Wednesday, August 6, 2014
Data Standards for Competency Education
This is a video capture of the slide deck that Liz Glowa, Maria Worthen, and I used in our session "Data Standards for Competency Education" at the STATS-DC conference on July 31, 2014. (Slides from the one hour presentation compressed into two minutes of video...use pause as needed.)
Thursday, June 26, 2014
Open Education Resources (OER) Digital Ecosystem
I recently participated in the "OER Annotation Summit" in Berkley, California. The event was supported in large part by an OER technology grant from the William and Flora Hewlett Foundation. The Summit explored opportunities and barriers to
fostering greater collaboration in solving shared technology challenges
for open education resources initiatives.
At the event I worked with a break-out group to map the OER Digital Ecosystem. The following infographic is the QIP visualization of the "ecosystem" derived from a picture of the whiteboard and Felix Tscheulin's gliffy diagram of the same...
At the event I worked with a break-out group to map the OER Digital Ecosystem. The following infographic is the QIP visualization of the "ecosystem" derived from a picture of the whiteboard and Felix Tscheulin's gliffy diagram of the same...
Monday, June 23, 2014
Wednesday, February 19, 2014
Technology-Enabled Personalized Learning
Last week I had the privilege of representing QIP at the Technology-Enabled Personalized Learning Summit. The invitation-only event was hosted by the Friday Institute for Educational Innovation at NC State University and included the right mix of education practitioners, service providers, nonprofit leaders, researchers, and education technology thought leaders to tackle some of the big questions around the future of personalized learning.
Here are some take-aways:
Here are some take-aways:
- Personalized learning is more than differentiated instruction -- it is learner-centered vs. teacher/group-centered mass-customization.
- Personalized learning requires a different set of practices, tools, roles, and resources.
- Research-based evidence about effective personalized learning has not made it into mainstream practice.
- Noncognitive factors, such as grit, tenacity, and perseverance, become important as learners develop habits of success and take on greater autonomy in personalized models.
- Personalized learning uses different data -- metrics for "growth" and "grit" continuously measured for feedback to the learner rather than less frequent measurement of achievement for benchmarking and accountability.
- Technical standards for interoperability of personalized learning data exist, but there are issues preventing scaled adoption/implementation...data integration barriers are slowing down progress toward personalized learning.
- Personalized learning at scale can only work by leveraging technology and "big data" -- privacy concerns must be addressed.
- We can compel students to attend school but we can't compel them to learn...or can we -- the human-centered design of personalized learning must include motivational design.
- "Engagement isn't necessarily enjoyment. If you're drowning, you're engaged in the experienced, but it's not enjoyable" - Chris Dede
- Human to human relationships matter (student-to-student, educator-to-student)
- Emerging models leverage non-instructional roles and technology to free up teacher time to work more with individuals and smaller groups.
- Personalized learning opens new career pathways for education professionals and opportunities for both traditional schools of education and other organizations to develop/support new professions. A new set of professional competencies are needed and those competencies need to be defined as new professional roles and delivery models emerge.
- Personalized competency-based professional learning is important to optimize professional development and as a model for personalized student learning.
- Personalized learning at scale can benefit by new kinds of collaboration between learning science research and practice.
Friday, January 31, 2014
"2-Sigma" Learning at Scale (Part 2): What research tells us.
Under what conditions can MOST STUDENTS learn as effectively as the top 20% of students under the conventional classroom condition? This 11 minute video explores what research tells us.
Tuesday, November 26, 2013
What does it take for students under the classroom model of group instruction to learn as effectively as students under good tutoring conditions?
In this seven minute video I share some ideas about the effectiveness of one-on-one tutoring and the path to "2-Sigma" learning at scale.
Wednesday, November 20, 2013
Scaffolding and Feedback
I'm learning more about the power of scaffolding and feedback for optimized student learning. I've learned about it from the learning sciences perspective by studying research papers on the subject, but I've recently gained some new practical and tangible insights as I tutor one of my sons.
Effective tutoring uses both scaffolding and feedback to help students bridge gaps in understanding and develop new skills. The techniques are conceptually similar but different in that scaffolding is more proactive and feedback is more reactive. An example of scaffolding is when a tutor is helping a student learn how to solve a multi-step mathematics problem and prompts the student, "What do you do first?"
