Thursday, February 13, 2020

Biomedical Engineering Nature of Work and Salary

Biomedical Engineering Nature of Work and Salary

Biomedical engineers design prosthetic limbs, artificial organs, and regenerate tissue. They create drugs and pharmaceuticals, collect and analyze biological data, and design life-saving equipment. They work with universities, hospitals, labs, government, industry, and regulatory agencies.
They work with doctors and patients seeking solutions to physical as well as physiological problems. It is important to incorporate into their own specialties any changes in related fields, so engineers scramble to stay abreast as technology rapidly evolves.
Universities teaching advanced levels of biomedical engineering commonly offer post-doctorate and research career opportunities. For example here is a list of research opportunities available through Florida A&M University:
  • Tissue Engineering for Bone and Cartilage Replacement
  • Advanced Polymeric Materials Characterization and Rheology
  • Magnetic Resonance Imaging of Cells, Tissues, and Organisms
  • Plasma Reaction Engineering for Pollution Control and Disinfection
  • Biomass Conversion to Energy by Enzymatic/Catalytic/Thermal/Plasma Methods
  • Advanced Computational Methods in Materials, Catalysis, and Transport
  • Solid State Materials Synthesis and Characterization

Biomedical Engineer Earnings

According to the U.S. Bureau of Labor Statistics (BLS), the average annual salary earned by a biomedical engineer was $81,450.
PayScale.com lists the median pay at $79,500, while the top of the salary range is at $124,000. Median pay is for 5-7 years experience in the field. Top pay comes with the 90th percentile.

Read About: cisco call manger

Tuesday, February 11, 2020

Salary & Job Outlook for Aerospace Engineers

Salary & Job Outlook for Aerospace Engineers

There are a few premier universities like Georgia Institute of Technology and Purdue University that offer online master's degrees in aerospace engineering. The graduate student can study at their convenience, apply classroom lessons at their job and satisfy the same academic standards as if they were on campus.
In 2009, U.S. News and World Report rated Massachusetts Institute of Technology, Georgia Institute of Technology and the University of Michigan as the top three U.S. universities that grant doctorates in aerospace engineering.
In 2010, those with a Bachelor's degree earned an average of $97,500 according to the U.S. Bureau of Labor Statistics (BLS). Between 2010 and 2020, the BLS expects a five percent growth in jobs. Because some aerospace engineers work on projects connected to the United States’ national defense, they must pass a background check and qualify for security clearances. These requirements will serve to keep defense jobs in the United States.

Master of Science Degree and Doctorate in Aerospace Engineering

Graduate students seeking a master's or doctorate degrees to augment their undergraduate or graduate education can take advanced courses in:
  • Aerodynamics and fluid mechanics
    • The study of airflow over a body, such as the wings on an aircraft or spacecraft.
  • Aeroelasticity and structural dynamics
    • The study of how inertial, elastic and aerodynamic forces interact.
  • Flight mechanics and control
    • The study of how forces affect a flight vehicle, how it responds to those forces and how to modify the vehicle to achieve the desired goals.
  • Propulsion and combustion
    • The study of creating mechanical power using internal combustion engines, jet engines, turbomachinery, propellers, wings, fins, and wheels and axles to generate force causing motion.

Read More: what is cisco call manager

Monday, February 10, 2020

Electrical Engineer Careers and Nature of Work

Electrical Engineer Careers and Nature of Work

Electrical engineers specialize in power supply and generation. They design, develop, test and supervise electrical equipment manufacturing. They have also been trained to handle responsibilities like wiring and lighting installations in buildings, automobiles and aircraft.
What is great about being an electrical engineer is that the training is so extensive that graduates may land a job in many different industries such as construction, manufacturing and design.
Moreover, electrical engineers may take part in development and research as assistants to scientists and other engineers. Many kinds of electronic equipment from portable music players to GPS devices pass through an electronic engineer’s hands.
They come up with means to use electrical power to operate a certain product or improve its functions. Among the most challenging and in-demand tasks for electronic engineers today include developing construction plans for electrical lighting systems for skyscrapers, designing remote-controlled race cars and building technology for factories like robots that can perform welding.
Electronic engineers perform their duties in offices and laboratories but may also be sent to work sites for supervising and troubleshooting. This is especially true for those who work in companies that manufacture complex equipment. They spend about 40 hours per week at work, but they may work longer than this.
A typical day for an electrical engineer varies depending on their employer. Those who work for the federal government may handle responsibilities in areas of research, development and electronic device evaluation that may cover systems for manufacturing, transportation, aviation and communication. Electrical engineers use design software and equipment in their projects.

