Sustainable Engineering from a European Perspective
Sustainable Engineering from a European Perspective, available at Free, has an average rating of 4.5, with 92 lectures, 7 quizzes, based on 173 reviews, and has 9287 subscribers.
You will learn about Holisticly assess the sustainability of technological solutions. Develop sustainable innovation. Develop sustainable business plans. This course is ideal for individuals who are Engineering students and industry practitioners who are interested in Sustainable Manufacturing and Startup Development. It is particularly useful for Engineering students and industry practitioners who are interested in Sustainable Manufacturing and Startup Development.
Enroll now: Sustainable Engineering from a European Perspective
Summary
Title: Sustainable Engineering from a European Perspective
Price: Free
Average Rating: 4.5
Number of Lectures: 92
Number of Quizzes: 7
Number of Published Lectures: 92
Number of Published Quizzes: 7
Number of Curriculum Items: 99
Number of Published Curriculum Objects: 99
Original Price: Free
Quality Status: approved
Status: Live
What You Will Learn
- Holisticly assess the sustainability of technological solutions.
- Develop sustainable innovation.
- Develop sustainable business plans.
Who Should Attend
- Engineering students and industry practitioners who are interested in Sustainable Manufacturing and Startup Development.
Target Audiences
- Engineering students and industry practitioners who are interested in Sustainable Manufacturing and Startup Development.
This course provides insight how sustainable innovations can be developed and transfered into start-ups. For this, the motivation for and principles of sustainabiliy in the engineering discipline are presented, especially with regard to manufacturing. From a business perspective, the course also demonstrates how sustainable business models are developed. These core topics are complemented by additional insight into specific engineering topics that can be utilized in the context of Sustainable Manufacturing, e.g. Augmented and Virtual Reality, Digital Factory, Systems Design/Engineering etc.
The creation of these resources has been funded by the ERASMUS+ grant program of the European Union under grant no. 2015-1-DE01-KA203-002207. Neither the European Commission nor the project’s national funding agency DAAD are responsible for the content or liable for any losses or damage resulting of the use of these resources.
Course Curriculum
Chapter 1: Sustainable Value Creation
Lecture 1: Introduction
Lecture 2: 1.1 Characterisation & Competitiveness
Lecture 3: 1.2 Job Development & Newly Industrialised Countries
Lecture 4: 2.1. What is Sustainability?
Lecture 5: 2.2 Trends & Challenges 1
Lecture 6: 2.3 Trends & Challenges 2
Lecture 7: 2.4. Industry 4.0
Lecture 8: 2.5. Summary
Lecture 9: 3.1 Functionality of a Value System
Lecture 10: 3.2 Characteristics of Values
Lecture 11: 4.1 Introduction & Value Creation Module (1)
Lecture 12: 4.2 Value Creation Module (2) & Entrepreneurship (1)
Lecture 13: 4.3 Entrepreneurship (2), Value Creation Network & Learnstruments
Lecture 14: 5.0 Introduction & Life Cycle Assessment (LCA)
Lecture 15: 5.1 LCA – Product Life Cycle
Lecture 16: 5.2 LCA – Stages of Life Cycle Assessment
Lecture 17: 5.3 LCA – Inventory Analysis & Impact Assessment
Lecture 18: 5.4 LCA – Interpretation & Assessment of Process Chains
Lecture 19: 5.5 Social Life Cycle Assessment
Lecture 20: 5.6 Life Cycle Costing
Chapter 2: Systems Thinking and Engineering
