provided by the telecom sector makes it a lucrative career for the youngsters with a range of opportunities.
Telecommunication engineers have always been in great demand because of the growing requisite of digital and wireless communication networks. It is an apt career for those who are interested in the fields of microelectronic devices, signal processing, data networking, coding, compression, encryption and transmission. Usually telecommunication engineers deal with the line, wireless or radio communication. The major tasks performed by them are designing and installation of telecommunications equipment according to the clients interest. They are responsible for the network maintenance, quality control of the products and developing software in the telecom industry, and troubleshooting. A telecommunication engineer should possess good knowledge of fiber optics, cellular technology, laser technology etc.
Career prospects in this highly specialised field is based on the candidates specialized skill and training, which varies from basic circuit designers to strategic mass developers. The main focal areas of telecommunication engineering are research and development, production, servicing , sales and marketing and teaching. Graduates with specialization in these areas can be employed as design development engineer, production engineer, quality assurance engineer, sales engineer, servicing engineer and software engineers.
career options in genitic engineering 5
Institutes in USA
- Ball State University:: Director of Admissions, Ball State University, Office of Admissions, Muncie, IN 47306 -1099
- California State University,Fullerton.:: Admissions Director, California State University, Fullerton. P.O Box 34080, Fullerton, CA-92634-9480
- Carnegie Mellon University:: Director of Admissions, Carnegie Mellon University, 5000 Forbes Avenue, Pittsburgh, PA 15213 - 3891
- Iowa State University of Science and Technology:: Associate Director of Freshman Admissions, Iowa State University of Science and Technology, Ames, IA 50011
- Massachusetts Institute of Technology:: Director of Admissions, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA-02139-4307
- New College of the University of South Florida:: Acting Director of Admissions, New College of the University of South Florida, Sarasota, FL-34243-2197
- Purdue University:: Office of Admissions, Purdue University, Schleman Hall, West Lafayette, IN 47907-1080
- Rutgers State University of New Jersey,University College -Camden:: Assistant Vice President for University Undergraduate admissions, Rutgers State University of New Jersey, University College-Camden, P.O Box2101, New Brunswick, NJ08903-2101.
- Rutgress, State University of New Jersey, Camden College of Arts and Science:: Assistant Vice President for University Undergraduate admissions, Rutgers State University of New Jersey, Camden College of Arts and Science, P.O Box2101, New Brunswick, NJ08903-2101
- St:Cloud State University:: Director of Admissions, St:Cloud State University, St:Cloud,MN-56301-4498
- Texas A&M University:: Executive Director of Admissions and Records, Texas A&M University, 217 John J Koldus Building, College Station, TX 77843-1265
- The Ohio State University:: Admission Information and Application Requests, The Ohio State University, 3rd floor, Lincoln Tower, Columbus, OH43210
- University of California, Davis.:: Director Undergraduate Admissions,University of California, Davis, Davis, CA-95616
- University of Georgia:: Associate Director of Admissions, University of Georgia Athens, GA 30602
- University of Illinois at Urbana-Champaign:: Assistant Director of Admissions, University of Illionis at Urbana-Champaign, 10 Henry Administration Building, Urbana, IL-61820-5711
- University of Minnesota, Twin Cities Campus:: Director of Admisions, University of Minnesota, Twin Cities Campus, 240 Williamson, Minneapolis, MN-55455-0213
- University of Rochester:: Director of Admissions, University of Rochester, Meliora Hall, Intercampus Drive, Rochester, NY 14627-0001
- University of Washington:: Assistant Director of Admissions, University of Washington, Seattle, WA-98195
- University of Wisconsin-Madison:: University of Wisconsin-Madison, 140 Peterson Office Building, 750 University Avenue, Madison, WI 53706-1490
- Washington State University:: Director of Admissions, Washington State University, Office of Admissions, 342 French Administration Building, Pullman, WA-99164-1036
career options in genitic engineering 4
Remuneration
Genetic Engineers with a postgraduate degree can earn between 5000 Rs to 8000Rs / month whereas those with doctoral degrees can earn up to 10,000Rs/ month as a starting salary.
