Wait a second!
More handpicked essays just for you.
More handpicked essays just for you.
Historical development of aircraft
Historical development of aircraft
Aviation and aerospace industry
Don’t take our word for it - see why 10 million students trust us with their essay needs.
Recommended: Historical development of aircraft
The first thing that comes to mind when someone thinks of aerospace engineering are people that making a lot of money, building aircrafts, missiles, planes, etc. or going to school for a long period of time. Aerospace engineering is more than that. .Aerospace engineers focus on the safety of aircraft making sure people are having a safe flight, and design better aircrafts that don't pollute the Earth.
An aerospace engineer is an exciting field, Aerospace engineers are "employed in industries whose workers design or build aircraft, missiles, systems for national defense, or spacecraft. Aerospace engineers are employed primarily in manufacturing, analysis and design, research and development and the federal government."( Occupational outlook
…show more content…
According to Bureau labor of statics, an aeronautical engineer is involved “primarily in designing aircraft and propulsion systems and in studying the aerodynamic performance of aircraft and construction materials. They work with the theory, technology, and practice of flight within the earth’s atmosphere."( occupational outlook handbook “Aerospace engineers”). Meanwhile astronautical engineer "work with the science and technology of spacecraft and how they perform inside and outside the earth’s atmosphere.”Aeronautical and astronautical may work in different environments and have different designs while working with spacecraft and aircraft. Although they face different environments, both fields use the basic concepts of physics and aerodynamics. ( occupational outlook handbook “Aerospace …show more content…
Today the aerospace engineering field has come so far, the aerospace engineers now hope to design better aircrafts that burn less fuel and is better for the environment. In the past aerospace engineering was meant for males rather than females, there is still a majority of males entering in this field. However, times are changing, and a majority of females are entering or are being encouraged to join this
"Aerospace Engineers." Encyclopedia of Careers and Vocational Guidance. 14th ed. Vol. 2. New York: Ferguson, 2008. 62-66. Print.
The future of the aerospace industry will involve gradual changes in the near term, with the prospect of more radical shifts in the decades t...
By late 1943, there was more than 310,000 women working in the unites states aircraft which was 65% more than that of those who worked previously before the war. This amount was the greatest increase in aviation industry. Along with working in factory’s, nearly 350,000 women joined the military either at home service base or overseas. many were pilots whose job was to transfer cargo from factories to military bases. While others participated in simulation strafing and target missions.
The aerospace industry is fairly new in our day in age. It has been recorded in history that the first flight ever by man took place in Kitty Hawk, NC roughly 100 years ago. Since that first model, drastic improvements have been made in aerospace technology. Aerospace has evolved from simple prop planes to sound barrier breaking jets and even to space shuttles. The very definition of aerospace in the adjective or active form is “of or relating to aerospace, to vehicles used in aerospace or the manufacture of such vehicles, or to travel in aerospace.” In general, aerospace deals with any dynamic manufactured vehicle that travels above the surface of the earth. This, as you might expect, leaves two possibilities, the atmosphere or our earth, and outer space. Such basic examples of aerospace vehicles are Cessna planes, Black Hawk helicopters, Goodyear blimps and the Columbia Space Shuttle. Throughout the 20th century and into the 21st, aerospace has and will continue to be an integrated part of our society.
Are we allotting enough funding for aerospace research? At the present time, significant progress in aerospace research will not be made for a long time. It is sad that we don’t place more urgency on such an important field. Yes, there is still research being conducted in the field; however, limited funding prevents significant advancement. The benefits derived from aerospace research should provide enough justification for investing more money in this area. The benefits are not exclusive to sp...
According to Bureau of Labor Statistics, biomedical engineers “develop devices and procedures that solve medical and health-related problems by combining their knowledge of biology and medicine with engineering principles and practices.” Biomedical engineers are expected to have employment growth of 72 percent over the projections decade, much faster than the average for all occupations. The employment growth is very high even compared to other engineers.
Mr. Mendoza: I am an Engineer Specialist at CESSNA. I am more in the Aero Sciences department. We focus on aerodynamics, stability and control, and computational aerodynamics. We also develop flight simulators and business jets.
