Courses tagged with "Quality" (70)

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Starts : 2017-08-28
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edX Free Closed [?] English Error occured ! We are notified and will try and resolve this as soon as possible.
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Are you an engineer, scientist or technician? Are you dealing with measurements or big data, but are you unsure about how to proceed? This is the course that teaches you how to find the best estimates of the unknown parameters from noisy observations. You will also learn how to assess the quality of your results.

TU Delft’s approach to observation theory is world leading and based on decades of experience in research and teaching in geodesy and the wider geosciences. The theory, however, can be applied to all the engineering sciences where measurements are used to estimate unknown parameters.

The course introduces a standardized approach for parameter estimation, using a functional model (relating the observations to the unknown parameters) and a stochastic model (describing the quality of the observations). Using the concepts of least squares and best linear unbiased estimation (BLUE), parameters are estimated and analyzed in terms of precision and significance.

The course ends with the concept of overall model test, to check the validity of the parameter estimation results using hypothesis testing. Emphasis is given to develop a standardized way to deal with estimation problems. Most of the course effort will be on examples and exercises from different engineering disciplines, especially in the domain of Earth Sciences.

This course is aimed towards Engineering and Earth Sciences students at Bachelor’s, Master’s and postgraduate level.

 

LICENSE

The course materials of this course are Copyright Delft University of Technology and are licensed under a Creative Commons Attribution-NonCommercial-ShareAlike (CC-BY-NC-SA) 4.0 International License.

Starts : 2017-04-17
No votes
edX Free Closed [?] English Book distribution Business Circuits Nutrition Quality Udemy

How can governments become more open and transparent, while simultaneously dealing with various challenges, such as data sensitivity? How can open government data be made available to improve public policy making? Which technologies are available to make governments more open and  use open government data?

Governments all over the world aim to become more open and transparent in order to establish closer ties with their constituents. However, releasing government data involves complex challenges and poses two major concerns. First, many different participants are involved and there are various dependencies between them, and second, the technologies that support open government are fragmented. In addition, it is unclear how different contexts should alter the best practices for open government.

This course explores the foundations and objectives of Open Government and examines current developments, including the opening and reuse of governmental data such as the release of data by governments in America and Europe.

This course will empower you by helping you grasp the key principles surrounding open government.

The topics of the course are applied to concrete cases, which you will be asked to analyze and discuss with your peers.

This course may be of interest to the following:

  • Students interested in the basics of open government, in data-driven governance and data-driven research
  • Professionals or researchers working on open government research and interested in strategies and challenges for opening governments
  • Professionals or researchers working on open data research or open data initiatives
  • Professionals and researchers working on topics related to public values, including transparency and privacy, in a governmental context
  • Senior administrators, policy advisors, government officials or agency members, who are interested in how ICTs change governments and how ICTs can be used in public administrations

 

LICENSE
The course materials of this course are Copyright Delft University of Technology and are licensed under a Creative Commons Attribution-NonCommercial-ShareAlike (CC-BY-NC-SA) 4.0 International License.

Starts : 2017-06-27
No votes
edX Free Closed [?] English Business Nutrition Quality Structural engineering

Mathematics is the language of Science, Engineering and Technology. Calculus is an elementary Mathematical course in any Science and Engineering Bachelor. Pre-university Calculus will prepare you for the Introductory Calculus courses by revising four important mathematical subjects that are assumed to be mastered by beginning Bachelor students: functions, equations, differentiation and integration. After this course you will be well prepared to start your university calculus course. You will learn to understand the necessary definitions and mathematical concepts needed and you will be trained to apply those and solve mathematical problems. You will feel confident in using basic mathematical techniques for your first calculus course at university-level, building on high-school level mathematics. We aim to teach you the skills, but also to show you how mathematics will be used in different engineering and science disciplines.

Education method

This is a course consisting of 6 modules (or weeks) and 1 final exam. The class will consist of a collection of 3-5 minute lecture videos, inspirational videos on the use of mathematics in Science, Engineering and Technology, (interactive) exercises, homework and exams.

Exercises, homework and the exams will determine the final grade. The course material will be available for the students online and free of charge. 

 

This course was awarded the Open MOOC Award 2016 by the Open Education Consortium.

 

 

 

 

LICENSE

The course materials of this course are Copyright Delft University of Technology and are licensed under a Creative Commons Attribution-NonCommercial-ShareAlike (CC-BY-NC-SA) 4.0 International License.

