Showing posts with label WPI. Show all posts
Showing posts with label WPI. Show all posts

Thursday, April 1, 2010

Great Educational Ideas from Colleges and the Boy Scouts




cross posted at Tech&Learning Magazine

I went to college at Worcester Polytechnic Institute, WPI, and majored in Aerospace Engineering. I worked for 10 years as an engineer before becoming a physics teacher. WPI has a unique curriculum, called the WPI Plan, consisting of 4 quarters instead of 2 semesters, 3 large projects, and course curriculum that are mainly project based. Each undergraduate has to complete a Humanities Sufficiency Project, and Interactive Qualifying Project (IQP) and a Major Qualifying Project (MQP). The Sufficiency is a 3 credit project and course sequence in the humanities which ensures that all WPI graduates are well rounded. The IQP is a 9 credit project done in the junior year which relates science and technology to society and the MQP is a 9 credit project done in the senior year similar to a Master's thesis. The project based curriculum helps students learn content and develop problem solving, communications, and teamwork skills. It also helps develop ethics and responsibility in the students. I found that my WPI education has prepared me for my career as an engineer, as well as an educator, and served me well in many capacities.

This is the type of plan I try to use with my Physics students. I try to do as many labs, projects, and activities as I can because I know how well that works. The students are more engaged and tend to learn and remember concepts better. Project based learning is been proven to be a great way to educate students. In fact, WPI has done research on this topic. My IQP was on the quality of technical education in the US and we found that the students who did best in STEM (science, technology, engineering, math) majors and careers were the ones who had a good background in high school, including collaborative projects. Other research at WPI has shown the same thing. Many educators and educational institutions also have shown that project based learning is a very effective way to teach and learn STEM topics.

WPI's Mechanical Engineering Department also has a great classroom called the Discovery Classroom. It is a lecture-style room with large tables for the students. It has multimedia capabilities, laptops for the students to use, and a room off to the side which contains equipment for demonstrations. This took a plain lecture hall and turned it into an interactive learning room.

WPI also has some great programs for incoming freshmen to introduce them to the school and STEM topics and help prepare them for the rest of college. High Schools would do well to have similar programs that would help freshmen obtain the skills necessary to be successful in high school.

Other colleges have similar programs that emphasize group projects, the interaction of technology and society and a base in the humanities. High schools have also been moving more and more towards project based learning because it has been proven to work.

K-12 education should take notice of some of the great and innovative things that colleges are doing and adapt them to their own schools. Many colleges have K-12 outreach programs and schools should take advantage of these.

I am also an Eagle Scout, which is the highest rank in the Boy Scouts. I learned a lot in the Boy Scouts besides certain skills in camping, hiking, and the like. I learned how to work as a team, how to be a leader, and how to plan things. In Boy Scouts, the adults are advisors and the scouts do the planning and running of events, training, and campouts. As an Assistant Scoutmaster, I worked with a group of 5 boys who planned and carried out a Camporee for over 500 scouts. The Boy Scouts aren't afraid to let the boys take charge and lead. The adults will step in when necessary, but the boys learn a lot by their mistakes too. The older, more experienced scouts help teach the younger, newer scouts. Discipline is also handled by older scouts and things run very smoothly.

I think schools should do more to let students make decisions and run things. Let the students come up with ideas for lessons, projects, programs and more. Let them lead these projects and have the teachers advise them. The students will learn valuable skills and feel what it is like to take charge of a situation. Have students teach and tutor other students. Have upperclassmen be mentors to the underclassmen.

Some schools already do these things, but others would do well to look outside for ideas for new and innovative programs. Colleges, youth groups, the military, and even business and industry have plenty of great programs and ideas for doing things. Many of them can be brought into K-12 education and can be used to improve student engagement, achievement, and skills building. We have a large number of problems in schools now, and educators have to be creative in coming up with ways to address them. Look to these other organizations for ideas and help. We don't have to do it on our own.

Please share your ideas of things from outside education that could be used inside education.

Resources/more information:http://educationaltechnologyguy.blogspot.com/2009/05/how-to-get-started-with-project-based.html


Tuesday, December 29, 2009

Technology in use in Engineering



I have a Bachelor's degree in Aerospace Engineering from Worcester Polytechnic Institute and I worked for 10 years as an engineer before becoming an educator. I still do some consulting and keep up to date in the field. With all the talk about educational technology, I thought it would be nice to share some of the technology currently being used by engineers so that educators have an idea of what college students will be learning.

Engineers, like everyone else, use office productivity tools (MS Office, Google Docs), email, and the internet. In fact, the internet is one of the engineers' best tools. Research, online catalogs from vendors, online reference guides and calculators, and discussion groups and forums are all used on a daily basis.

Computer Aided Design (CAD) is the next major technology that engineers use. Products are designed in 3D on the computer, analyzed, fit checked, and simulated before prototypes are even built. Multi-physics simulation software, Finite Element Analysis, and Computational Fluid Dynamics software are critical to being able to design, analyze, and test products virtually before spending more money on manufacturing and live testing. They can analyze and simulate almost everything that a product would go through, virtually.

There is also Bill of Material (BOM) software to keep track of all the pieces and parts, Manufacturing software to help the engineers figure out the best way to build a product and then programming the equipment to do the work.

