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A degree in mechanical engineering opens up a number of career opportunities. Tasks usually include designing devices and machines such as generators, turbines, refrigeration equipment, engines, industrial machines, elevators, and robots. Most jobs for mechanical engineers require a bachelor’s degree in engineering or a related field, but some engineers earn additional credentials.
Subjects Needed To Become A Mechanical Engineer
Mechanical engineers are involved in making and maintaining anything and everything that moves. Many industries employ mechanical engineers, but they are most common in the automotive, aerospace, biotechnology, computer, and manufacturing industries. Special subjects for mechanical engineers include biomechanics, energy conversion, and nanomechanics.
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Engineering school admission requirements typically include a high school diploma and a full menu of math and science subjects, as well as humanities and computer studies. Preparation for high school should include geometry, trigonometry, algebra and calculus, as well as physics, chemistry and biology. Many employers prefer a bachelor’s degree in mechanical engineering for entry-level mechanical engineering jobs. A bachelor’s degree usually requires general courses in mathematics, humanities, natural sciences, social sciences, and engineering during the first two years, and specialized courses in the remaining years. The curriculum also covers the basics of other engineering disciplines such as chemistry, electrical and civil engineering. Studies typically include calculus, thermodynamics, physics, material science, statics, dynamics and fluid dynamics, and a laboratory section. Many engineering programs include internships.
Few graduates with other engineering majors or with bachelor’s degrees in science or mathematics can find engineering jobs when the demand is very high. A bachelor’s degree mechanical engineering program usually takes at least four years to complete. Many hiring managers prefer graduates from programs accredited by ABET, the Accreditation Board for Engineering and Technology.
Mechanical engineers can increase their marketability by completing a master’s degree or obtaining a professional license. In fact, some colleges offer five-year joint undergraduate and graduate programs in mechanical engineering. For state licensure, engineers need a bachelor’s degree from an ABET-accredited engineering school and experience as a licensed professional engineer. They must also pass the Fundamentals of Engineering exam before taking the Principles and Practice of Engineering exam for licensure. Some mechanical engineers improve their career prospects by completing a master’s degree in business administration.
According to the US Bureau of Labor Statistics, the median annual salary for mechanical engineers was $89,800 as of May 2016.
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Jobs for mechanical engineers are expected to grow 9 percent from 2016 to 2026, faster than the 7 percent growth rate projected for all engineering occupations. The best opportunities for mechanical engineers are in alternative energy, recycling, mechanical engineering, and transportation. Candidates who follow the latest technology and software should have the best job prospects.
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SPECIFIC REQUIREMENTS CLASS C Minimum / 50% / CGPA 2.00 in the following three subjects: • Mathematics • Science / Technology subjects related to two (2) fields.
UMP graduates are equipped with mechanical engineering skills and soft skills as added value so they can build a career: the Bachelor of Mechanical Engineering (BSE) degree at the University of Michigan () requires students to complete 128 courses. Credit hours of courses in several categories, which include: College of Engineering (CoE) core, intellectual breadth, program-specific courses, and general electives. Each of these categories and their corresponding requirements are described in the Program Requirements section. Information about the application, prerequisites and co-requisites, planning your schedule and other general instructions are described below. For information on concentrations, minors, study abroad, dual and joint degrees, and joint bachelor’s/master’s degrees, visit the Additional Academic Options section.
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Before a student can declare mechanical engineering as an engineering curriculum, the following requirements must be met:
If you meet the above requirements, please email your application to the Office of Academic Services ([email protected]). We will audit your degree, confirm your eligibility for publication, invite you to the Declaration path and finalize your long-term degree plan with you.
335, 450/455, 495, Technical Electives, Major Electives, EECS 314, Advanced Mathematics, Intellectual Breadth, and General Electives
The College of Engineering (CoE) requires every engineering student, regardless of their proposed engineering major, to take specific courses in the core subjects of mathematics, engineering, chemistry, and physics. The required CoE Core courses are listed below with the number of credits for each course given in parentheses:
Mechanical Engineering Degree
*AP Computer Science credit (EECS 180) does not meet programming requirements by itself. All students need one University of Michigan programming class and documentation of experience in MATLAB and C++ or a related language to fulfill program requirements. ENGR 190.002 – 2 credits MATLAB course recommended. Other examples include ENGR 101, ENGR 151, and EECS 280 or their transfer credit equivalent. This and other programming or computing classes may be considered by department request. Students are encouraged to first discuss requirements with their program advisor by email [email protected] If a program class qualifies for another degree requirement (for example, an elective), classes taken at UM may be directed toward that requirement and applied retroactively to the EECS 180 ENGR 101 requirement.
For more information on CoE Core course requirements, visit the CoE Bulletin. As a general guideline, 100-level CoE Core courses must be completed on or before freshman year, and 200-level CoE Core courses must be completed on or before sophomore year.
As part of the above CoE Core requirements, the Accreditation Agency for Engineering and Technology (ABET) requires all CO students to complete 32 credits of non-engineering courses in mathematics and science during their undergraduate degree: at least 16 credits in mathematics and inclusion. laboratory-based science credits.
As an engineer, it is important to learn about different modes of thought and areas of human achievement to better understand the impact of engineering decisions in a global, economic, environmental, and social context. To help students acquire a range of knowledge and facilitate creativity, the College of Engineering (COE) requires students entering COE in fall 2011 or later to complete the Intellectual Leave Requirement. Humanities and Social Sciences requirements apply to students enrolled at CU prior to September 2011. A grade of at least “D” is required and may be pass/fail.
Mechanical Engineering N1 N6
For the intellectual breadth requirement, each student must choose 16 credits of intellectual breadth courses following these rules:
For a complete explanation of Intellectual Breadth requirements and a list of PCDC and LAC courses, see the Intellectual Breadth section of the CU Bulletin.
There are additional categories of program-specific courses within the program. These include core courses, electives (400-level technical electives, core technical electives, and major electives), Advanced Math, and EECS 314/215. For full course descriptions, visit the Course List.
The core course consists of five main areas: Design and Manufacturing, Mechanics and Materials, Dynamics and Control, Thermal Science and Laboratory, and Technical Communication. There are 45 compulsory core course credits in total; and together these subjects represent the core technical competencies that every mechanical engineering student must learn. A minimum letter grade as shown in the table above must be earned in each course and it is not possible
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