Learn more about our High School and AP* Exam Preparation Courses

* Advanced Placement and AP are registered trademarks of the College Board, which was not involved in the production of, and does not endorse, these offerings.

Starts : 2017-04-10
No votes
edX Free Closed [?] Business English Book distribution How to Succeed Information Nutrition Quality

Do you want to learn how to design? Using the Delft Design Approach, you will learn how to use a number of key design methods to create meaningful products and services.

This course is an introduction to the Delft Design Approach offering a model and a set of signature methods from Delft to teach you how to get from understanding the user in context to defining a meaningful design challenge and – in the end – deliver a great design! The course challenges you to experience the design process yourself and reflect on your work with the help of students and excellent teaching staff from Delft, and industrial experts.

No previous knowledge of design methods is required, yet some experience with designing (something) is helpful.

Starts : 2017-09-01
No votes
edX Free Closed [?] English Business Evaluation Nutrition Quality

Programmeren wordt steeds belangrijker voor de nieuwe generaties. Er is veel online materiaal beschikbaar om jouw leerlingen (en jezelf!) te leren programmeren. Deze cursus helpt jou als leerkracht om dit in een didactische vorm te gieten.

Deze cursus bevat filmpjes en opdrachten waarmee jij de basisbegrippen van programmeren onder de knie kunt krijgen. En je leert natuurlijk hoe je leerlingen, zowel in het basis onderwijs als in het voortgezet onderwijs, kunt leren programmeren. De principes van Scratch zie je in veel talen voor kinderen terug, dus we laten je ook andere programmeertalen zien zoals Snap! (meer voor de middelbare school) en de micro:bit.

Wanneer je voor het ID-verified track kiest, kan je ook meedoen aan de speciale dag die Felienne organiseert voor leerkrachten, en wordt jouw cursusontwerp voor programmeeronderwijs geëvalueerd.

LICENTIE

Het materiaal van deze cursus is eigendom van de TU Delft en wordt aangeboden onder een Creative Commons licentie CC-BY-NC-SA 4.0 International Licence.

Starts : 2017-06-08
No votes
edX Free Closed [?] English Biology Book distribution Business Circuits Nutrition Quality

Are you involved in the development and execution of technical projects and eager to know what it takes to fund a project successfully? Would you like to be more in touch with the latest developments in project finance and able to use these to your advantage? If so, you’re in the right place!

This course will provide you with the fundamental knowledge and necessary tools to create the optimum financing structure for your project and enhance its potential to attract funding.

The approach taken is both theoretically sound and practically relevant. This is achieved by using case studies to illustrate the topics, as well as assignments that give learners first-hand experience in what it takes to put together a financeable project.

At the end of the course, you’ll understand what is required to achieve successful project financing.

Those who work on infrastructure and industrial projects, especially, will need to have a good understanding of how project financing works and how project investors and lenders think and assess the risks of a project.

Projects are increasingly set up through cooperation between different groups of stakeholders such as Public Private Partnerships (PPPs). Project contracts are evolving to facilitate and structure such co-operations, which has in turn led to a range of novel contracts and methods of financing.

This course is a good enhancement course for learners who successfully completed the MOOC Project Management from DelftX. This course builds on the basic knowledge gained in that MOOC, but deals with the financing aspects in considerably more detail.

Starts : 2017-10-05
No votes
edX Free Closed [?] English Book distribution Business How to Succeed Nutrition Quality

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, distinguishing three areas:

  • The project manager and the team
  • The project process
  • The project context

The course focuses on the early project phases, including examples from technical projects within various sectors and industries (amongst others, but not limited to, infrastructure projects and construction projects).

At the end of this course, you will have created your own project execution plan, either in a team effort or on individual basis. Of course the team effort allows for a special learning experience and we appraise active team participation


LICENSE

The course materials of this course are Copyright Delft University of Technology and are licensed under a Creative Commons Attribution-NonCommercial-ShareAlike (CC-BY-NC-SA) 4.0 International License.

Starts : 2017-05-04
No votes
edX Free Closed [?] English Book distribution Business How to Succeed Nutrition Quality

Underestimating project complexity is widely accepted as one of the major causes of project failure. Based on international benchmarking activities (Merrow, 2010), we know that an average of 40% of projects do not deliver what they promised; for megaprojects in the oil and gas industry this figure is even worse (Ernst&Young, 2014).