Scaffolding provides a safe structure within which the learner continues to build on and reinforce existing knowledge and skills. It provides guidance and motivation in the process of learning while keeping the learner at the center of the learning experience. It does not let the learner off-the-hook by providing answers. If the student says, "I don't know." The tutor might rephrase the question as a multiple choice or ask a more leading question such as "What kind of problem is this?" or "What is the problem asking you to figure out?" Scaffolding is not the same as instruction. A good tutor resists the urge to say, "The first thing you need to do is…" Only when it is clear that the learner has a knowledge gap does the tutor step in…and that brings us to the role of feedback.
Formative feedback in tutoring is the tutor's response to a knowledge gap, misunderstanding, or area for improvement aimed at correcting/improving the cognitive imperfection. Feedback is reactive in that it's driven by formative assessment or observation data. Formative feedback is descriptive and specific, shedding light on the nature of the misunderstanding or procedural error and guiding the learner to correct it. Feedback can be instructive like, "No, you skipped a step; the first thing you need to do is…," or it can be scaffolding-like, helping the learner self-correct, such as, "Check your signs."
Research shows that scaffolding and feedback are most effective when addressed at at-least "step-based" granularity. For example, on a multi-step mathematics problem, effective feedback goes beyond telling the learner whether or not the answer to a problem is right or wrong. Expert mathematicians know how to solve for x, because they have mastered the process-skills, but also because they have deep understanding of the concepts that make the process work. On competencies that don't involve process steps the scaffolding might involve questions that prompt metacognition (i.e. when the learner thinks about what they are thinking) and explore new connections leading toward deeper understanding. For example, building connections between historical events.
Scaffolding and feedback are some of the most powerful catalysts for learning. I know this from the research and from practical experience. Learning takes place much more effectively and efficiently under good tutoring conditions that include scaffolding, feedback, high expectations, and competency-based advancement.
Effective tutoring uses both scaffolding and feedback to help students bridge gaps in understanding and develop new skills. The techniques are conceptually similar but different in that scaffolding is more proactive and feedback is more reactive. An example of scaffolding is when a tutor is helping a student learn how to solve a multi-step mathematics problem and prompts the student, "What do you do first?"
Scaffolding provides a safe structure within which the learner continues to build on and reinforce existing knowledge and skills. It provides guidance and motivation in the process of learning while keeping the learner at the center of the learning experience. It does not let the learner off-the-hook by providing answers. If the student says, "I don't know." The tutor might rephrase the question as a multiple choice or ask a more leading question such as "What kind of problem is this?" or "What is the problem asking you to figure out?" Scaffolding is not the same as instruction. A good tutor resists the urge to say, "The first thing you need to do is…" Only when it is clear that the learner has a knowledge gap does the tutor step in…and that brings us to the role of feedback.
Formative feedback in tutoring is the tutor's response to a knowledge gap, misunderstanding, or area for improvement aimed at correcting/improving the cognitive imperfection. Feedback is reactive in that it's driven by formative assessment or observation data. Formative feedback is descriptive and specific, shedding light on the nature of the misunderstanding or procedural error and guiding the learner to correct it. Feedback can be instructive like, "No, you skipped a step; the first thing you need to do is…," or it can be scaffolding-like, helping the learner self-correct, such as, "Check your signs."
Research shows that scaffolding and feedback are most effective when addressed at at-least "step-based" granularity. For example, on a multi-step mathematics problem, effective feedback goes beyond telling the learner whether or not the answer to a problem is right or wrong. Expert mathematicians know how to solve for x, because they have mastered the process-skills, but also because they have deep understanding of the concepts that make the process work. On competencies that don't involve process steps the scaffolding might involve questions that prompt metacognition (i.e. when the learner thinks about what they are thinking) and explore new connections leading toward deeper understanding. For example, building connections between historical events.
Scaffolding and feedback are some of the most powerful catalysts for learning. I know this from the research and from practical experience. Learning takes place much more effectively and efficiently under good tutoring conditions that include scaffolding, feedback, high expectations, and competency-based advancement.
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