There are some jobs out there. You can find some on www.indeed.com/q-Industrial-Engineer-jobs.html
Engineering covers a broad spectrum of many, many different disciplines. To name only a few fields, engineering can range from chemical, biomedical, electrical, environmental, civil, mechanical, aeronautical, computer, systems, etc... Generally, engineering degrees incorporate theory and applications of the discipline. For example, I am studying electrical engineering. Many of my courses are devoted to electromagnetic phenomena and the mathematical equations that govern it. But then there are design and laboratory courses where you are working hands-on and seeing real world applications of the theories learned in other courses. Engineering then becomes not only a profession, but a way of life, as you begin to develop different perspectives of looking at and solving problems.
Optimisation engineering is the process of improving systems, processes, or designs to achieve the best possible performance within given constraints. It involves the application of mathematical models, algorithms, and computational techniques to identify the most efficient solutions. This discipline is commonly used in various fields, including manufacturing, logistics, and finance, to enhance productivity, reduce costs, and improve overall effectiveness. Ultimately, optimisation engineering seeks to make informed decisions that lead to optimal outcomes.
A welding engineer is a person with the demonstrated education, experience, and knowledge in specialized fields of welding, brazing, cutting and materials joining. Welding engineering is a broad field that covers fields from automotive and shipbuilding to nuclear power, areospace and mining. If there is joining of metals involved then there is probably a welding engineer involved the in the process. A welding engineer is capable of directing those operations associated with weldments and other types of joints that are completed in accordance with the appropriate contract documents, codes, and other standards to produce a satisfactory product. The welding engineer's activities begins before production or construction welding and continues through the production process then ending when the production process is complete. This may include NDE, materials science, filler metal control, corrosion control and repair welding. Most Welding Engineering curriculum's are built on a solid general engineering, calculus-based, foundation that includes course work in mathematics, physical metallurgy, physics, chemistry, engineering mechanics, thermodynamics, fluids and other core engineering requirements. See Ohio State University for information on 4 year ABET accredited welding engineering degrees.
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Industrial hazards are hazards which occur when one strives for commercial gain in quick time. There are many classifications that can be used to group industrial hazards. I will just give a few examples of these hazards 1. chemical hazards: solids such as heavy metals i.e lead and asbestos, liquids such as acids and gases such benzene and sulphur (IV) oxide 2. Mechanical hazards such as unguarded machines 3. Biological hazards such as bacteria, insects and viruses 4. Physical hazards such as radiation, magnetic fields, pressure 5. Ergonomic hazards such as the improper setup of a workstation 6. Psychological hazards such as stress and violence 7. Safety hazards such as slipping, improper machine guarding and equipment malfunctions 8. Technological hazards such as industrial pollution, nuclear radiation, toxic wastes and dam failures 9. Environmental hazards 10. Electrical hazards 11. Fire hazards I have tried as much to give the knowledge I know so if any has additional information they can add to the above
This question is vague. Both fields have different challenges, opportunities, strengths, and weaknesses. Just like chocolate and vanilla are different, so are different jobs. If you are interested in employment prospects, pay, job security, etc. please specify what you are interested in.
Mechanical engineers are found in almost all sectors of industry. So, employment prospects are good. Also, because it is a core engineering discipline, having a a great knowledge in mechanical engineering enables you to enter fields or pursue advanced study in other areas such as bioengineering, environmental engineering, and nanotechnology............
Like many fields, this one has seen a decline. The best prospects are in the northeast and Central South areas of the U.S.
Industrial engineering covers a variety of engineering fields, such as electrical, mechanical and computer engineering. Majoring in this title, it qualifies you for a wider varieties of engineering careers.
Nanotechnology is better than biotechnology as nanotechnology can be applied to different career fields like electronics, medical, robotics, engineering and agriculture. So students from diverse fields can enter it. Biotechnology is limited to agriculture and pharmaceuticals. Salary, employment benefits and future growth prospects are very high as compared to Biotechnology.
focus on 4 engineering fields which are: 1) electrical engineering 2) mechanical engineering 3) civil engineering 4) environmental engineering ,
Engineering is a field that has many smaller specializations and thus has a wide variety of jobs available. The most in-demand engineering field seems to be the Agriculture and Biomedical fields.
Employment of preschool, kindergarten, elementary, middle, and secondary school teachers is projected to grow about as fast as average. Job prospects are expected to be favorable, with particularly good prospects for teachers in high-demand fields like math, science, and bilingual education, or in less desirable urban or rural school districts.
Genetic engineering, chemical engineering, and microbiology are all fields involved in food engineering.
The seven fields are structural engineering, geotechnical engineering, transportation engineering, hydraulics, materials engineering, environmental engineering and construction.
Biotechnology has a wide scope in India and other countries. It is now the second growing sector and has vast employment opportunities. Biotechnology is a mix of Biology, mathematics, physics and chemistry. The fields that a B.Tech can pursue are: Medical and Health Care, Industrial Research and Development, Food Processing, Chemical Engineering, Drug Designing and Manufacture and other related fields.
To become an industrial designer one must have a bachelor's degree in industrial design, engineering, architecture or other similar fields. You may also be required to have basic art and design skills prior to becoming an industrial designer.