Lecture 1: 1. Systems Thinking
Lecture 2: 2. Thinking Outside the Box and Parallel Thinking
Lecture 3: 3. Systems for Sustainable Development
Lecture 4: 4. Systems Engineering
Chapter 3: Technology Management
Lecture 1: 1. Introduction
Lecture 2: 2. Technology Indentifikation
Lecture 3: 3. Technologoy Selection
Lecture 4: 4. Technology Acquisition
Lecture 5: 5. Technology Protection
Lecture 6: 6. Technology Exploitation
Lecture 7: 7. Technology Mastering & Learning
Chapter 4: Circular Economy
Lecture 1: Introduction
Lecture 2: 1.1. Circular Economy and Business Models
Lecture 3: 1.2. Examples of Circular Business Models
Lecture 4: 2. Challenges of Circular Business Models
Lecture 5: 3. Circular Business Models Innovation Process and Tools
Chapter 5: Sustainable Start-up Development
Lecture 1: Introduction
Lecture 2: 1. Motivation from a Sustainability Point of View
Lecture 3: 2.1. Ideation of Sustainable Solutions
Lecture 4: 2.2. Ideation of Sustainable Solutions
Lecture 5: 3. Characteristics of Start ups
Lecture 6: 4.1. Macro Cycle for the Start up Development
Lecture 7: 4.2. Macro Cycle for the Start up Development
Lecture 8: 4.3. Macro Cycle for the Start up Development
Lecture 9: 4.4. Macro Cycle for the Start up Development
Lecture 10: 4.5. Macro Cycle for the Start up Development
Lecture 11: 4.6. Macro Cycle for the Start up Development
Lecture 12: 4.7. Macro Cycle for the Start up Development
Lecture 13: 4.8. Macro Cycle for the Start up Development
Lecture 14: 4.9. Macro Cycle for the Start up Development
Lecture 15: 4.10. Macro Cycle for the Start up Development
Lecture 16: 5. Micro Cycle for the Start up Development
Chapter 6: Supply Chain and Production Planning
Lecture 1: 1. Retail Supply Chain
Lecture 2: 2. Engineer-To-Order (ETO) Supply Chain
Lecture 3: 3. Sustainable Supply Chains
Lecture 4: 4. Logistics Solutions In The Future
Chapter 7: Virtual and Augemented Reality
Lecture 1: 1. Definitions & History
Lecture 2: 2. Virtual and Augmented Reality Concepts
Lecture 3: 3. Scene Graph & VRML Introduction
Lecture 4: 4.1. Input Devices 1
Lecture 5: 4.2. Input Devices 2
Lecture 6: 4.3. Output Devices
Lecture 7: 5. Virtual Studio Systems
Lecture 8: 6.1. Applications in Medicine
Lecture 9: 6.2. Further Applications
Lecture 10: 7.1. Introduction to Virtools Software
Lecture 11: 7.2. Interaction in Vitools
Lecture 12: 7.3. User Interaction
Lecture 13: 7.4. Create a programmable Building Block
Lecture 14: 7.5. Definition of Parameters
Lecture 15: 7.6. Dynamic Creation of Objects & Scripts
Lecture 16: 8.1. SPE3D – Pre-planning of surgical operations
Lecture 17: 8.2. SPE3D – Scripts for the Application
Lecture 18: 8.3. MARVIS – Visualization & Interaction Modes for a Liver Surgery
Lecture 19: 8.4. Digital Reconstruction of Frederic Chopin’s piano
Chapter 8: Digital Factory
Lecture 1: 1.1. Digital Factory-Introduction
Lecture 2: 1.2. Virtual Factory Framework
Lecture 3: 1.3. Virtual Factory Data Model
Lecture 4: 1.4. Virtual Factory Data Model Hierarchy
Lecture 5: 1.5. VFDM Key Classes
Lecture 6: 1.6. VFDM Key Classes & Instances 1
Lecture 7: 1.7. VFDM Key Classes & Instances 2
Lecture 8: 1.8. Data Repository & Tools
Lecture 9: 1.9. Examples Digital Factory & Tool
Lecture 10: 2.1. Modeling of Prodution System – Introduction
Instructors
-
Felix Sieckmann
Researcher at TU Berlin -
Tim Stock
Doctoral Student at TU Berlin
Rating Distribution
- 1 stars: 3 votes
- 2 stars: 4 votes
- 3 stars: 30 votes
- 4 stars: 74 votes
- 5 stars: 62 votes
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