Student Design Project (saylor.org)

Offered by Saylor.org,
Student Design Project (saylor.org)

This course will ask you to apply the knowledge you have acquired over the course of the entire mechanical engineering curriculum. It draws upon what you have learned in your courses in mechanics, CAD, materials and processing, thermal and fluid systems, and dynamics and control, just to name a few.

Please note: this legacy course does not offer a certificate and may contain broken links and outdated information. Although archived, it is open for learning without registration or enrollment.
This course will ask you to apply the knowledge you have acquired over the course of the entire mechanical engineering curriculum. It draws upon what you have learned in your courses in mechanics, CAD, materials and processing, thermal and fluid systems, and dynamics and control, just to name a few. This course is equivalent to the capstone course or senior design project that you would need to complete as a senior in a mechanical engineering program in a traditional American university setting.
This course begins in Unit 1 by introducing you to the stages of the design process. We will then focus on tools and skill sets that are particularly important for succeeding in a design project, including design planning, teamwork skills, project management, and design reporting.
Unit 2 covers important design principles and considerations. You will learn about economic implications (you must keep cost in mind while designing!), the ethical, societal, and environmental impacts of design decisions, and professional aspects of design work, including the process of securing intellectual property. The unit also expands on what you learned in previous materials and processing coursework by covering material- and process-selection criteria and approaches.
In Unit 3, you will engage in a capstone design project that applies your knowledge of mechanical engineering. You will start by identifying a problem to solve using engineering design. You will then explore the needs of the project, developing specific metrics necessary to achieve customer requirements. You will engage in both concept generation and refinement, applying engineering knowledge to derive potential solutions to the problem. You will then analyze the potential solutions, arriving at an ultimate decision to move forward with implementation, analysis, and final design evaluation. By the end of the unit and the course, you will have delivered a solution to a design problem and created a comprehensive report detailing the design, how you arrived at it, and a conclusion about its ability to meet the needs of the problem.
Upon completion of this course, the student will be able to:

  • Apply engineering design concepts and tools to create the initial design of a product.
  • Apply appropriate research techniques to refine the initial product design.
  • Apply appropriate resource-planning techniques in the product design.
  • Apply appropriate project management tools and techniques in planning the design and manufacture of the product.
  • Apply appropriate design codes and documentation in producing the design.
  • Calculate engineering costs of a product by using engineering economic tools.
  • Create designs that are safe and environmentally friendly.
  • Create designs that meet ethical standards and do not violate copyright laws.
  • Create relevant design reports and presentations that meet standards.
  • Test, validate, evaluate, and optimize engineering designs.
  • Apply the concepts learned in this course to understand the design of various engineering products and processes encompassing various technologies.
Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Mechatronics (saylor.org) Saylor Academy
Saylor.org

Mechatronics (saylor.org)

Most mechanical engineering systems today involve significant amounts of electrical and electronic control systems. Effectively, most modern mechanical engineering systems are mechatronic systems. Mechatronics is the discipline that results from the synergetic application of electrical, electronic, computer, and control engineering in mechanical engineering systems. Thus, it is essential for the mechanical engineer to have a strong understanding of the composition and design of mechatronic systems, which is the goal of this course.

Legacy Course
Self-Paced
Ethics, Technology and Engineering (Coursera) Coursera
Eindhoven University of Technology

Ethics, Technology and Engineering (Coursera)

There is an increasing attention to ethics in engineering practice. Engineers are supposed not only to carry out their work competently and skilfully, but also to be aware of the broader ethical and social implications of engineering and to be able to reflect on these. According to the Engineering Criteria 2000 of the Accreditation Board for Engineering and Technology (ABET) in the US, engineers must have “an understanding of professional and ethical responsibility” and should "understand the impact of engineering solutions in a global and societal context.”

Sep 28th 2026
5-12 Weeks
Ferrous Technology II (Coursera) Coursera
Pohang University of Science and Technology - POSTECH

Ferrous Technology II (Coursera)

Steel, ever-evolving material, has been the most preeminent of all materials since it can provide wide range of properties that can meet ever-changing requirements. In this course, we explore both fundamental and technical issues related to steels, including iron and steelmaking, microstructure and phase transformation, and their properties and applications.

Sep 28th 2026
5-12 Weeks
Project Management of Engineering Projects: Preparing for Success (edX) EdX
Delft University of Technology,DelftX

Project Management of Engineering Projects: Preparing for Success (edX)

Create your own project plan and learn the importance of the early project phases in achieving project success. People are key! Are you a (project) engineer with a technical background but lack management knowledge? Are you eager to improve project performance and want to expand your knowledge? This business and management course will focus on the necessary project management skills to successfully manage projects.

Sep 24th 2026
5-12 Weeks
Controle de Sistemas no Plano-s (Coursera) Coursera
Instituto Tecnológico de Aeronáutica

Controle de Sistemas no Plano-s (Coursera)

Após esse curso você será capaz de esboçar o Lugar Geométrico das Raízes (LGR - Root Locus) do denominador da Função de Transferência em Malha Fechada a partir dos polos e zeros da Função de Transferência em Malha aberta. Você também será capaz de projetar controladores de avanço de fase para atender simultaneamente requisitos de desempenho de amortecimento e de velocidade da resposta.

Sep 28th 2026
5-12 Weeks
Materials Science: 10 Things Every Engineer Should Know (Coursera) Coursera
University of California, Davis

Materials Science: 10 Things Every Engineer Should Know (Coursera)

We explore “10 things” that range from the menu of materials available to engineers in their profession to the many mechanical and electrical properties of materials important to their use in various engineering fields. We also discuss the principles behind the manufacturing of those materials. By the end of the course, you will be able to: recognize the important aspects of the materials used in modern engineering applications; explain the underlying principle of materials science: “structure leads to properties,”; identify the role of thermally activated processes in many of these important “things” – as illustrated by the Arrhenius relationship; relate each of these topics to issues that have arisen (or potentially could arise) in your life and work.

Sep 28th 2026
5-12 Weeks
Microwave engineering and antennas (Coursera) Coursera
Eindhoven University of Technology

Microwave engineering and antennas (Coursera)

This unique Master-level course provides you with in-depth know-how of microwave engineering and antennas. The course combines both passive and active microwave circuits as well as antenna systems. Future applications, like millimeter-wave 5G/beyond-5G wireless communications or automotive radar, require experts that can co-design highly integrated antenna systems that include both antennas and microwave electronics. We will provide you with the required theoretical foundation as well as hands-on experience using state-of-the-art design tools. The web lectures are supported by many on-line quizzes in which you can practice the background theory.

Sep 28th 2026
5-12 Weeks
Sistemas Digitales: De las puertas lógicas al procesador (Coursera) Coursera
Universitat Autònoma de Barcelona

Sistemas Digitales: De las puertas lógicas al procesador (Coursera)

En este curso aprenderemos los fundamentos del diseño de los circuitos digitales actuales, siguiendo una orientación eminentemente práctica. A diferencia de otros cursos más "clásicos" de Circuitos Digitales, nuestro interés se centrará más en el Sistema que en la Electrónica que lo sustenta. Este enfoque nos permitirá sentar las bases del diseño de Sistemas Digitales complejos.

Sep 28th 2026
5-12 Weeks