As with most external factors, many of the causes and consequences of complexity are difficult to avoid or control. When dealing with complexity, standard practices in the field of project management often overlook the inherent uncertainties linked to the length and scale of engineering and infrastructure projects and their constantly changing environments. The situation is exacerbated by rapidly evolving technologies and social change.

Attempts to overcome these challenges by simply trying to reduce their causes is not enough.

In this course, you will learn our approach to mastering complexity, focused on front-end development and teamwork, which will help you develop the skills you need to make timely actions in order to tackle complexities and improve your chances of project success. You will learn how to enhance your own capacities and capabilities by ensuring you have the necessary balance of complementary skills in your team.

Project success starts with recognizing the main drivers of complexity, which can be highly subjective and highly dynamic. In this course, you will learn to identify what makes a project complex and how to perform a complexity assessment.

Examining the elements of a project (such as interfaces, stakeholders, cultures, environment, technology, etc.) and their intricate interactions is key to mastering complexity.

You will analyze these elements in the context of your own project. Then, based on our complexity framework, you will identify the complexity footprint of your project and use it to adapt your management processes. With personalized guidance and feedback from our world-class instructors, you will learn how to recognize what competencies you need to develop and how to adapt your management style accordingly, not only to improve project performance but also to enhance your decision-making capacity.

This course has been designed by TU Delft’s international experts on Project Complexity, and is based on more than 60 years of practical experience as well as relevant research in the field. “We see projects still fail and there is a need to do things differently. That’s what this course is about: delivering the best practices for project execution based on our state-of-the-art research.” – Professor Hans Bakker.

Starts : 2017-11-14
No votes
edX Free Closed [?] English Business Calculus I Evaluation Foreign+Language How to Succeed Nutrition

How can you tell a secret when everyone is able to listen in? In this course, you will learn how to use quantum effects, such as quantum entanglement and uncertainty, to implement cryptographic tasks with levels of security that are impossible to achieve classically.

This interdisciplinary course is an introduction to the exciting field of quantum cryptography, developed in collaboration between QuTech at Delft University of Technology and the California Institute of Technology.

By the end of the course you will

  • Be armed with a fundamental toolbox for understanding, designing and analyzing quantum protocols.
  • Understand quantum key distribution protocols.
  • Understand how untrusted quantum devices can be tested.
  • Be familiar with modern quantum cryptography – beyond quantum key distribution.

This course assumes a solid knowledge of linear algebra and probability at the level of an advanced undergraduate. Basic knowledge of elementary quantum information (qubits and simple measurements) is also assumed, but if you are completely new to quantum information additional videos are provided for you to fill in any gaps.

Starts : 2017-10-11
No votes
edX Free Closed [?] English Business How to Succeed Nutrition Quality

Have you ever wondered what it takes to get your train on the right platform at the scheduled time every day?

Understanding the complexity behind today’s sophisticated railway systems will give you a better insight into how this safe and reliable transportation system works. We will show you the many factors which are involved and how multiple people, behind the scenes, have a daily task that enables you to get from home to work. Journey with us into the world of rail - a complex system that connects people, cities and countries.

Railway systems entail much more than a train and a track. They are based on advanced technical and operational solutions, dealing with continuously changing demands for more efficient transport for both passengers and freight every day. Each system consists of many components that must be properly integrated: from trains, tracks, stations, signaling and control systems, through monitoring, maintenance and the impact on cities, landscape and people. This integration is the big challenge and the source of many train delays, inconvenient connections and other issues that impact our society.

This engineering course attempts to tackle those issues by introducing you to a holistic approach to railway systems engineering. You will learn how the system components depend on each other to create a reliable, efficient and state-of-the-art network.

We will address questions such as:

  • How do railways work and how did they evolve over time?
  • What factors give rise to everyday issues?
  • How do different components of the railway system interact?
  • What is the effect of train stations and the network from an urban, social and economic point of view?
  • What can be done to improve the monitoring and maintenance of tracks?
  • How are timetables designed in a way that balances passenger demand with the capacity of the railway and is adaptable to handle unexpected disturbances?
  • What can be done to prevent and deal with disturbances caused by external factors and how do they affect the whole rail system?
  • How does the design of railways influence their performance over time?

