University Of Massachusetts Lowell Mechanical Engineering
University Of Massachusetts Lowell Mechanical Engineering – Mechanical engineers are problem solvers who help industry tackle important challenges such as developing new power and autonomous systems and advanced composite materials, as well as new ways to improve manufacturing productivity and quality.
B.S. UMass Lowell’s mechanical engineering degree provides a solid science and engineering foundation in mechanics, fluid flow, heat transfer, energy, materials science, and dynamic systems.
University Of Massachusetts Lowell Mechanical Engineering
Our program emphasizes practical experience based on the design-build-test methodology, providing an opportunity to prepare and test theoretical designs. In addition, then the corresponding courses are humanities and social sciences.
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The ABET-accredited mechanical engineering program includes award-winning researchers and dedicated academics committed to providing students with a high-quality, comprehensive education.
Do you want to transfer from another department to the Mechanical Engineering department? See requirements.
Students can benefit from learning how to conduct research in one of 11 faculty-run research laboratories focused on energy and sustainability, defense and security, manufacturing and industry, and engineering education. UMass Lowell also has several major research centers that foster interdisciplinary collaboration in areas such as 3D printing, baseball research, wind energy, nanofabrication, and robotics.
Our highly successful co-op programs allow you to apply your engineering knowledge to the technical workforce and develop the skills you need to succeed after graduation. Since 2010, more than 3,100 students have participated in cooperatives of various high-tech companies and industries.
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Our program produces successful mechanical engineers with the skills and flexibility to thrive in a variety of fields. Mechanical engineering graduates from UMass Lowell are in high demand, with 88 percent of them taking a job or being hired within six months of graduation.
For an optimal web experience, we recommend the latest version of Firefox, Chrome, Edge or Safari. Please use one of the links below to install a supported browser. In 1895, James T. Smith founded the Lowell Textile School to teach the theory and practical art of textiles and other industries. Thirty-two students participated in a three-year textile manufacturing program with tuition of $100 per year. The school only issued certificates and diplomas, but in 1913 it was granted the right to issue 4-year diplomas in textile engineering and textile chemistry. . The Lowell School of Textiles continued to flourish between 1895 and 1928.
1929-1953, Lowell Textile Institute. From the design to the finished material, the sample is a methodical development. In 1928, Governor Alvan T. Fuller signed a bill changing the name of the Lowell Textile School to the Lowell Textile Institute. In addition to the symbolic name change of the institute, the new developments of the curriculum and the recruitment of additional students will begin the acquisition of the four-year diplomas offered in the basic courses of textile chemistry, textile engineering and textile production. New construction and renovations mark the excellence of the Lowell Textile Institute in its new space in Southwick Hall. In 1903, Southwick Hall housed a growing student body with classrooms and laboratories for practical experience in the textile industry. The school awarded its first bachelor’s degree in textile painting and textile engineering. In the spring of 1948, the student body officially adopted Terry Tex, the personified bull terrier, as the mascot of the Textile Institute.
1954-1974, Lowell Institute of Technology. The advent of diversification in New England industry led to the subsequent expansion of Lowell Technological Institute’s facilities and curriculum to meet the needs of the industry. Training programs include plastics, leather, paper and electronics technology and liberal arts offerings. The Department of Mechanical and Textile Engineering was established at Lowell Technological Institute in 1961 with the growth of the undergraduate engineering program. In 1961, twenty-five mechanical engineering students participated in the commencement of Lowell Technological Institute’s first graduating class.
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1975-1990, University of Lowell. In July 1975, the “merger” took place when the local school administration and Lowell Tech administration merged Lowell State College and Lowell Technological Institute with Lowell University. This combination creates tremendous changes for students, athletes, faculty, staff, budgets, housing, administration, and long-term planning. Forty-three students attended the commencement of Lowell University’s first mechanical engineering class in 1976. A new college mascot came on the scene called “The Chiefs” and was portrayed for almost 20 years.