3D printers are used to make functional models of the product for early testing. They either strip away material, or lay down material (a plastic) to create the parts. These 3D printers can fit on a desktop. There are also 3D scanners that can be used to take a real part and turn it into a 3D model in the computer.

When I worked at Sikorsky Aircraft, we did everything on the computer. Design, analysis, simulation, manufacturing layout, communications, coordination, and more. Even our manuals and references were all online. If we printed something out, it had a watermark on it saying that the computer network should always be checked for updated information.

Computers and software have always been important in engineering, but as computers have gotten more powerful, so has software and the tools that can be used. Things change quickly, so engineers have to be able to learn new software and tools on their own.

As a high school physics teacher, I teach 90% seniors. This means that I am usually the last science teacher that they will have in high school (they may be taking two sciences). I try to expose them to project based learning (how WPI does things and how engineers work) and different types of software and systems that are out there for science and engineering. I try to teach them how to do their own research and how to learn things on their own, because I know that is what they will need to be able to do in college and in the workplace.

I also try to encourage students who are interested in and good at science to look at engineering as a career. Our world needs more engineers to solve the world's problems and continue with improving our standard of life.

Engineering is obviously not the only career field using technology - medicine, manufacturing, even retail, all use technology in ever increasing ways. This means that the more our students are exposed to technology, the better prepared they will be for college and the workplace.

More information on engineering and engineering resources for educators:


Thursday, October 8, 2009

WPI Open House


WPI (Worcester Polytechnic Institute), my alma mater (Aerospace Engineering, 1992), is having an open house for high school students next Monday, Columbus Day. WPI is a great school and has been recognized for its innovative programs and curriculum. They are mainly a science, math, engineering, and technology university, but also have humanities majors. The WPI Plan is a project based curriculum that the university has used for decades, and includes 3 major projects and a unique class schedule. Here is another article that I wrote about it.

I always recommend WPI to students looking at science, math, engineering, or technology fields. The school is small, but has excellent facilities and resources, allowing students to really explore their chosen field of study.

Here is the announcement:

WPI to Host Columbus Day Open House for High School Students

Worcester Polytechnic Institute's Office of Admissions offers several ways for high school students and their families to learn more about the university and see the beautiful campus. One way is through Open House events, where high school students can get a comprehensive look at campus, including academics, student life, athletics, admissions, and financial aid. Through this experience, prospective students also have the opportunity to ask questions of staff, faculty and students. The next Open House will be held on Columbus Day, Monday, Oct. 12, from 8:30 a.m. to 3 p.m. The agenda for our October Open House is available. Please note that sessions and locations may change before the event, and prospective students should obtain a printed copy of the agenda upon their arrival.

Check-in for the Open House is at Harrington Auditorium.

Please pre-register for your Open House visit. If you are unable to attend one of the Open Houses, you may consider WPI's other opportunities to visit.

We look forward to seeing you on campus!

Monday, April 6, 2009

Project Based Learning

Project Based Learning - a relatively new idea in high school education, but something I was exposed to many years ago (21) as a freshman at Worcester Polytechnic Institute (WPI). I received my Bachelor's Degree in Aerospace Engineering in 1992 and my education at WPI has served me well in a variety of capacities. WPI is mainly a science, technology, engineering, and math school, with some other majors mixed in. 

WPI has a unique learning system, called the WPI Plan. This plan stresses project based learning. Why? Because back when they developed the Plan (over 30 years ago) they knew that the only way to truly master subject area content is to apply it. They also knew that students needed to develop teamwork, communication skills, problem solving skills, creativity, critical thinking, and research skills (sounds like "21st Century skills" doesn't it?). 

The projects are an integral part of the Plan. All classes are expected to use projects in their curriculum and the school has three projects that all students must complete. The Humanities Sufficiency is a set of 5 themed humanities courses followed by a 1 course long independent study. This project is meant to make the student more well rounded. The IQP (Interactive Qualifying Project) is a team project studying the effects of technology on society or using technology to benefit society that is equivalent to 9 credits. The MQP (Major Qualifying Project) is also equivalent to 9 credits and is a major project in your subject area, similar to a senior thesis.

I think that WPI was ahead of the game with their plan, considering this is the route that high schools and even middle schools are going. K-12 education is starting to realize how important these skills are and that project based learning is a great way to engage students while teaching them content and other needed skills.

I try to use projects when ever possible in my classes. I found that my WPI education has taught me more than the STEM subjects, it has taught me valuable skills that have allowed me to be successful as a teacher, paramedic, engineer, manager, consultant, and husband. I would love to see high schools implement a more structured project based curriculum and provide more support for teachers. I think many teachers are afraid of projects because they fear that the students will not get all of the content that they need. However, if the project is structured properly, the students will get the content in order to complete the project. They will get the content, develop teamwork, communication skills, problem solving skills, and learn organization. They will also get to be social with other students which is very important to them.

Technology can help with project based learning. I always wonder what we could have achieved back then if we had the World Wide Web as it is now. All we had was email and some ftp sites. Students can use technology to do research, organize their projects, and then present their projects as presentations, web sites, blogs, or videos. 

For more information on project based learning, see WPI, Edutopia, PBL, or Google it.