Bachelor of Science in Chemical Engineering - Biochemical Engineering Concentration 48 months Undergraduate Programme By Case Western Reserve University |TopUniversities

Bachelor of Science in Chemical Engineering - Biochemical Engineering Concentration

Subject Ranking

# 251-300QS Subject Rankings

Programme Duration

48 monthsProgramme duration

Main Subject Area

Engineering - ChemicalMain Subject Area

Programme overview

Main Subject

Engineering - Chemical

Degree

Other

Study Level

Undergraduate

The undergraduate program in chemical engineering seeks to produce graduates who will: apply the knowledge and skills acquired through the chemical engineering curriculum to their professional careers assume positions of responsibility and/or leadership in industry, government, and business pursue professional careers across a broad range of industries succeed in post-graduate and professional degree programs Student Outcomes As preparation for achieving the above educational objectives, the BS degree program in Chemical Engineering is designed so that students attain: an ability to apply knowledge of mathematics, science, and engineering an ability to design and conduct experiments, as well as to analyze and interpret data an ability to design a system, component, or process to meet desired needs within realistic constraints such as economic, environmental, social, political, ethical, health and safety, manufacturability, and sustainability an ability to function on multidisciplinary teams an ability to identify, formulate, and solve engineering problems an understanding of professional and ethical responsibility an ability to communicate effectively the broad education necessary to understand the impact of engineering solutions in a global, economic, environmental, and societal context a recognition of the need for, and an ability to engage in life-long learning a knowledge of contemporary issues an ability to use the techniques, skills, and modern engineering tools necessary for engineering practice Concentrations and Breadth Elective Sequences A distinctive feature of the chemical engineering program is the three-course breadth elective sequence taken during the junior and senior years that permits a student to major in chemical engineering and, at the same time, pursue an interest in a related field. Eleven elective sequences have standing departmental approval: biochemical engineering, biomedical engineering, computing, electrochemical engineering, electronic materials, energy, environmental engineering, management/entrepreneurship, polymer science, undergraduate research and systems and control. There is also an advanced study sequence for students in the combined BS/MS program. Subject to departmental approval, students may alternatively choose to design their own breadth elective sequence. In addition, two concentrations, one in biochemical engineering and the second in pre-medical studies, are available for students interested in these paths. Biochemical Engineering Concentration Biochemical engineering can be defined as the field of application of chemical engineering principles to systems that utilize biomolecules or bio-organisms to bring forth biotransformation. Biochemical engineering applications are versatile, ranging from waste-water treatment to production of therapeutic proteins.

Programme overview

Main Subject

Engineering - Chemical

Degree

Other

Study Level

Undergraduate

The undergraduate program in chemical engineering seeks to produce graduates who will: apply the knowledge and skills acquired through the chemical engineering curriculum to their professional careers assume positions of responsibility and/or leadership in industry, government, and business pursue professional careers across a broad range of industries succeed in post-graduate and professional degree programs Student Outcomes As preparation for achieving the above educational objectives, the BS degree program in Chemical Engineering is designed so that students attain: an ability to apply knowledge of mathematics, science, and engineering an ability to design and conduct experiments, as well as to analyze and interpret data an ability to design a system, component, or process to meet desired needs within realistic constraints such as economic, environmental, social, political, ethical, health and safety, manufacturability, and sustainability an ability to function on multidisciplinary teams an ability to identify, formulate, and solve engineering problems an understanding of professional and ethical responsibility an ability to communicate effectively the broad education necessary to understand the impact of engineering solutions in a global, economic, environmental, and societal context a recognition of the need for, and an ability to engage in life-long learning a knowledge of contemporary issues an ability to use the techniques, skills, and modern engineering tools necessary for engineering practice Concentrations and Breadth Elective Sequences A distinctive feature of the chemical engineering program is the three-course breadth elective sequence taken during the junior and senior years that permits a student to major in chemical engineering and, at the same time, pursue an interest in a related field. Eleven elective sequences have standing departmental approval: biochemical engineering, biomedical engineering, computing, electrochemical engineering, electronic materials, energy, environmental engineering, management/entrepreneurship, polymer science, undergraduate research and systems and control. There is also an advanced study sequence for students in the combined BS/MS program. Subject to departmental approval, students may alternatively choose to design their own breadth elective sequence. In addition, two concentrations, one in biochemical engineering and the second in pre-medical studies, are available for students interested in these paths. Biochemical Engineering Concentration Biochemical engineering can be defined as the field of application of chemical engineering principles to systems that utilize biomolecules or bio-organisms to bring forth biotransformation. Biochemical engineering applications are versatile, ranging from waste-water treatment to production of therapeutic proteins.

Admission Requirements

7+

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