Institutes(INDIA)
Most institutes do not offer courses in Genetic Engineering as a special discipline but as a subsidiary in biotechnology, microbiology, biochemistry streams. Genetics is offered at the undergraduate level, at Kakatiya University, Warangal and Osmania University, Hyderabad, both in Andhra Pradesh. Some of the universities which offer genetic Engineering courses at postgraduate and doctorate levels are the Bio-Informatics Centre of Jawaharlal Nehru University (JNU)
New Delhi, Indian Institute of Technology (Kharagpur and Delhi), Delhi University, University of Calcutta, MKU-Coimbatore, Birla Institute of Technology (Pilani Rajasthan), University of Lucknow, Jadavpur University (Kolkata, West Bengal) etc.
Aadhar Institute, Jaipur( Rajasthan )
27,Kisaan Marg, Near Shiv Mandir, Mansingh Pura Tonk Road , Jaipur ( Jaipur Dist. ) - 302018
Aetitea Life Sciences, Chennai( Tamil Nadu )
Flat No: G1 Ground Floor, No. 13A, 13B, Jashwant Nagar, Mogappair West , Chennai ( Chennai Dist. ) - 600058
Best Biotek Research Labs (P) Ltd, Bangalore( Karnataka )
# 11, 5th cross, Off Nagarbhavi ring road, Byregowda layout, Near Balaji kripa enclave, Mallatha halli, Jnanabharathi post , Bangalore ( Bangalore (Bengaluru) Dist. ) - 560056
Biobrainz, Lucknow( Uttar Pradesh )
566/29 J, Jai Prakash Nagar, Alambagh , Lucknow ( Lucknow Dist. ) - 226005
Institute of Bio IT and Management, Thane( Maharashtra )
511, Paradise Towers, Nr Mc Donalds, Gokhale Roa , Thane ( Thane Dist. ) - 410019
Institute of Integrative Bioinformatics (I.O.I.B.), Jaipur( Rajasthan )
E-735, Nakul Path, Lal Kothi Scheme , Jaipur ( Jaipur Dist. ) - 203015
Life Teck Research Centre, Chennai( Tamil Nadu )
Old No. 60 / New No. 16, Senthil Andavar Street, Dhanalakshmi Colony, Vadapalani , Chennai ( Chennai Dist. ) - 600026
Nano Science and Technology Consortium, Noida( Uttar Pradesh )
C-56A/28, ( 2nd Floor), Sector 62 (Above Union Bank of India) , Noida ( Gautam Buddha Nagar Dist. ) - 201301
NeoGen Biosolutions, Chennai( Tamil Nadu )
No.12, MES Road, Ganapathypuram, East Tambaram , Chennai ( Chennai Dist. ) - 600059
Genetic Engineers with a postgraduate degree can earn between 5000 Rs to 8000Rs / month whereas those with doctoral degrees can earn up to 10,000Rs/ month as a starting salary.
Institutes(INDIA)
Most institutes do not offer courses in Genetic Engineering as a special discipline but as a subsidiary in biotechnology, microbiology, biochemistry streams. Genetics is offered at the undergraduate level, at Kakatiya University, Warangal and Osmania University, Hyderabad, both in Andhra Pradesh. Some of the universities which offer genetic Engineering courses at postgraduate and doctorate levels are the Bio-Informatics Centre of Jawaharlal Nehru University (JNU)
New Delhi, Indian Institute of Technology (Kharagpur and Delhi), Delhi University, University of Calcutta, MKU-Coimbatore, Birla Institute of Technology (Pilani Rajasthan), University of Lucknow, Jadavpur University (Kolkata, West Bengal) etc.
