SBG Implementation Part 1: Early Thrills and Chills #sbar #physicsed

So, almost two months in to my first experience with Skills Based Grading (SBG) and I’m simultaneously thrilled and disappointed.

I’m thrilled to have such terrific information on my students. It’s easy to see where they’re improving, where they’re struggling, and where I need to spend more time and adjust my instruction. My whole school district is watching to see how my classroom experiment with SBG works out, and the philosophy, the strategy, and even the technology are all aligned to provide students multiple pathways to success.

In my class, we work all year to build student independence. We spend time reading a technical text, writing for learning, working our way up Bloom’s Taxonomy in the Cognitive Domain, building, modeling, reflecting, and learning how to teach ourselves. Each topic is supported by in-class lessons, laboratory activities, inquiry activities, simulation activities, large group practice, small group practice, and individual practice. But in all cases, the responsibility for learning resides with the student.

It’s disappointing to see how few are taking advantage of all the opportunities and resources to fill in the gaps in their knowledge and push ahead to mastery. A recent reflection in which students wrote about what they liked about class, what they hated, and what they would change opened my eyes. Wide. Eight weeks into the year and I have had a grand total of four students undertake reassessments. And of those four, only two have made a habit of cleaning up their misunderstandings. Not surprisingly, these two have demonstrated very high levels of improvement, and are now regularly among the top scorers in any assessment.

Many stated they liked physics, they understood why we did what we did, and offered constructive suggestions such as more/less hands-on labs, more/less practice work in groups, more/less simulations, etc. Many stated the grading policy was new and uncomfortable, and they were getting used to it. Quite a few stated that they enjoyed the fact that they were graded on their performance, not effort, and they felt in control of their grades. I even expected the comments sharing students’ frustration that I answer most questions with questions.

More troubling, however, were the comments stating that students wanted homework to be graded, otherwise they didn’t see the point in doing it. Or the comments surrounding their strong desire to have an effort grade (“it’s not fair that you grade us only on our ability to meet the standards.”) Or the comments reflecting student dismay that I don’t hand out note packets at the end of every unit (even though class notes from each day’s class are posted on the web ~ 5 minutes after each class, and can even be subscribed to with an RSS feed, in addition to the entire general curriculum online). And I remain absolutely dismayed by the four comments stating it was unfair that I posted the solutions to review problems online, requiring students to check their own work.

I’m sensing a trend that my kids want me to hand out the information they need to solve test-type problems, and follow a more traditional “drill and kill” strategy. What I need to impress upon them, however, is I expect more than correct answers… I want understanding, I want transfer, I want exploration – and I want it for their sakes.  I realize they’ll forget most of what they learned in physics a few years down the road, but the underlying skills we seek to develop are so much more important: how to learn independently; how to communicate effectively; how to build your own understanding; and most importantly, how to attack a problem you don’t know the answer to.

So I’m torn. I love the SBG philosophy, and I absolutely believe that what I’m doing is what should be done in classrooms. I don’t grade homework — I shouldn’t have to (it does receive feedback, just not a grade). But I also understand that I’m under the magnifying glass in my district as I pilot SBG, and one of the metrics I will be judged on is year-end student performance on a standardized physics exam. Don’t get me wrong, I’m in a great district where administration truly understands the “bigger picture” and focuses on what’s best for the student.  Nonetheless, we have goals and targets for student performance, and it would be hard to justify expanding SBG with decreasing student performance.

Based on student participation and engagement without “points” as a motivator at this early stage, I’m concerned my class scores will be down this year. Are they learning a more important life lesson? I truly think so. But is it my job to teach life skills, or to teach physics? I like to think both, and I’d even go so far as to say the life skills are more important.  However, my success, the success of our SBG experiment, and the success of my students, at least in the short term, are measured in part by students’ ability to correctly solve physics problems, and that requires them to engage and practice.

I had a heart-to-heart with my classes today, and we’re changing up a few things. I’m providing more hands-on help; I agreed to work more whole-class sample problems; I’m going to sound like a broken record pointing out the many resources available to students; but I am also requiring them to demonstrate more responsibility, independence, and professionalism.  I’m hopeful our discussion leads to changes in and out of the classroom, but realize, of course, that it won’t be that easy.

I have the best job in the world, and I love what I do, for reasons too numerous to name. But several of these reasons are both blessing and a curse… each day, each class, each student is different, and it’s my challenge to find a way to help each and every one of them grow. Some days, though, I sure wish I had a little student Miracle Gro and Weed-B-Gone.

