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Rutter, Charles; Pancorbo, Jennifer – Chemical Engineering Education, 2020
Fermentation is responsible for the production of myriad products across a variety of industrial sectors. In particular, the biomanufacturing industry requires a labor force proficient in fermentation and its associated technologies to drive the production of recombinant protein therapeutics. This paper describes the development of a course that…
Descriptors: Biotechnology, Manufacturing Industry, Biochemistry, Scientific Concepts
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Mantawy, Islam M.; Rusch, Conner; Ghimire, Sushil; Lantz, Lucas; Dhamala, Hari; Shrestha, Bipesh; Lampert, Anthony; Khadka, Mohit; Bista, Anima; Soni, Rhytham; Shaik, Abdulu Saleem; Lujan, Eric; Boyd, Mika; Pickings, Richard; Mabrich, Alexander – Education Sciences, 2019
Educational approaches in structural engineering have focused on classical methods for solving problems with manual calculations through assignments, quizzes, and exams. The use of computational software to apply the learned knowledge has been ignored for decades. This paper describes an educational approach to tackle the lack of applicable…
Descriptors: Engineering Education, Active Learning, Student Projects, Construction (Process)
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Gilleskie, Gary L.; Reeves, Baley; van Zanten, John H.; Balchunas, John; Carbonell, Ruben G. – Chemical Engineering Education, 2016
The Biomanufacturing Training and Education Center (BTEC) at North Carolina State University is an instructional center that offers education and training programs in the area of biopharmaceutical process development and manufacturing. Our programs are designed to provide educational opportunities throughout the "life cycle" of a…
Descriptors: Lifelong Learning, Pharmaceutical Education, Educational Opportunities, Chemical Engineering
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Gilleskie, Gary L.; Reeves, Baley A. – Chemical Engineering Education, 2014
Most chemical engineering graduates work in industry, a fact that underscores the need for courses to provide experiences that prepare them for industry. The Biomanufacturing Training and Education Center (BTEC) at North Carolina State University has addressed this need by developing and delivering a comprehensive downstream bioprocessing program…
Descriptors: Science Instruction, Chemical Engineering, Employment Qualifications, Student Attitudes
Richard, Alan – Jobs For the Future, 2015
Advanced manufacturing is growing and thriving in the United States. Companies are in great need of reliable employees who can communicate well, effectively make decisions, and are interested in long-term careers with opportunity for advancement. Employers have identified a need for a more robust talent pipeline to narrow America's skills gap--a…
Descriptors: Manufacturing Industry, Skilled Workers, Labor Force Development, Training
Cassola, Joel – Techniques: Connecting Education and Careers, 2006
This article features the machining technology program at Cape Fear Community College (CFCC) of Wilmington, North Carolina. North Carolina's Cape Fear Community College is working to meet diverse industry needs through its CNC training. The school's program has gained the attention of the local manufacturing community and students when it shifted…
Descriptors: Community Colleges, Technology Education, Technology Integration, Program Effectiveness
North Carolina State Dept. of Public Instruction, Raleigh. Div. of Vocational Education. – 1988
This guide is intended for use in teaching a course in industrial enterprise. The course, which has been designed using a student-centered approach, is intended to help students understand the dynamics of an industrial enterprise as a fusion of two technologies--material processing and management. The first two sections discuss the guide's…
Descriptors: Behavioral Objectives, Business, Grade 12, High Schools
North Carolina State Dept. of Public Instruction, Raleigh. Div. of Vocational Education. – 1988
This guide is intended for use in teaching an introductory course in manufacturing materials and processes. The course centers around four basic materials--metallics, polymers, ceramics, and composites--and seven manufacturing processes--casting, forming, molding, separating, conditioning, assembling, and finishing. Concepts and classifications of…
Descriptors: Assembly (Manufacturing), Behavioral Objectives, Ceramics, Grade 11
Fuller, Theodore E. – 1968
The manufacturing industry's areal and structural growth trends were analyzed for insights into their possible future role in Appalachia's economy. Between 1950 and 1960, total manufacturing employment expanded in large-, medium-, and small-center population areas, in rates inverse to center size. However, absolute gains in employment were…
Descriptors: Economic Development, Economic Factors, Employment Level, Employment Opportunities
North Carolina State Dept. of Public Instruction, Raleigh. Div. of Vocational Education. – 1988
The course materials included in this guide are intended to introduce students to the manufacturing industry and its relationships with society, individuals, and the environment. The following topics are covered in the nine learning modules: manufacturing and society and manufacturing systems; manufacturing materials and processes (types of…
Descriptors: Assembly (Manufacturing), Behavioral Objectives, Design, Grade 10
Foght, H. W. – Bureau of Education, Department of the Interior, 1919
Until a few years ago the Southern States were considered in the main an agricultural section. More recently the advantageous location in respect to raw materials, minerals, water, and electric power of the South Atlantic States has occasioned an almost unprecedented growth in manufacturing industries. Particularly has the cotton manufacturing…
Descriptors: Manufacturing Industry, Child Labor, Labor Conditions, Finishing