Aerospace engineers examine, analyze, design, produce, and occasionally install components that make up aircraft, spacecraft, high-altitude vehicles, and high-altitude delivery systems (missiles). Satisfaction with the romantic image of rocket building can buoy many engineers through the highly anonymous work environments that many of them face. Individuals don't assemble rockets; teams do, dozens of teams working in highly supervised coordination. An aerospace engineer plays some part on one of the teams, spending more of her time (roughly 70 percent) in a lab, at a computer, and assembling reports than doing anything else. Not being able to see the "big picture" frustrates some professionals. The path to becoming an aerospace engineer is a rigorous one, but those who manage to survive the difficult lift-off emerge with an above-average degree of career satisfaction.
Within living memory, young women who have wanted to study engineering faced such dissent that in 1955, Penn State’s dean of engineering declared, “Women are NOT for engineering,” asserting that all but a few “unusual women” lacked the “basic capabilities” necessary to succeed in this profession (Bix par. 2). Although the number of women in social sciences and humanities has grown steadily, women remain underrepresented in science and engineering. Bureau of Labor Statistics states that “women remain underrepresented in engineering constituting only 10 percent of full-time employed engineers and 7.7 percent of engineering managers...” Although this is the case, social norms, culture and attitudes play a significant role in undermining the role of women in the aforementioned fields in addition to the gendered persistence and their individual confidence in their ability to fulfill engineering roles.
Electrical Engineers research, develop, design, and test electronic components, products, and systems for commercial, industrial, medical, military, and scientific applications (Cosgrove 749). They are concerned with devices that use small amounts of electricity that make up electronic components such as integrated circuits and microprocessors. By applying principles and techniques of electronic engineering they design, develop, and manufacture products such as computers, telephones, radios, and stereo systems (EGOE, 121). Electrical engineers touch everyone lives through the things they have designed or created. Electrical engineers have invented the lights in your house, the television, the stereo, the telephone, computers, and even your doctor’s blood pressure gauge (Stine 300).
My decision to become an electrical engineer was not a decision I took too long ago. It is something that I decided to pursue when I entered a Science, Technology, Engineering, and Math (STEM) high school. It was then that I realized how much I enjoyed working with computers and building circuits, and the fact that this career involved many subjects. Doing a lot of research to understand better what it meant to be an Electrical Engineer, I found out that in order to succeed in this career one had to know a little bit of everything. In other words, subjects such as science and math are essential to know if someone wants to be successful electrical engineer. An electrical engineer is someone who finds practical solutions to everyday problems that involve electricity, such as computers, cell phones, among other electrical equipments. In order to create a useful device one must know where to start and this is where science comes in. An electrical engineer must be able to use the scientific method, which means; one must form a procedure, test it out, and write a conclusion. These parts of the scientific method must be written clearly, so that others can recreate and test out a device or project. Math also plays a key role in this area of study, because one must be precise when creating a new device that others are going to use. For example, if one were to create a new type of cell phone one must know a lot of math in order to be able to progr...
* Engineers must be able to work as part of a team. The ability to
Everyone wants to be something from a doctor to a stylist, I want to be a mechanical engineer. This is something I have always wanted to do in my life, the opportunities that exist in this field can lead to anything. Mechanical engineers are able to do many tasks in the job environment from designing, to developing, and also building. In addition, as new companies are starting up they will need mechanical engineers to help them develop their product. All of the engineering fields have great pay, that is able to support my family and also my parents. In the work environment of a mechanical engineer, they usually are around an office and sometimes where their product is being used at. To be able to apply for a mechanical engineering job you
Engineers are valuable assets to any company because they think analytically. Engineers may advance to become technical specialists or to supervise a staff or team of engineers and technicians. Some eventually become engineering managers or enter other managerial or sales jobs.
Engineering is a good fit for me because it involves lots of math and problem solving which are two of my favorite things to do. Also I am good at working with my hands and with other people. Mechanical engineering requires a good understanding of math and science