1991 – Present, University of Massachusetts Lowell. In 1991, Governor William Weld signed legislation creating a new campus structure for the University of Massachusetts. The University of Lowell became the University of Massachusetts Lowell () as part of a five-campus system. Forty mechanical engineering students attended UMass Lowell’s first graduating class in 1992. In May 1994, “The River Hawk” debuted as the university’s mascot and continues to represent the spirit today. In the fall of 1996, UMass Lowell was one of the first universities to offer online courses and now has more than 60 online programs, including a degree in mechanical engineering, enrollment reached 18,000 for the first time, and all sports teams joined Division I. America East Conference. . Famous guests such as Stephen King, Meryl Streep, and Oprah have visited the campus, and the campus has new buildings to support student engagement, such as Tsongas Arena, University Crossing, the Saab Emerging Technologies and Innovation Center, residence halls, the UMass Lowell Inn & Conference Center. , the Innovation Hub (iHUB) and the Fabric Discovery Center unite the three university campuses. In 2019, Perry Hall underwent an 18-month, $50 million renovation to become a state-of-the-art engineering building with a generous donation from engineering alumnus Barry Perry ’68. In 2015, Jacqueline Moloney became the first woman in the university’s 121-year history to be appointed chancellor. The Department of Mechanical Engineering currently has around 34 faculties focusing on three research areas, Mechanics and Materials, Dynamic Systems and Thermofluid Transport to meet the requirements of Energy and Sustainability, Defense and Security, Manufacturing and Industry and Technical needs of national needs. education. . In Fall 2020, we launched our new industrial engineering program and welcomed our first cohort of undergraduate and graduate students.
For an optimal web experience, we recommend the latest version of Firefox, Chrome, Edge or Safari. Please use one of the links below to install a supported browser. This program allows you to choose between a thesis or a non-thesis track. The MSE degree requires a minimum of thirty (30) credit hours of accepted graduate work, including nine (9) credit hours of research in the thesis track.
This program allows you to choose between a thesis or a non-thesis track. The master’s degree requires a minimum of thirty credit hours of graduate work, including nine credit hours for the thesis, or nine credit hours in a minor outside of an accepted department for the non-thesis.
Mechanical Engineering Throughout The Years
The university offers a degree in energy engineering. This unique area of concentration represents a distinct multidisciplinary program jointly managed by the Department of Mechanical Engineering and the Department of Chemical and Nuclear Engineering. The energy engineering program has two M.S. training options: renewable engineer and nuclear engineer.
These courses are aimed at undergraduate or professional students who wish to explore areas of engineering without committing to a full graduate program.
The Department of Mechanical Engineering offers a combined B.S.E./M.S.E. The program is open to juniors or seniors with a 3.0 GPA or better. Students usually apply to transfer in the second semester of their third year, but can do so until the last day of classes in the last semester before graduation.
For an optimal web experience, we recommend the latest version of Firefox, Chrome, Edge or Safari. Please use one of the links below to install a supported browser. Gain a solid foundation in product design and expand your knowledge of quality and process design with UMass Lowell’s online Graduate Certificate in Design and Manufacturing Engineering.
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Expand your knowledge of modern design, manufacturing practices, and various methods of experimental design with UMass Lowell’s online Graduate Certificate in Design and Manufacturing Engineering. This four-course online program enables engineers to become effective technical managers. You will discover best practices for designing, manufacturing and delivering premium quality products at the lowest possible cost within the budget and schedule of engineering projects.
Offered by the UMass Lowell Department of Mechanical Engineering, this certificate is for engineers who want to improve their product design and manufacturing skills. A bachelor’s degree in engineering or science is recommended but not required for enrollment in the program.
One success leads to another Apply credits from lower credentials to higher. We designed our program to build ourselves:
Focus on the methodology used by world-class companies to manage the design and development of high-quality, low-cost products in the most appropriate time, with case study analysis tools: Topics include: strategies and processes for creating new products, organizational aspects of multidisciplinary design teams, the joint project management and a structured methodology for identifying customer requirements and planning, controlling and selecting manufacturing processes. In particular, focus on the relationship between CE, manufacturing and quality tools and methods and their contribution
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