Aadhar Institute, Jaipur( Rajasthan )
27,Kisaan Marg, Near Shiv Mandir, Mansingh Pura Tonk Road , Jaipur ( Jaipur Dist. ) - 302018
Aetitea Life Sciences, Chennai( Tamil Nadu )
Flat No: G1 Ground Floor, No. 13A, 13B, Jashwant Nagar, Mogappair West , Chennai ( Chennai Dist. ) - 600058
Best Biotek Research Labs (P) Ltd, Bangalore( Karnataka )
# 11, 5th cross, Off Nagarbhavi ring road, Byregowda layout, Near Balaji kripa enclave, Mallatha halli, Jnanabharathi post , Bangalore ( Bangalore (Bengaluru) Dist. ) - 560056
Biobrainz, Lucknow( Uttar Pradesh )
566/29 J, Jai Prakash Nagar, Alambagh , Lucknow ( Lucknow Dist. ) - 226005
Institute of Bio IT and Management, Thane( Maharashtra )
511, Paradise Towers, Nr Mc Donalds, Gokhale Roa , Thane ( Thane Dist. ) - 410019
Institute of Integrative Bioinformatics (I.O.I.B.), Jaipur( Rajasthan )
E-735, Nakul Path, Lal Kothi Scheme , Jaipur ( Jaipur Dist. ) - 203015
Life Teck Research Centre, Chennai( Tamil Nadu )
Old No. 60 / New No. 16, Senthil Andavar Street, Dhanalakshmi Colony, Vadapalani , Chennai ( Chennai Dist. ) - 600026
Nano Science and Technology Consortium, Noida( Uttar Pradesh )
C-56A/28, ( 2nd Floor), Sector 62 (Above Union Bank of India) , Noida ( Gautam Buddha Nagar Dist. ) - 201301
NeoGen Biosolutions, Chennai( Tamil Nadu )
No.12, MES Road, Ganapathypuram, East Tambaram , Chennai ( Chennai Dist. ) - 600059
career options in genitic engineering 3
Job Prospects & Career Options
There is an increasing demand for genetic engineers
in India as well as abroad. Genetic engineers are mainly absorbed in medical and pharmaceutical industries, the agricultural sector, and the research and development departments of the government and private sectors.
They can also take up teaching as an option.
Genetic engineering
involves developing hybrid varieties of plants, making a plant disease resistant by transferring genes from a plant that already has the characteristic, introducing Genetically Modified foods by changing the colour, size, texture of the produce of plants such as fruits and vegetables. GE in humans can be to correct severe hereditary defects by introducing normal genes into cells in place of missing or defective ones.
A team headed by Ian Wilmut and his colleagues at the Roslin Institute in Edinburgh, Scotland made history when they produced a lamp named Dolly, an exact genetic copy or clone of a sheep. This landmark discovery of the regeneration of an exact replica of a whole animal by transferring nuclei from the cells of that animal to unfertilized eggs of another animal, without the help of a male counterpart, has given researches a wide area open to be discovered. With this discovery, genetic engineering has become globally recognized.
There is an increasing demand for genetic engineers
in India as well as abroad. Genetic engineers are mainly absorbed in medical and pharmaceutical industries, the agricultural sector, and the research and development departments of the government and private sectors.
They can also take up teaching as an option.
Genetic engineering
involves developing hybrid varieties of plants, making a plant disease resistant by transferring genes from a plant that already has the characteristic, introducing Genetically Modified foods by changing the colour, size, texture of the produce of plants such as fruits and vegetables. GE in humans can be to correct severe hereditary defects by introducing normal genes into cells in place of missing or defective ones.
A team headed by Ian Wilmut and his colleagues at the Roslin Institute in Edinburgh, Scotland made history when they produced a lamp named Dolly, an exact genetic copy or clone of a sheep. This landmark discovery of the regeneration of an exact replica of a whole animal by transferring nuclei from the cells of that animal to unfertilized eggs of another animal, without the help of a male counterpart, has given researches a wide area open to be discovered. With this discovery, genetic engineering has become globally recognized.
career options in genitic engineering 2
Eligibility & Course Areas
Educational : A qualified genetic engineer, must have a graduate / postgraduate degree in genetics or related fields such as biotechnology, molecular biology, microbiology or biochemistry OR a doctorate (PhD) from a recognised university, based on 2-3 years of his own research under the guidance of a professor/lecturer.
The basic eligibility criteria for a graduate degree (BE / B.Tech) is 10+2 or equivalent examination, with Biology, Chemistry and Mathematics as well as genetics as part of the biology OR a bachelors degree in science or molecular biology.
