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T.J. Edwards

What IS the difference between competencies and standards? | reDesign - 2 views

  • Competencies, on the other hand, tend to emphasize the application of skills, knowledge and dispositions rather than content knowledge.
  • Competency-based models approach content as the backdrop, while putting essential skills and dispositions front and center. In this way, content serves as the context for practicing and demonstrating “transferable” competencies that can be applied in different contexts.
  • In competency-based models, the entire system must change. Students advance upon mastery  when they are ready, not when an arbitrary academic calendar suggests that they should be.
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  • Optimally, competencies are broad enough that student pathways and demonstrations of proficiency can be vastly different, organized to encourage and nurture student passions and questions.
  • Competencies sit above standards in terms of grain size.
  • competencies tend to encompass an interrelated set of skills, knowledge, aptitudes, and/or capacities.
  • competencies are often constructed as groupings of related skills or attributes that are purposefully designed to be explicit, measurable, transferable, and empowering to students
  • Competencies define skills that are practiced and developed continuously. They are not “one and done,” like many standards, which are course-based and attached to specific grade levels or bands.
  • in truly competency-based systems, PLDs are not attached to specific grade levels
  • we believe strongly that we must guard against tying PLDs to age-based grades or cohorts.
  • PLDs are guideposts to mastery
  • When learning outcomes are defined in terms of the application of skills or the synthesis and creation of new knowledge, we’re then talking about a much more sophisticated assessment type
  • competence is about successful application of skills and knowledge to achieve a particular purpose, not simply to show basic levels of understanding
  • In a true competency-based system, students can’t fail. Instead, students receive concrete and specific feedback on their work, and are provided with opportunities for additional practice and support in order to develop and demonstrate growth in their competencies.
  • Mastery-based grading and promotion policies are radically different in competency-based systems because promotion is based on mastery of specific skills, not on completion of courses made up of arbitrary and highly varied bundles of content, skills, and concepts.
  • As competency-based education gains ground in formal K-12 schooling, there is a very real chance that the movement could lose the “spirit” of its intent and become yet another, albeit more refined, form of standards-based learning
  • In competency-based models, performance level descriptors (PLDs) clarify the developmental journey from novice-to-expert or to "mastery."
  • Quite differently, competency-based models reach back centuries, with early apprenticeship learning that created pathways for mastery and gainful employment. Think: Medieval craft guilds, masonry, baking, carpentry, shoemaking.
Meghan Cureton

transforming_teaching_learning_and_assessment.pdf - 1 views

  • T o make space for learner voice and to promote learner agency, teachers must set up learning environments that stimulate active learner engagement with meaningful and progressively challenging tasks that stimulate their thinking and enable them to develop competence over time. Unlike subject content, competence cannot be transmitted to learners. Rather, competence is progressively developed by learners through appropriate facilitation.
  • Table 1. The Role of Learners in Competence-Based Curricula
  • A “growth mindset” (Dweck, 2006). essential for developing intrinsic motivation.
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  • Deep learning
  • The extent of emotional, cognitive, and behavioral engagement influences the effectiveness of learning, and thus, the development of competence.
  • These modes of learning blur boundaries between teachers and learners, as learners progressively take responsibility for their own learning.
  • Success also rests on profound teacher understanding of curricula that should accrue during curriculum design and development stages. Such understanding is crucial for the teachers’ buy-in, conviction, ownership, and commitment to effective curricula implementation.
  • Within the curriculum continuum, assessment has significant potential to support and reinforce curriculum reform. However, it equally has enormous potential to distort the official/intended curriculum.
  • When appropriate strategies are used in assessment, they can support the implementation of the official curriculum, enhance learning, and lead to an enrichment effect. However, gaining these benefits of appropriate assessment demands a specialized knowledge of assessment by all concerned.
  • Another critical policy message is that competence-based assessment and examinations systems require significant investment in the professionalization of teachers as assessors of learning. Competence-based assessments also require trust in teachers’ ability to make reliable judgements and to utilize assessment as an inherent and important part of teaching and learning.
  • A key policy message is that education and learning systems cannot succeed at adopting competence-based approaches to curriculum without similarly transforming teaching, learning, as well as assessment and examination systems. All the three elements must be aligned. Transforming curricula to competence-based approaches and leaving teaching, learning, assessment, tests, and examinations subject-based is tantamount to not transforming curricula.
  • In competence-based approaches, teachers are not just co-designers and co-developers of curricula. They are also pivotal co-assessors, co-testers, and co-examiners.
  • Most importantly, competence-based curricula must lead quality assessment rather than be led by poor practice assessments, tests, and examinations.
  • What "developmental progression" means, in general terms, and an understanding that progressing is neither linear nor necessarily agerelated. Rather, it is iterative, interactive, and dependent on making connections to prior learning and to context;
  • it is best to base judgements on a number of different criterion referenced assessments.
  • Effective teacher professional development must include all 4 componen ts: • Knowledge – worthwhile research-informed theory, content, and expertise; • Integrated pedagogical and assessment skills and strategies; • Modelling, demonstrating, and engaging with approaches, ideally in settings that approximate to the workplace; • Practicing the approaches frequently over a substantial period of time between professional inputs; (2–6 months a minimum) with ongoing and follow up evaluation of impact and refinement; • Concurrent dialogue/coaching/peer collaboration in activities such as lesson planning, preparing related resources, peer observation, discussion, and reflection on impact
  • Table 4. Success of different methods of professional development Training Components Outcomes % of participants who demonstrate Kno wledge % of participants who demonstrate new Skills % of participants who transfer into Classroom Practice Theoretical Knowledge and Discussion 10%5%0% Demonstration in Training 30%20%0% Practice and Feedback in Training 60%60%5% Coaching in Classroom Settings 95%95%95%
  • Teaching still lacks core characteristics that define a profession, vis: (i) a profession-specific, systematized, scientific body of knowledge that informs the daily activities of practitioners; (ii) a lengthy period of higher education training and induction; (iii) engagement in continuous professional development; and (iv) autonomy to exercise professional judgement and decision-making in practice and in governance over the profession
Meghan Cureton

