What Are The Future Prospects of Biotechnology?
What Are The Future Prospects of Biotechnology?
Biotechnology is a bundle of techniques that are applied to living cells. The work of biotech engineer is to produce these living cells into a particular product of improved quality. This technology is the exploitation of natural resources at the microbial and molecular level for the benefit of mankind. It normally deals with the management of living organisms for improving the products, enhance plants and animals or generate microorganisms for making human life much better.
In today’s world, biotechnology is related to the genetic information of living organisms that are called DNA (deoxyribonucleic acid). This high technology supports the transformation of so-called codes of nature. Students, who have keen interest in Biotechnology and want to make their bright future in this field, have a lot of career opportunities in this field. Students can do specialization in any of the six main fields of biotechnology.
1) Biomedical Engineer: – A biomedical engineer is an expert to form artificial body parts that are called prostheses. Students, who have specialization in this field, can make their career as physical therapists, computer hardware engineer, mechanical engineer and surgeons too.
2) Clinical Laboratory Technologists: – Students can also do specialization for checking the symptoms of any disease as well as to detect body fluids and tissues. In this field, one can work as a pathologist, chemist, biological or a material scientist.
3) Forensic Scientists: – A forensic scientist or crime laboratory analyst provides significant scientific information that can be crucial for the criminal proceedings. The career options of this field are detectives, archaeologists and anthropologists.
4) Pharmacists: – The work of pharmacists is to distribute medicines as well as guiding patients for correct medication and appropriate dosage. In this field, there are unlimited career options that include advanced practice nurses, anesthesiologists, psychiatrists and pharmacy technicians.
5) Medical Scientists: - A medical scientist conducts intensive research on bacteria and different viruses that are the root cause of various diseases and they utilize their research for creating a variety of medicines and vaccines to treat these diseases.
6) Biological Scientists: – This field includes the study of animals, plants and microscopic organisms. Students can work in various fields such as food and agricultural scientists, pharmacists, veterinarians, biomedical engineers, conservation, general practitioners.
In short, Biotechnology is one of the most prominent branches of future. This is an interdisciplinary science that relies on biology and other subjects as mathematics, physics, chemistry and engineering. After completing this course, one can easily get a good job in this field.
This article is all about the importance of Biotechnology. Everybody wants to make his bright career in the most emerging field. In this article, we are also talking about Sharda Group of Institutions that offers Biotechnology program. If you want to know more about this Institute, you can visit: http://www.sgei.org/
The Future of Biotechnology Starts at Montgomery College. Montgomery College (MD) can help you get the education and training you need for one of the nation’s fastest-growing industries. Apply today! For more information please visit www.montgomerycollege.edu/biotech or call 240-567-5000 Montgomery College…Endless Possibilities
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Question by april: What does it take to study biotechnology?
What classes do i need to take in highschool for a possible career in biotechnology?
Best answer:
Answer by Aquaboy
1. Math Classes (especially Calculus, if available)
2. Biology (obviously!)
3. Chemistry (there is a lot of chemistry in biology)
4. Physics (useful for later on in your biotechnological studies, when you’ll encounter topics such as, pharmacokinetics)
Add your own answer in the comments!
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types of engineers, types of engineering
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The aerospace engineers are concerned with the design,
analysis, construction, testing and operation of flight vehicles,
including aircrafts, helicopters, rockets and spacecrafts. The
course is based on the fundamentals of fluid dynamics,
materials science, structural analysis, propulsion, aerospace
design, automatic control and guidance, and development of
computer software.
With increase in growth and associated industrial potential,
Indian agriculture has now been accorded the status of an
industry. The course on Agricultural and Food Engineering
aims at producing engineering graduates to meet the
requirement of technical manpower in development of farm
machines, land and water resources management,
agricultural production and manufacture of processed food.
In order to meet the present demand of agricultural and food
industries, the course has been suitably modified to include
specialized training in design, development, testing and
selection of tractors and farm implements, irrigation, drainage
and watershed management using Remote Sensing and GIS;
information technology, processing of food, fodder and fibre,
utilization of biomass, byproducts and wastes in the production
of biochemicals, fuels, manure and non-conventional energy.
The course provides ample flexibility to the students for
acquiring expertise in any of the three major areas of
specialization, namely, Farm Power and Machinery, Soil and
Water Conservation Engineering, and Food Process
Engineering.
biotechnology
The
goal of this program is to prepare the students, both in theory
and practice, for leadership in the globally competitive fields
of Life Science, Pharmaceutical, Biotechnology industry,
academia and research. The program has been developed
to meet the increasing demand in these fields of industry and
researcth. Students of this program would find unique
opportunities of employment and research in the areas of
biomedical engineering, drug design, bioinformatics,
biotechnology, nano-biotechnology, genomics etc. The course
is designed to introduce biology as an experimental science,
in contrast to its commonly perceived notion as a descriptive
subject. The students will also find the application of a wide
range of techniques in physical, chemical and mathematical
sciences for designing, executing and interpreting
experiments in biology.
chemical engineering
Chemical engineers work in diverse fields like petroleum
refining, fertilizer technology, processing of food and
agricultural products, synthetic food, petrochemicals,
synthetic fibres, coal and mineral based industries, and
prevention and control of environmental pollution. Chemical
engineering is concerned with the development and
improvement of processes, design, construction, operation,
management and safety of the plants for these processes
and research in these areas.