Most institutes do not offer courses in Genetic Engineering as a special discipline but as a subsidiary in biotechnology, microbiology, biochemistry streams. Undergraduate and postgraduate courses in Biotechnology offer specialisation in genetic engineering.
Selection to the graduate courses ( BE / B.Tech ) is based on merit i.e the marks secured in the final exams of 10+2 and through entrance exams. Entrance to the IIT's is through JEE (Joint Entrance Exam) and for other institutions through their own separate entrance exams and other state level and national level exams. Apart from the IIT's, some other famous institutes also recognize JEE scores for selection. Selection to the postgraduate courses ( M.Sc / M.Tech) in different universities is through an All India Combined Entrance exam conducted by JNU, New Delhi and to IIT's through GATE in Two year/ 4 semester M.Tech courses and through JEE in five year integrated M.Tech courses in Biochemical engineering and Biotechnology
Personal Attributes:
To be a successful genetic engineer, one must have sharp analytical mind, an aptitude for research, high levels of concentration, eye for details, lively imagination, abundant physical stamina to put in long hours of work, ability to work as a team, moreover he should have a sound moral sense.
Educational : A qualified genetic engineer, must have a graduate / postgraduate degree in genetics or related fields such as biotechnology, molecular biology, microbiology or biochemistry OR a doctorate (PhD) from a recognised university, based on 2-3 years of his own research under the guidance of a professor/lecturer.
The basic eligibility criteria for a graduate degree (BE / B.Tech) is 10+2 or equivalent examination, with Biology, Chemistry and Mathematics as well as genetics as part of the biology OR a bachelors degree in science or molecular biology.
Most institutes do not offer courses in Genetic Engineering as a special discipline but as a subsidiary in biotechnology, microbiology, biochemistry streams. Undergraduate and postgraduate courses in Biotechnology offer specialisation in genetic engineering.
Selection to the graduate courses ( BE / B.Tech ) is based on merit i.e the marks secured in the final exams of 10+2 and through entrance exams. Entrance to the IIT's is through JEE (Joint Entrance Exam) and for other institutions through their own separate entrance exams and other state level and national level exams. Apart from the IIT's, some other famous institutes also recognize JEE scores for selection. Selection to the postgraduate courses ( M.Sc / M.Tech) in different universities is through an All India Combined Entrance exam conducted by JNU, New Delhi and to IIT's through GATE in Two year/ 4 semester M.Tech courses and through JEE in five year integrated M.Tech courses in Biochemical engineering and Biotechnology
Personal Attributes:
To be a successful genetic engineer, one must have sharp analytical mind, an aptitude for research, high levels of concentration, eye for details, lively imagination, abundant physical stamina to put in long hours of work, ability to work as a team, moreover he should have a sound moral sense.
career options in genitic engineering 1
INTRODUCTION
Genetic Engineering (GE) is a highly complicated and advanced branch of science which involves a wide range of techniques used in changing the genetic material in the DNA code in a living organism. 'Genetic Engineering' means the deliberate modification of the characters of an organism by the manipulation of its genetic material. Genetic engineering comes under the broad heading of Biotechnology. There is a great scope in this field as the demand for genetic engineers are growing in India as well as abroad.
A cell is the smallest living unit, the basic structural and functional unit of all living matter, whether a plant, an animal, humans or a fungus. While some organisms are single celled, others like plants, animals, humans etc are made up of a lot more cells. For eg humans have approximately 3 million cells. A cell is composed of a 'cell membrane' enclosing the whole cell, many 'organelles' equivalent to the organs in the body and a 'nucleus' which is the command centre of the cell. Inside the nucleus are the chromosomes which is the storage place for all genetic (hereditary) information which determines the nature and characteristics of an organism. This information is written along the thin thread, called DNA, a nucleic acid which constitutes the genes (units of heredity). The DNA governs cell growth and is responsible for the transmission of genetic information from one generation to the next.
Genetic engineering aims to re-arrange the sequence of DNA in gene using artificial methods. The work of a genetic engineer involves extracting the DNA out of one organism, changing it using chemicals or radiation and subsequently putting it back into the same or a different organism. For eg: genes and segments of DNA from one species is taken and put into another species. They also study how traits and characteristics are transmitted through the generations, and how genetic disorders are caused. Their research involves researching the causes and discovering potential cures if any.