A new serious game has been designed for this course to guide you through the process of decision making while building a rail network and maintaining it. Cities have to be connected in an ever-changing setting, dealing with wear, capacity, developments and disturbances. What choices do you make and how do they affect the performance of the system?

For this MOOC, our very own TU Delft Measurement Train will be used to give you insights of the track and vehicle design, real-life monitoring and pantograph/catenary interaction. Together with the game this will give you the opportunity to see real-life examples and implement the knowledge you learn in a simulated environment.

This first ever MOOC on railway systems engineering is delivered by the renowned experts of TU Delft and leading professionals working in the industry. It combines theoretical knowledge with practical examples, with the main objective to maintain a high degree of reliability under predictable and unknown circumstances.

If you want to learn about the science behind the exciting world of railway systems - whether train, metro or tram - this course will set you on the right track!

Starts : 2017-10-10
No votes
edX Free Closed [?] English Aviation Business How to Succeed Nutrition Quality RSLogix5000+programming

There is no doubt that technological innovation is one of the key elements driving human progress.

However, new technologies also raise ethical questions, have serious implications for society and the environment and pose new risks, often unknown and unknowable before the new technologies reach maturity. They may even lead to radical disruptions. Just think about robots, self-driving vehicles, medical engineering and the Internet of Things.

They are strongly dependent on social acceptance and cannot escape public debates of regulation and ethics. If we want to innovate, we have to do that responsibly. We need to reflect on –and include- our societal values in this process. This course will give you a framework to do so.

The first part of the course focuses on ethical questions/framework and concerns with respect to new technologies.

The second part deals with (unknown) risks and safety of new technologies including a number of qualitative and quantitative risk assessment methods.

The last part of the course is about the new, value driven, design process which take into account our societal concerns and conflicting values.

Case studies (ethical concerns, risks) for reflection and discussions during the course include – among others- nanotechnology, self-driving vehicles, robots, AI smart meters for electricity, autonomous weapons, nuclear energy and CO2capture and coolants. Affordable (frugal) innovations for low-income groups and emerging markets are also covered in the course. You can test and discuss your viewpoint.

The course is for all engineering students who are looking for a methodical approach to judge responsible innovations from a broader – societal- perspective.

Starts : 2017-03-28
No votes
edX Free Closed [?] English Business Chemokines Nutrition Quality

You’ll learn about today’s urban challenges focusing on developing countries, referred to as the global south. We will debate the benefits of three pathways, going beyond traditional urban strategies and policies:

  1. Spatial justice

Spatial justice is undoubtedly one of the greatest challenges of urban contexts in emerging economies.

  1. Housing Provision and Management

Increasing demand in the global south calls for alternative approaches in housing provision and management.

  1. Urban Resilience

Understanding resilience not as a mere struggle for survival, but as an opportunity to build better urban environments.

We will discuss question such as:

  • Is the just city framework applicable in cities with extreme socio-economic inequality?
  • Can community-led housing initiatives provide effective solutions for households in need?
  • How can resilience support development instead of perpetuating a disadvantaged condition?

In this architecture and urban planning course, academic urban planning expertise from TU Delft is used to formulate possible answers to these questions, and is applied in a range of challenging case studies from Ghana, Brazil, Malaysia, Chile, and China, among others. This course offers you a new perspective to understand and analyze the urban challenges of the global south.

Through a combination of short theoretical lessons, presentation of case studies, testimonies from practitioners and practical assignments you will also learn how to develop a critical perspective about your own urban environment and how to translate this knowledge into analytical tools and innovative urban solutions.

This course is designed for undergraduate and master level students of architecture, urban planning and disciplines related to urban themes. Nevertheless, anyone interested on debating spatial justice, urban resilience and housing provision and management are welcome.

No previous knowledge in urban planning or global south is required, just your eagerness to learn!

RETHINK THE CITY PRIZE

One participant will be selected to come to Delft to participate in the 2017 Summer School “Planning and Design with Water”. This Rethink the City prize will cover the costs of the tuition fee for the summer school, the costs of board and lodging in Delft during the period of the summer school, and the travel costs to The Netherlands. The selection criteria for this prize will be communicated upon the course start.

LICENSE

The course materials of this course are Copyright Delft University of Technology and are licensed under a Creative Commons Attribution-NonCommercial-ShareAlike (CC-BY-NC-SA) 4.0 International License.