02_future_competences_and_the_future_of_curriculum_30oct.v2.pdf - 1 views

shared by Meghan Cureton on 17 Jul 18 - No Cached
T.J. Edwards liked it
  • An analysis of current contributions show that although there are substantial variations, most agree that competence is far more complex than skill, and that it comprises knowledge, skills, values, and attitudes.
  • The most recurring examples include: – Creativity, communication, critical thinking, problem solving, curiosity, metacognition; – Digital, technology, and ICTs skills; – Basic, media, information, financial, scientific literacies and numeracy, – Cross-cultural skills, leadership, global awareness; – Initiative, self-direction, perseverance, responsibility, accountability, adaptability; and – Knowledge of disciplines, STEM mindset.
  • Key challenges
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  • Many contributors agree that a competence is a complex construct, comprising knowledge, skills, attitudes, values, etc. But in the actual listing of the competences, they mix competences with their constituent elements.
  • Lack of evident interaction across elements of competences:
  • Lack of a common starting point:
  • Varied taxonomies:
  • Lack of a common language and common concepts
  • Unclear standards and developmental progression:
  • Lack of consensus on the structure of curricula:
  • While there is consensus on the need to transition to competence-based curricula, views on the structure of curricula remain divergent between the maintenance of traditional subjects and learning areas interwoven with competences, and the more radical view that curricula should be restructured around competences.
  • Feasibility of implementation:
  • Managing the transition:
  • Weak or unshared tracking of impact:
  • However, the world still lacks a global normative instrument that can be used as a global reference point for curricula transformation.
  • Competence is herein defined as the developmental capacity to interactively mobilize and ethically use information, data, knowledge, skills, values, attitudes, and technology to engage effectively and act across diverse 21 st century contexts to attain individual, collective, and global good.
  • Distinguishing Attributes of a Competence-based Curriculum
  • A competence-based curriculum is grounded in the understanding of the demands of the learners’ context.
  • In contrast to competence-based curricula, subject-based curricula are mostly grounded in an understanding of the subject matter content or the disciplines. They generally prepare learners to know the subject matters and to gain a deep understanding of advancements in the field. They don’t necessarily emphasize immediate use of acquired knowledge. The application is often deferred to real life situations that learners may confront later in life, forcing them to apply what they had learned. Because of insensitivity to context, it is often easy to have the same curriculum across different contexts, mostly borrowed from what are considered to be advanced contexts. The risk of irrelevance of the curriculum is also higher.
  • A key consideration is how best to facilitate curriculum specialists to gain an in-depth understanding of the learners’ current and future contexts, and how to identify competences, which should be reflected in curricula.
  • Learner centeredness:
  • Competence-based curricula emphasize the ability to use what is learned. Acquisition is important but not sufficient.
  • Emphasis on outcomes or impact:
  • A key consideration is how to support educators to reach for the deeper impact of learning, and how to assess it.
  • Emphasis on trans-disciplinarity:
  • Especially at the post-primary level, a key consideration is how to enable educators to master their specific disciplines, and at the same time, to have adequate knowledge of other disciplines enough to make transdisciplinary linkages. Another challenge is how to design curricula in a way that makes linkages across subjects and learning areas.
  • Competence-based curricula are structured around competences and not around subjects, and progression relates to the competence rather than subject matter difficulty.
  • As the last word, competence-based curricula are not against subject matter content. Effective application of content across disciplines actually requires a high level of mastery of the content.
  • seven macro competences that are considered relevant across contexts. These are: (i) Lifelong learning; (ii) Self-agency; (iii) Interactively using diverse tools and resources; (iv) Interacting with others; (v) Interacting with the world; (vi) Multi-literateness; and (vii) Trans-disciplinarity. Because of their universality, macro competences are quite stable. They allow for curricula stability across transformations and reforms. They are the bigger picture and the overarching "why" of a curriculum.
  • Knowing how to learn is the most critical future competence.
  • The 21 st century requires people to be self-actualized agents.
  • Responsible use of tools and resources is also at the heart of responsible consumption and sustainable lifestyles, which contribute to sustainable development.
  • It demands collaboration to resolve complex problems and create integrated solutions across contexts.
  • This competence enables people to be local and global.
  • Different contexts will demand different types and levels of literacies.
  • Increasing complexity requires ever more sophisticated solutions that integrate knowledge from multiple disciplines and from domains of knowledge.
  • This framework therefore balances the need for dynamic change in curricula with the equal need for stability.
T.J. Edwards