Genetic engineering have specialisations related to plants, animals and human beings. Genetic engineering in plants and animals may be to improve certain natural characteristics of value, to increase resistance to disease or damage and to develop new characteristics etc. It is used to change the colour, size, texture etc of plants otherwise known as GM (Genetically Modified) foods. GE in humans can be to correct severe hereditary defects by introducing normal genes into cells in place of missing or defective ones.
Genetic Engineering (GE) is a highly complicated and advanced branch of science which involves a wide range of techniques used in changing the genetic material in the DNA code in a living organism. 'Genetic Engineering' means the deliberate modification of the characters of an organism by the manipulation of its genetic material. Genetic engineering comes under the broad heading of Biotechnology. There is a great scope in this field as the demand for genetic engineers are growing in India as well as abroad.
A cell is the smallest living unit, the basic structural and functional unit of all living matter, whether a plant, an animal, humans or a fungus. While some organisms are single celled, others like plants, animals, humans etc are made up of a lot more cells. For eg humans have approximately 3 million cells. A cell is composed of a 'cell membrane' enclosing the whole cell, many 'organelles' equivalent to the organs in the body and a 'nucleus' which is the command centre of the cell. Inside the nucleus are the chromosomes which is the storage place for all genetic (hereditary) information which determines the nature and characteristics of an organism. This information is written along the thin thread, called DNA, a nucleic acid which constitutes the genes (units of heredity). The DNA governs cell growth and is responsible for the transmission of genetic information from one generation to the next.
Genetic engineering aims to re-arrange the sequence of DNA in gene using artificial methods. The work of a genetic engineer involves extracting the DNA out of one organism, changing it using chemicals or radiation and subsequently putting it back into the same or a different organism. For eg: genes and segments of DNA from one species is taken and put into another species. They also study how traits and characteristics are transmitted through the generations, and how genetic disorders are caused. Their research involves researching the causes and discovering potential cures if any.
Genetic engineering have specialisations related to plants, animals and human beings. Genetic engineering in plants and animals may be to improve certain natural characteristics of value, to increase resistance to disease or damage and to develop new characteristics etc. It is used to change the colour, size, texture etc of plants otherwise known as GM (Genetically Modified) foods. GE in humans can be to correct severe hereditary defects by introducing normal genes into cells in place of missing or defective ones.
Thursday, November 18, 2010
Aeronautical Engineering an introduction
Aeronautical / Aerospace Engineering is one of the most challenging fields of engineering with a wide scope for growth. This field deals with the development of new technology in the field of aviation, space exploration and defence systems. It specialises in the designing, construction, development, testing, operation and maintenance of both commercial and military aircraft, spacecrafts and their components as well as satellites and missiles.
As Aerospace engineering involves design and manufacture of very high technology systems, the job requires manual, technical as well as mechanical aptitude. Aeronautical engineer's usually work in teams under the supervision of senior engineers, bringing together their skills and technical expertise. Though highly paid, the work is very demanding. An aeronautical engineer needs to be physically fit and fully dedicated to his work. One needs to be alert, have an eye for detail and should have a high level of mathematical precision to be successful.
The specialisations includes in areas like structural design, navigational guidance and control systems, instrumentation and communication or production methods or it can be in a particular product such as military aircrafts, passenger planes, helicopters, satellites, rockets etc. Engineers may work in areas like design, development, maintenance as well as in the managerial and teaching posts in institutes. They find a very good demand in airlines, aircraft manufacturing units, air turbine production plants or design development programmes for the aviation industry. Aerospace environment is sophisticated with rewarding career opportunities involving leading-edge technology.
As Aerospace engineering involves design and manufacture of very high technology systems, the job requires manual, technical as well as mechanical aptitude. Aeronautical engineer's usually work in teams under the supervision of senior engineers, bringing together their skills and technical expertise. Though highly paid, the work is very demanding. An aeronautical engineer needs to be physically fit and fully dedicated to his work. One needs to be alert, have an eye for detail and should have a high level of mathematical precision to be successful.