Starts : 2016-09-06
No votes
edX Free Closed [?] English Business Evaluation Nutrition Quality

Programmeren is steeds belangrijker in onze wereld. En jong geleerd is oud gedaan. Deze MOOC bevat filmpjes en opdrachten waarmee kinderen zelf kunnen leren programmeren.

Iedere week maken we samen een game: een doolhof, een aquarium, een Flappy Bird spel en een soort Super Mario.

Iedere week leer je weer nieuwe programmeerblokken en denken we samen na over hoe je je programma’s het mooiste kunt maken.

Dit materiaal volgt de leerlijn programmeren in het basisonderwijs.

Docent of ouder? Lees hier alvast wat deze MOOC inhoudt en hoe je alles goed instelt voor je kind of leerling."

Wil je met meerdere kinderen mee doen? Maak voor ieder kind of leerling een account aan. Zo krijgen ze hun eigen puzzels en kunnen ze in hun eigen tempo werken. Als ze klaar zijn krijgen ze dan ook een mooi Scratch diploma met hun naam erop.

LICENTIE

Het materiaal van deze cursus is eigendom van de TU Delft en wordt aangeboden onder een Creative Commons licentie CC-BY-NC-SA 4.0 International Licence.

Starts : 2016-08-15
2 votes
edX Free Closed [?] Engineering English Aviation Business Calculus I How to Succeed

In the third edition of Solar Energy, you will learn to design a complete photovoltaic system. This course introduces the technology that converts solar energy into electricity, heat and solar fuels with a main focus on electricity generation. Photovoltaic (PV) devices are presented as advanced semiconductor devices that deliver electricity directly from sunlight. The emphasis is on understanding the working principle of a solar cell, fabrication of solar cells, PV module construction and the design of a PV system. You will gain a greater understanding of the principles of the photovoltaic conversion— the conversion of light into electricity. This course explores the advantages, limitations and challenges of different solar cell technologies, such as crystalline silicon solar cell technology, thin film solar cell technologies and the latest novel solar cell concepts as studied on lab-scale. We will discuss the specifications of solar modules and demonstrate how to design a complete solar system for any particular application.

Education Method

The class will consist of a collection of eight to twelve minute lecture videos, exercises, assignments and exams. Specified assignments and the three exams will determine the final grade. The new textbook on “Solar Energy, basics, technology and systems” from the Delft University of Technology will be available for the students on-line and free of charge. Your course staff will encourage and challenge you to learn from, and interact with, your fellow students by helping each other and sharing ideas and best practices, in the course forum. We were happy to see the incredible number of interesting student videos on solar energy systems from all over the world in the previous edition of this course. 

Professor Smets was the first ever recipient of the edX Prize for Exceptional Contributions to Online Teaching and Learning. His previous online courses attracted over 150,000 students worldwide, who were inspired to take their first steps in the transition to renewable energy. 


LICENSE

The course materials of this course are Copyright Delft University of Technology and are licensed under a Creative Commons Attribution-NonCommercial-ShareAlike (CC-BY-NC-SA) 4.0 International License.

Starts : 2018-02-20
No votes
edX Free Closed [?] English Business Calculus I How to Succeed Nutrition Quality

Use the knowledge of Photovoltaic technology, systems and microgrids to design your own engineering project.

This project-based course finalizes the Solar Energy Engineering MicroMasters program and focuses on applying the knowledge you gained to a solar energy project. You will work on either your own project or on a project provided by the course team. These projects can be focused on design, analysis, monitoring or integration of any photovoltaic application.

First, you will write a short project plan describing the project and the orientation of your work. After approval, you will execute your project.

Your final product is a written paper on the results of your project. This paper will be peer reviewed and assessed by a professor. You will also defend your project in an oral presentation. You will be assessed on your ability to justify design choices, to critically analyze the performance of systems, to find creative solutions and to show the potential of your solution.

Finding a sponsor for your project within a company, institute or university is encouraged.

This is the last course of the Solar Energy Engineering MicroMasters Program designed to cover all physics and engineering aspects of photovoltaics: photovoltaic energy conversion, technologies and systems.

You can start the capstone project after completing PV1x, PV2x and PV3x. However, you will need the knowledge and skills gained in PV4x to complete the final module of this course, the oral presentation.