More Info: communication manager

Friday, February 7, 2020

Environmental Engineer Careers

Environmental Engineer Careers

Without the strong efforts and tireless vision of today's environmental engineers, tomorrow's atmosphere will not sustain life, as we know it. Our water and soil will not be clean, and the oceans will be foul.
Environmental engineers use science and engineering principles to protect and improve the environment. The quality of air, water, and soil is their primary focus. They seek solutions to water-borne diseases, wastewater management, and air pollution.
They work to improve recycling, waste disposal, and industrial hygiene. They analyze soil and water samples. They understand the law as it applies to protecting the environment.
These engineers focus on hydrology—water resources, treatment plants/design, and bioremediation (water clean-up). They concentrate on global issues, acid rain, climate change, and causes of ozone depletion.
They create advanced air and water treatment technologies, and look for sustainable energy sources. Radiation protection and the environmental effects of new technologies are other priorities.

What Does an Environmental Engineer Do?

Cause-and-effect experts, environmental engineers predict the consequences of our projects before we dig, reroute, dump, exhaust, flush, funnel, plant, cut down, or build. Projects that got off the ground without this tedious management, or those that have run amuck for lack of enforced guidelines need environmental engineers to bail them out and undo the unthinkable.
These experts work typical 40-hour weeks in industrial plants, offices, or labs. It is also common to see them working onsite near water sources, energy systems, and construction projects. Dealing with serious environmental issues can also be stressful—the health and welfare of the earth are not taken lightly.
Environmental engineers write reports and recommendations on their investigations. They work with scientists, planners, hazardous waste specialists, and others addressing legal and business connections to environmental problems.
They monitor environmental improvement programs, inspect industrial and municipal facilities, develop objectives for proposed projects, and advise corporate and government agencies of clean-up procedures for contaminated sites.
They design processes, systems, and equipment to control water, air, and soil quality, and they manage remediation and clean-up. They prepare detailed hazardous-waste documents and disposal restriction notifications. They train others in compliance standards and maintain quality-assurance documentation Environmental engineers develop and use programs related to conservation and management of natural resources. They also provide expert assistance in database development, network, and regulatory analysis.

Thursday, February 6, 2020

Petroleum Engineer Careers and Nature of Work

Petroleum Engineer Careers and Nature of Work

Petroleum engineers specialize in designing and developing technology and methods for digging the earth’s surface to extract oil and gas. They find means to obtain either natural gas or crude oil from the ground. In addition, petroleum engineers explore and discover new techniques to extract oil and gas from older wells all over the world.
Petroleum engineers typically work with geologists. They are both essential in the field. Petroleum engineers plan and supervise the drilling operations after the potential drill site has been determined. They ensure that the methods used provide maximum profitable recovery.
According to the Bureau of Labor Statistics (BLS), there were about 30,200 petroleum engineers employed in the country as of 2010. They usually work in laboratories or offices. However, they also have to work in drilling sites or gas and oil exploration and production sites. Petroleum engineers may also have to work in other countries. They install, monitor, supervise and maintain work sites.
Petroleum engineers are expected to work full time up to as much as 50 to 60 hours every week. This is especially true when they are onsite. They typically work in shifts or rotation such as 84 hours on duty and 84 hours off. Petroleum engineers also create computer simulations in order to predict the natural gas and petroleum flow in an oil field.

Becoming a Petroleum Engineer

A bachelor’s degree in petroleum engineering is necessary to land an entry-level position. Petroleum engineering is among the areas of specialty in engineering. Programs usually take four years to complete. There are universities that offer five-year programs that automatically grant students a master’s degree. Most employers prefer applicants who have work experience.
With this, it is best that graduates earn academic credit from cooperative engineering programs before applying for a job. Individuals who want higher-level positions need to complete additional training and education. In the U.S., trainees must obtain a license to become a professional engineer. Once the bachelor’s degree is complete, graduates may take the Fundamentals of Engineering exam.
Passers will be given the title of Engineer Interns or Engineers in Training. Completing this phase will qualify them to taking the Principles and Practice of Engineering exam. Depending on the state’s requirement, they may have to undergo further training to keep their license.
Read More: field service tech

Wednesday, February 5, 2020

Computer engineering Career

Computer engineering Career


Computer engineering is a driving force behind innovation and technologies that are changing the world, pushing computing power and capabilities to the edge. Bridging hardware (e.g. microprocessors, tablets) and software, computer engineering has implications across many industries, ranging from technology to healthcare, green energy to aeronautics. The following guide serves as a high-level overview of the computer engineering profession, including insight into various career paths, emerging industries, employment opportunities, companies that are hiring computer engineers, skills and knowledge categories, as well as tips for preparing for computer engineering jobs.