The specialisations includes in areas like structural design, navigational guidance and control systems, instrumentation and communication or production methods or it can be in a particular product such as military aircrafts, passenger planes, helicopters, satellites, rockets etc. Engineers may work in areas like design, development, maintenance as well as in the managerial and teaching posts in institutes. They find a very good demand in airlines, aircraft manufacturing units, air turbine production plants or design development programmes for the aviation industry. Aerospace environment is sophisticated with rewarding career opportunities involving leading-edge technology.
Saturday, September 18, 2010
JOB-OPPORTUNITIES FOR ENGINEERS
JOB-OPPORTUNITIES FOR ENGINEERS
1.1 Nearly 34% of the total Job-opportunities offered during 2009-2010 were meant for
engineering personnel. In all, 11536 vacancies for engineers were notified in 2009-2010 as
against 9756 during 2008-2009, reflecting an increase of 18%. Out of these 11536 vacancies,
7081 were meant for persons holding diploma-level qualifications and 4455 for degree
holders in either of the engineering disciplines.
Classification of Vacancies:
1.2 Engineering vacancies notified during 2009-2010 have been classified under 34 heads
(Table 1A-1B). It may, however, be pointed out that such of the vacancy notifications,
where the employing establishments failed to mention specific qualification required, and
left them in non-classifiable category, have been shown and classified under the head
"Engineers- Unspecified". Vacancies meant for combination of two or more allied subjects
have been suitably grouped as 'Architecture-Civil, Electrical-Mechanical' & Mechanical-
Metallurgical' etc.
Job-opportunities by Branches of Engineering:
1.3 The study of the vacancies notified during 2009-2010 according to various branches
of engineering indicates that out of 11536 vacancies, 19% were meant for those who had
specialised in Mechanical Engineering branch, 17% for Civil Engineering, 15% for
unspecified branches of Engineering and Electronics & Electrical
Microwave/Communication (including Radio), 12% for Electrical Engineering, 9% for
Electrical/Mechanical Engineering and 2% for Agricultural Engineering.
Engineering Vacancies by Sectors:
1.4 An analysis of Engineering vacancies notified during 2009-2010 according to the
sector of employing establishments has revealed that 43% of the total vacancies belong
each to the Central Govt. and to the Quasi-Govt., 9% to the State Govt., 3% to the Private
establishments and the remaining 2% to Local Bodies.
Engineering Job-offers by Pay-Ranges:
1.5 Analysis of the Job-offers made to engineers during 2009-2010 according to
pay-ranges reveals that majority of the vacancies (46%) were carrying Job-offers in the
lowest pay-range upto Rs. 5000 per month, 29% of the jobs offered in the middle pay-range
of Rs. 5001-8000 per month and the rest 25% in the highest pay-range of Rs. 8001 and
above per month.
Job-opportunities for Fresh-Engineers:
1.6 It is interesting to note that out of all the vacancies meant for engineers during
2009-2010, 66% vacancies were offered to freshers having no work-experience. Most of these
fresher’s job-openings belonged to Aeronautical, Agricultural, Automobile, Civil,
Electrical, Electronics & Electrical Microwave/Communication (including Radio),
Electrical/Mechanical, Instrument, Mechanical, Metallurgical, Public Health, Tool, Town
& Country Planning disciplines. The table-1 indicates the distribution of percentage of
vacancies for engineering degree and diploma holders with or without work-experience
Distribution of vacancies for Engineers
Qualification levels Work experience
required
Number of vacancies notified
during the year
2008-2009;;2009-2010
With experience 1763
(18.1)
2406
(20.8)
Without experience 2717
(27.8)
2049
(17.8)
(A) Degree
All 4480
(45.9)
4455
(38.6)
With experience 796
(8.2)
1511
(13.1)
Without experience 4480
(45.9)
5570
(48.3)
(B) Diploma
All 5276
(54.1)
7081
(61.4)
Total no of vacancies 9756
(100.0)
11536
(100.0)
Note : Figures in brackets represent percentages.
State-wise Dispersion of Job-opportunities:
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