Competency based learning key characteristic: Outcomes-based - Blackboard Blog - 0 views

  • The old concepts of quizzes, mid-term exams and final exams change from methods of judgment to an assessment system designed to help learners construct knowledge through a learn-practice-assess pathway.
  • Achieve short-term and long-term academic performance improvements focused on outcomes rather than inputs
  • Student learning outcomes are generally at the same level of granularity as competencies, and sometimes the terms are used interchangeably. A competency is a specific skill, knowledge, or ability that is both observable and measurable
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  • Institutional outcomes
  • Program outcomes
  • Student learning outcomes
  • For example, a team project that requires analyzing the business impacts of population shifts demonstrates realistic problem solving, and the assessment could even be embedded in a work context. This type of assessment requires more thorough demonstration of competencies than an objective assessment, which is typically delivered as a test with pre-determined right and wrong answers. Authentic assessment also provides learner-centric benefits such as collaboration with peers and genuinely valuable evidence of learning that can be used in a professional profile.
  • For example, an assessment could be aligned to competencies, occupational skills, program outcomes, and accreditation standards. The same assessment can award a badge for mastery achievement, show students the occupational skills they’ve demonstrated, and also roll up into evidence collection for accreditation and program improvement purposes
  • can optionally be shown to students
  • Consistent use of rubrics enables learner choice, since learners could be working on different assessments to master the same competencies
  • And when competency based education programs differentiate instructional roles, such that faculty subject matter experts might not be evaluating assessments, specialized assessors can all apply the same definitions of competencies by using the same rubrics.
Meghan Cureton

Six Fixes for Proficiency-Based Learning « Competency Works - 0 views

  • Proficiency-based learning, at its core, is about redesigning the learning and teaching system of America. Instead of basing learning on how much time a student spends, it bases learning on what students can demonstrate—exactly the same as every other system students will encounter in the world outside of school.
  • In addition, schools should continue to share information pertaining to course grades and start to share information regarding student attainment of specific standards, including course-crossing skills such as problem solving, creativity, and analysis. While we would recommend that the course grades continue to use A-F or 0-100 scales, shifting to a 1-4 scale on the standards probably provides better insight for everyone involved. In this way, parents, students, and educators will know how students are doing within the structures of a class and how students are doing in regard to specific standards. This both/and approach will provide more information that can then be used to promote better learning.
  • Keep cohorts of kids together as they progress through their learning. Teachers can vary the learning strategies for various cohorts of students, supporting some students to dig deeper into various standards while others realize initial achievement—and then bringing everyone back together again to start the next unit of learning. Further, as research on learning has demonstrated, learning is a social endeavor, not meant to be undertaken alone. A cohort model supports this research.
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  • Hold students accountable to key and important standards, designating a small handful of “graduation standards” while using the other standards in the Common Core or various state standards to develop curriculum, guide instruction, and build classroom assessments. This strategy focuses learning on key and endurable concepts, skills, and themes; ensures that instructional support is targeted at the most important learning; and pushes students to think about and analyze ideas deeply rather than memorize an unwieldly number of discrete facts.
  • Educators need to clearly define top levels of performance and provide explicit expectations and opportunities for students to achieve these levels of learning. While we should not expect students to “exceed” standards in all cases, educators should require students to do so in areas of particular interest and aptitude for students.
  • Schools must establish both incentives and consequences for critical work habits such as time management and meeting deadlines. Rather than ignore these, they must teach, model, assess, and report them separately and eliminate the practice of controlling behavior by reducing grades. We have seen numerous effective strategies where late work requires coming in after school, not attending co-curricular activities, or mandatory guided study halls, to name a few examples.
Jim Tiffin Jr