Computer engineering is an interdisciplinary field of study, one that combines electrical engineering and computer science disciplines into a specialized professional area of practice. Smaller; fastest; cheaper. Smarter; flexible; powerful. In short, computer engineers make computers and computing systems better.

Consider, for example, the history of the Intel processor. Introduced in 1971, the Intel 4004 processor had 2,300 transistors and produced clock speed of 108 KHz (108,000 cycles per second). Compare the performance of the 4004 microprocessor to Penryn, the microprocessor Intel introduced in 2007: with 820,000 transistors and a clock speed greater than 3 GHz, Penryn operates at approximately 3 billion cycles per second. That’s an improvement of 27,777% – in 36 years. This type of computing power and performance improvement has spearheaded the information revolution – driving transformative developments in computers, video, imaging, 3D content, power management, animation, home automation, auto manufacturing, mobile devices and phones, communication, and more.
Broadly, computer engineers design hardware for computing systems, network and computer architecture, design software for applications, analyze and design microprocessors, build interface systems, and work with microcontrollers and circuit designs. In turn, computer engineering has wide applications, impacting areas such as cybersecurity, wireless networking, design automation, computer networks, mobile computing, robotics, embedded systems and machine intelligence. At the career level, computer engineering offers two central paths – hardware and software engineering – and multiple sub-specialty or areas of concentration, such as the following:

Tuesday, February 4, 2020

Engineering Job Titles and Position

Engineering Job Titles and Position

Below is a list of some of the most common engineering job list, as well as a description of each. For more information about each job title, check out the Bureau of Labor Statistics’ Occupational Outlook Handbook.
Air Quality Monitoring Technician:
Research the educational and skill requirements needed to become an air quality monitoring technician, as well as the job description and employment and salary outlook. Read on to decide if this career is right for you.
Aircraft Engineer: 
Read about a career in aircraft engineering. Research the educational and skill requirements, and learn about the job description and employment and salary outlook for an aircraft engineer.
Animatronics Technologist: 
Research the educational and skill requirements needed to become an animatronics technologist, as well as the job description and employment and salary outlook. Read on to decide if this career is right for you.
Architectural Engineer: 
Learn about the education and preparation needed to become an architectural engineer. Get a quick view of the requirements as well as details about degree programs, job duties and licensure to find out if this is the career for you.
AutoCAD Designer: 
AutoCAD designers require little formal education. Learn about the training options, job duties and available certifications to see if this is the right career for you.
Automation Engineer: 
Read about a career in automation engineering. Research the educational and skill requirements, and learn about the job description and employment and salary outlook for an automation engineer.
Automotive Engineer: 
Learn how to become an automotive engineer. Research the education, career requirements and experience required for starting a career as an automotive engineer.
Software Development Manager
Find out what software development managers do. Get information about required education and training. See what the career prospects are to decide if this career field is right for you.
Structural CAD Technician
Learn about the work responsibilities of a structural CAD technician. Find out what education and skills are needed in addition to job outlook and salary to decide if this is the right career for you.
Telecommunications Administrator
Read on to see what telecommunications administrators do. Find out what the education and training requirements are for this job. Learn about employment prospects to decide if this career field is right for 
Transportation QA Specialist: 
Read on to learn what a transportation QA specialist does. See what kind of education and training is required, and get career prospects and earning potential to see if this job is right for you.
Bio-Engineer
Explore the medical advancement job duties of a bio-engineer. Learn about what education and skills are needed in addition to salary and employment outlook to determine if this is a good career option.
Biological Engineer:
Learn more about the type of work a biological engineer performs. Explore educational and skill requirements as well as job outlook and salary in order to make the correct career decision.
Biomedical Engineer:
Learn what biomedical engineers do. See what kind of education and training are required for employment. Get details about career prospects and earning potential to decide if this job is right for you.
Building Automation Engineer: 
Read on to discover what building automation engineers do. Learn about education and training requirements, and see what the job prospects are to decide if this field is right for you.
Building Designer: 
Learn about the education and preparation needed to become a building designer. Get a quick view of the requirements as well as details about training, job duties and state requirements to find out if this is the career for you.
Building Designer: 
A majority of building design ventures are residential or light commercial building projects that do not require the official credentials of an architect. Find out the necessary training and skills, in addition to the salary and job outlook, to...
Building Engineer: 
Discover what the work responsibilities of a building engineer are. Learn about salary and employment outlook as well as education requirements to determine if this is the right career choice.
Building Technician 
Explore the work responsibilities of a building technician. Learn about educational requirements, necessary skills, salary and job outlook to decide if this is the right career choice.

Software Engineering Prerequisites

  Prerequisites Most colleges require similar courses as prerequisites for their Software Engineering programs. You’ll normally be expected ...