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Students
Tuition Fee
USD 33,954
Start Date
Not Available
Medium of studying
On campus
Duration
Not Available
Program Facts
Program Details
Degree
Foundation
Major
Biomedical Engineering | Chemical Engineering
Discipline
Engineering
Minor
Biological Engineering and Bioengineering | Chemical and Biomolecular Engineering
Education type
On campus
Course Language
English
Tuition Fee
Average International Tuition Fee
USD 33,954
About Program

Program Overview


The Bioengineering and Chemical Engineering Pre-Major at Shoreline Community College provides a solid foundation for students aspiring to major in these fields. It offers a comprehensive curriculum in mathematics, physics, chemistry, biology, and engineering, preparing learners for further study at a four-year institution. The program emphasizes hands-on learning and project-based work, equipping graduates for careers in various industries, including bioengineering, chemical engineering, research, and product design.

Program Outline

Degree Overview:


Program Overview:

The Bioengineering and Chemical Engineering Pre-Major at Shoreline Community College provides a solid foundation for students aspiring to major in Bioengineering or Chemical Engineering. It serves as part of Shoreline's Physical Sciences Transfer program and is designed to fulfill the requirements for the Associate of Science Transfer, Track 2 (AS-T2) degree. This specialized degree prepares learners for further study at a four-year institution.


Objectives:

Upon completion of the program, graduates will:

  • Demonstrate the application of scientific observation and experimentation to elucidate natural phenomena.
  • Utilize fundamental scientific principles to formulate predictions about the natural world.

Outline:


Program Structure:

The Bioengineering and Chemical Engineering Pre-Major comprises a comprehensive curriculum encompassing various disciplines within science and engineering. It includes foundational coursework in mathematics, physics, chemistry, biology, and engineering.


Course Schedule:

The program's courses are typically offered on a quarter system schedule. Students can commence their studies during any quarter, including Fall, Winter, Spring, and Summer.


Modules and Descriptions:

The program consists of several key modules that build upon each other, providing a progressive learning experience. These modules include:

  • Mathematics: Covers fundamental mathematical concepts essential for engineering, including calculus, linear algebra, and differential equations.
  • Physics: Explores the principles of classical and modern physics, with a focus on topics relevant to engineering applications.
  • Chemistry: Delves into the foundations of chemistry, including general chemistry, organic chemistry, and analytical chemistry.
  • Biology: Introduces fundamental biological principles, including cell biology, molecular biology, and genetics.
  • Engineering: Provides an overview of engineering fundamentals, including statics, dynamics, and materials science.

Assessment:


Assessment Methods:

The program utilizes a variety of assessment methods to evaluate student performance and progress. These methods include:

  • Exams: Regular examinations assess students' comprehension of course material and their ability to apply knowledge in problem-solving scenarios.
  • Assignments: Assignments, including homework problems, lab reports, and projects, provide opportunities for students to demonstrate their understanding and skills.
  • Presentations: Students may be required to present their work, findings, or solutions in oral or written presentations.
  • Projects: Capstone projects or group projects allow students to engage in real-world engineering challenges and demonstrate their ability to integrate knowledge from multiple disciplines.

Assessment Criteria:

Student performance is evaluated based on the following criteria:

  • Accuracy and completeness of answers
  • Demonstration of critical thinking and problem-solving abilities
  • Effective communication skills
  • Adherence to deadlines

Teaching:


Teaching Methods:

The program employs various teaching methods to cater to diverse learning styles. These methods include:

  • Lectures: Traditional lectures present foundational knowledge and introduce key concepts.
  • Discussions: Interactive discussions foster critical thinking, collaboration, and a deeper understanding of the subject matter.
  • Laboratory Sessions: Hands-on laboratory sessions provide practical experience and reinforce theoretical concepts.
  • Problem-Solving Exercises: Problem-solving exercises encourage students to apply their knowledge to real-world scenarios and develop analytical skills.

Faculty:

The program is taught by highly qualified faculty with expertise in engineering, science, and education. The faculty are dedicated to providing personalized attention, mentorship, and support to students throughout their academic journey.


Unique Approaches:

The program emphasizes hands-on learning through laboratory sessions and project-based work. Students are encouraged to participate in research projects, internships, and industry collaborations to gain practical experience and enhance their competitiveness.


Careers:


Career Paths and Opportunities:

Graduates of the Bioengineering and Chemical Engineering Pre-Major are well-prepared for careers in a wide range of industries, including:

  • Bioengineering
  • Chemical Engineering
  • Research and Development
  • Product Design and Testing
  • Project Management
  • Consulting
  • Education

Potential Employers:

Graduates may find employment opportunities in various settings, such as:

  • Engineering firms
  • Manufacturing companies
  • Pharmaceutical companies
  • Chemical manufacturers
  • Biotechnology companies
  • Hospitals
  • Medical equipment companies
  • Government agencies
  • Colleges and universities
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