civil engineering
A civil engineer is concerned with planning, analysis, design,
construction and maintenance of a variety of facilities such
as buildings, highways and railways, airports, waterways and
canals, dams and power houses, water treatment and waste
water disposal systems, environmental quality control, docks
and harbours, bridges and tunnels. A civil engineer is also
required to deal with critical problems of today such as disaster
mitigation and management, constructing offshore structures
for oil production, chemical engineering
Some chemical engineers make designs and invent new processes. Some construct instruments and facilities. Some plan and operate facilities. Chemical engineers have helped develop atomic science, polymers, paper, dyes, drugs, plastics, fertilizers, foods, petrochemicals… pretty much everything. They devise ways to make products from raw materials and ways to convert one material into another useful form. Chemical engineers can make processes more cost effective or more environmentally friendly or more efficient. As you can see, a chemical engineer can find a niche in any scientific or engineering field. mechanical engineering Mechanical engineers design and develop everything you think of as a machine – from supersonic fighter jets to bicycles to toasters. And they influence the design of other products as well – shoes, light bulbs and even doors. Many mechanical engineers specialize in areas such as manufacturing, robotics, automotive/transportation and air conditioning. Others cross over into other disciplines, working on everything from artificial organs to the expanding field of nanotechnology. And some use their mechanical engineering degree as preparation for the practice of medicine and law. The mechanical engineer may design a component, a machine, a system or a process. Mechanical engineers will analyze their design using the principles of motion, energy, and force to insure the product functions safely, efficiently, reliably, and can be manufactured at a competitive cost. electrical engineering Electrical engineering is concerned with the basic forms of energy that run our world. Whether it’s gas, hydro, turbine, fuel cell, solar, geothermal, or wind energy, electrical engineers deal with distributing these energies from their sources to our homes, factories, offices, hospitals, and schools. Electrical engineering also involves the exciting field of electronics and information technology. Do you have a cellular phone or a computer? Wireless communication and the Internet are just a few areas electrical engineering has helped flourish, by developing better phones, more powerful computers, and high-speed modems. As we enter the 21st century, the technology that surrounds us will continue to expand and electrical engineers are le way elctronics and communication engineering Design, fabricate, maintain, supervise, and manufacture electronic equipment used in the entertainment media, in hospitals, in the computer industry, for communication and in defense. Electronics engineers work with devices that use extremely small amounts of power. They work with microprocessors, fibre optics, and in telecommunication, television, and radio. production engineering These deals with integrated design and efficient planning of the entire manufacturing system, which is becoming increasingly complex with the emergence of sophisticated, production methods and control systems. Job and Scope: Opportunities are available in public and private sector manufacturing organizations engaged in implementation, development and management of new production Process, information and control systems and computer controlled inspection, assembly and handling. Biomedical Engineering: Biomedical engineering (BME) is the application of engineering principles and techniques to the medical field. It combines the design and problem solving skills of engineering with medical and biological sciences to help improve patient health care and the quality of life of individuals. materials engineering New materials have been among the greatest achievements of every age and they have been central to the growth, prosperity, security, and quality of life of humans since the beginning of history. It is always new materials that open the door to new technologies, whether they are in civil, chemical, construction, nuclear, aeronautical, agricultural, mechanical, biomedical or electrical engineering.
btech first year, indiian institute of technology(IIT)
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Biotechnological Plants
Biotechnological Plants
Biotechnology is a new and emerging technology developed from the combination of various aspects of science like agriculture, medicine, biology and food science. It mainly deals with the cell culture and tissue culture that is known as Genetic Engineering. It also derives knowledge from other streams of science including microbiology, biochemistry, molecular biology, embryology, genetics and cell-biology. The concepts are used for the development and alteration of living creatures to serve the varied purposes of the mankind. Some of the major processes include domestication of animals and cultivation of useful plants. Numerous varieties of plants can be cultivated by the biotechnological plants applying hybridization, breeding and artificial selection.
Biotechnological plants are mainly engaged in the development of active medicines and medical products. Biotechnology has contributed much to the manufacture of cheaper medicines using easy and simple methods. It has enabled the manufacture of efficient medicines for the treatment of human diseases using the concepts of genetic engineering. Due to the outstanding achievements made by the biotechnological plants, the world has been able to achieve a breakthrough in innovative medical therapies for deadly diseases like cancers, Hepatitis C, Arthritis, Hepatitis B, Haemophilia, Multiple Sclerosis, and cardiovascular disorders.
In the area of agriculture and nutrition, Biotechnological plants have achieved enormous success. It has developed new and improved varieties of food products and commercial crops. Besides the increasing of the crop yield, several efforts have been made to produce the crops that can withstand the abiotic and biotic stress and contain more nutritional qualities. The spoilage process of fruits has been reduced to a maximum extent and the ripening period enhanced. These plants have contributed a lot to the pharmaceutical engineering and the medical world and are still thriving hard to make this world disease-free.
For more information on Pharmaceutical engineering and the benefits of Biotechnological plants please visit the mentioned website
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