PIA Podcast Episode 23: Star Wars, Newton’s Laws, and Springs! #physicsed

lady_news_anchor_hg_wht Students have published the first Physics in Action podcast episode of season 3, featuring a look at physics in the Star Wars universe, a retro-styled look at Newton’s Laws of Motion, and an investigation into springs.  You can subscribe for free through iTunes, or download directly from the APlusPhysics.com website.  Great start to a new season, guys!

 

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Summer is Over – Projects Done and Undone

Well, it’s back to school tomorrow and, like each summer, I didn’t accomplish nearly as much as I had hoped, but probably accomplished more than I should have expected.

I had a chance to meet and network with a number of physics teachers in the area, making some new friends in the process.  I spent quality time with my daughter, including a trip to Sesame Place outside of Philadelphia, a family reunion at my folks’ riverhouse, and quite a few fun days at the zoo.  I taught a few classes at RIT, worked with Rochester City School District teachers on developing and training in Problem-Based Learning (PBL), and even found a few spare moments to read purely for entertainment!

One of my major goals this summer was to get a good start on the “Honors Physics” book. Last spring when APlusPhysics: Your Guide to Regents Physics Essentials came out, I received lots of great feedback, especially from students, but also heard from a number of physics teachers in other states asking about a version of the text that wasn’t limited to the NY Regents curriculum, but was generalized for a typical Honors Physics class.

Initially I had planned this follow-on book to be a guidebook for the AP-1 program when the AP-B course was split, but after several years of fuzzy timelines and fuzzier details, I decided to start on the physics review book I had initially wanted to write. Taking input from those who were kind enough to give me feedback, as well as targeting the book as a rough attempt at hitting the AP-1 targets with what tentative details I could scrounge from the powers that be, I finished my outline up in the spring.

What I found, however, was that this undertaking was considerably slower than the Regents review book. Why, you might ask? Well, to begin with, the Regents Physics curriculum is a “minimum” aptitude test, in my opinion, which makes it fairly shallow. Further, the test is well established and in the public domain, providing oodles and oodles of questions to pull from, both for tailoring of instruction, as well as for inclusion of examples. Finally, after having taught 10 Regents Physics sections in the past three years, I don’t think it would be a stretch to state that I could recite the curriculum in my sleep.

Migrating to the new book, I have the distinct advantage of starting with the baseline material from Regents Physics Essentials. However, the outline I’ve written significantly expands the scope of the course, with the goal of providing Honors Physics instructors the ability to pick and choose chapters and sections to fit their courses. This has led to many, many hours scouring the Internet for state and district standards both near and far; discussions with physics teachers across the country about what they want from such a book, what they don’t, and some hard decisions about what compromises and cuts have to be made to provide a resource that will be of the greatest value to the greatest number, while maintaining my personal goals for the book as well as keeping the page count in check so as to maintain an acceptable price point. Of course, I’d love to keep everything, but the problem with a 700-page review book is three-fold: first, the cost becomes prohibitive; second, students won’t read it; and third, that’s starting to move into textbook territory, and there are already many terrific physics texts available for this level.

But, I’m proud to state that the first draft of the review book is coming along fine, with more than 200 pages in fairly strong shape.  I’ve been spending a lot of time working on rotational motion, attempting to streamline basic concepts such as rotational kinematics and torque in a way that follows logically and highlights the parallels of translational motion, without getting bogged down in confusing terminology and unnecessary depth.  This should nearly complete the mechanics section of the text.

I’ve also done initial work on some of the additional chapters, such as fluid mechanics, thermal physics, semiconductors, and cosmology.  Besides initial outlines and some basic illustrations, I’ve been especially focused on the semiconductor chapter… not many introductory courses go into semiconductors, and I’m thrilled at the opportunity and challenge of providing basic semiconductor physics review at this level, consistent with the work I was involved in a few years ago developing the Semiconductor Technology Enrichment Program (STEP) with Rochester Institute of Technology’s Microelectronic Engineering Department.

So, as school starts up again, progress in the writing department will, of necessity, slow down.  I’m excited to meet this year’s class of students, jump into Skills-Based Grading (SBG) for the first time, utilize a number of short videos for concept review, increase the amount of inquiry in my classroom, reduce the amount of lecture time, learn more about physics modeling, and on and on and on.  But I’m setting aside specific time each morning to keep working on the book project, and I continue to value whatever input and guidance you can provide in this endeavor.  And, of course, the APlusPhysics.com website continues to grow — tutorials, videos, projects, forums, and blogs are all ongoing projects!

Thanks for the continued support, and best wishes to you on an amazing 2011-2012 school year!