Note: The capstone project is only accessible for ID verified MicroMasters learners.

Starts : 2018-02-20
No votes
edX Free Closed [?] English Business Calculus I How to Succeed Nutrition Quality

Photovoltaic systems are often placed into a microgrid, a local electricity distribution system that is operated in a controlled way and includes both electricity users and renewable electricity generation. This course deals with DC and AC microgrids and covers a wide range of topics, from basic definitions, through modelling and control of AC and DC microgrids to the application of adaptive protection in microgrids. You will master various concepts related to microgrid technology and implementation, such as smart grid and virtual power plant, types of distribution network, markets, control strategies and components. Among the components special attention is given to operation and control of power electronics interfaces.

You will familiarize yourself with the advantages and challenges of DC microgrids (which are still in an early stage). You will have the opportunity to master the topic of microgrids through an exercise in which you will evaluate selected pilot sites where microgrids were deployed. The evaluation will take the form of a simulation assignment and include a peer review of the results.

This course is part of the Solar Energy Engineering MicroMasters program designed to cover all physics and engineering aspects of photovoltaics: photovoltaic energy conversion, technologies and systems.

Starts : 2017-11-14
No votes
edX Free Closed [?] English Business Calculus I How to Succeed Nutrition Quality

The key factor in getting more efficient and cheaper solar energy panels is the advance in the development of photovoltaic cells. In this course you will learn how photovoltaic cells convert solar energy into useable electricity. You will also discover how to tackle potential loss mechanisms in solar cells. By understanding the semiconductor physics and optics involved, you will develop in-depth knowledge of how a photovoltaic cell works under different conditions. You will learn how to model all aspects of a working solar cell. For engineers and scientists working in the photovoltaic industry, this course is an absolute must to understand the opportunities for solar cell innovation.

This course is part of the Solar Energy Engineering MicroMasters Program designed to cover all physics and engineering aspects of photovoltaics: photovoltaic energy conversion, technologies and systems.

We recommend that you complete this course prior to taking the other courses in this MicroMasters program.  

Starts : 2017-11-28
No votes
edX Free Closed [?] English Business Calculus I How to Succeed Nutrition Quality

In this course you will learn how to turn solar cells into full modules; and how to apply full modules to full photovoltaic systems.

The course will cover design of photovoltaic systems, such as utility scale solar farms or residential scale systems (on/off the grid). You will learn about the function and operation of various components including inverters, batteries, DC-DC converters and the grid. After learning about the components, you will gain an understanding of the main design decisions to be taken when planning a real PV installation with excellent performance and reliability.

Finally, you will practice modelling the performance of a PV system for different solar energy applications, and estimating the energy production of a client's potential system.

This course is part of the Solar Energy Engineering MicroMasters Program designed to cover all physics and engineering aspects of photovoltaics: photovoltaic energy conversion, technologies and systems.

Starts : 2017-09-05
No votes
edX Free Closed [?] English Business Calculus I How to Succeed Nutrition Quality

The technologies used to produce solar cells and photovoltaic modules are advancing to deliver highly efficient and flexible solar panels. In this course you will explore the main PV technologies in the current market. You will gain in-depth knowledge about crystalline silicon based solar cells (90% market share) as well as other up and coming technologies like CdTe, CIGS and Perovskites. This course provides answers to the questions: How are solar cells made from raw materials? Which technologies have the potential to be the major players for different applications in the future?

This course is part of the Solar Energy Engineering MicroMasters Program designed to cover all physics and engineering aspects of photovoltaics: photovoltaic energy conversion, technologies and systems.

Starts : 2017-09-05
No votes
edX Free Closed [?] English Aviation Business Calculus I How to Succeed Information policy Nutrition

A transition to sustainable energy is needed for our climate and welfare. In this engineering course, you will learn how to assess the potential for energy reduction and the potential of renewable energy sources like wind, solar and biomass. You’ll learn how to integrate these sources in an energy system, like an electricity network and take an engineering approach to look for solutions and design a 100% sustainable energy system.

This course is an introduction to the Master Programme Sustainable Energy Technology at TU Delft and is aimed at Bachelor students from science and engineering disciplines.


LICENSE

The course materials of this course are Copyright Delft University of Technology and are licensed under a Creative Commons Attribution-NonCommercial-ShareAlike (CC-BY-NC-SA) 4.0 International License.

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