Let 'Em Out! The Many Benefits of Outdoor Play In Kindergarten | MindShift | KQED News - 0 views

  • With no explicit math or literacy taught until first grade, the Swiss have no set goals for kindergartners beyond a few measurements, like using scissors and writing one’s own name. They instead have chosen to focus on the social interaction and emotional well-being found in free play.
  • With many parents and educators overwhelmed by the amount of academics required for kindergartners — and the testing requirements at that age  — it’s no surprise that the forest kindergarten, and the passion for bringing more free play to young children during the school day, is catching on stateside.
  • “So much of what is going on and the kind of play they do, symbolic play, is really pre-reading,” Molomot said. “It’s a very important foundation for reading.
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  • Donnery notices that the gross motor skills of many of her kindergartners are underdeveloped, noting that usually means that fine motor skills are also lacking. “Developing those gross motor skills is just critical, can impact so much of later learning,” she said.
  • Scenes of rosy-faced children building forts in the snow are presented in sharp contrast to the academic (and mostly indoor) kindergarten in New Haven, Connecticut, where a normal day is packed full of orderly activities: morning meeting, readers’ workshop, writers’ workshop, a special activity (like art, gym, and music), lunch and recess, storytime, “choice” (a fancy word for play), math centers, then closing meeting.
    • Jim Tiffin Jr
       
      I would like to see this movie.
  • You’d be surprised at the importance of play.
  • lacking in the attention needed to learn, with more than 10 percent of the school population diagnosed with some kind of attention disorder.
  • occupational therapist Angela Hanscom opined in the Washington Post that there’s good reason our kids are so fidgety: more and more students come to class without having enough core strength and balance to hold their bodies still long enough to learn.
  • “In order for children to learn, they need to be able to pay attention. In order to pay attention, we need to let them move.”
    • Jim Tiffin Jr
       
      But this has to be more than just a wiggle stool or yoga ball... HMW get greater movement into Kindergarten? (and it need not just be in the Kindergarten classroom)
  • A recent study by psychologists at the University of Colorado shows an even stronger reason for free play: children who experienced more undirected free play showed signs of stronger executive function, a strong predictor of success in school. “The more time that children spent in less-structured activities,” wrote researchers, “the better their self-directed executive functioning.”
  • Reading and recess are important enough that we need to do both.
  • While this kind of adult-led movement is a far cry from the nearly unstructured free play of a forest kindergarten, it does serve the school’s purpose of high academic standards for their kindergartners, in hopes this prepares them for future academic success.
    • Jim Tiffin Jr
       
      Note that it says "hope"...
  •  
    Article contrasting two different approaches to Kindergarten - one outdoor-based and one indoor-based. Full of links to the research regarding the claims made in the article. Additionally, more language around executive function, and its importance for students, is used.
Meghan Cureton

Neuroscience Should Inform School Policies - Education Week - 1 views

  • key secondary school reform efforts need to emphasize learning activities involving metacognition, goal-setting, planning, working memory, reflection on one's learning, and frequent opportunities to make responsible choices.
  • What is essential for kids at this time of life is to be engaged in real-life learning experiences and peer-learning connections that put them under conditions of "hot cognition," where educators can help them along in the process of integrating their impulsiveness (positively viewed as excitement and motivation) with their reasoning abilities.
  • The implications for reform of secondary school are clear. Schools should provide more opportunities for students to be involved in apprenticeships, internships, service learning, community-based learning, small peer-learning groups, entrepreneur-based programs, and student-directed project-based learning
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  • key part of the secondary school curriculum should involve the teaching of stress-reduction methods, such as mindfulness meditation, yoga, and aerobic activity; exercise breaks during class; a strong physical education curriculum; and a broadly based extracurricular sports program for all students, not just the star athletes.
  • prefrontal cortex, which is the region controlling inhibition of impulses and the ability to plan, reflect, self-monitor, and make good decisions, doesn't fully develop until the early 20s. This means that while the limbic system or "emotional brain" is working at close to full capacity by early adolescence, the areas of the brain that could temper those feelings and impulses are still in the process of being constructed.
  • Neuroscience Should Inform School Policies
  • Consequently, key secondary school reform efforts need to emphasize learning activities involving metacognition, goal-setting, planning, working memory, reflection on one's learning, and frequent opportunities to make responsible choices.
  • Classroom teaching that focuses largely on delivering content through lectures and textbooks fails to engage the emotional brain and leaves unchanged those prefrontal regions that are important in metacognition.
  • Locking students into a set academic college-bound program of courses takes away their ability to make decisions about what most interests them (a process that integrates the limbic system's motivational verve with the prefrontal cortex's decisionmaking capacity).
  • Neuroscience research tells us that the teenage brain is exquisitely sensitive to environmental influences. This neuroplasticity makes it vulnerable to a wide range of societal dangers—traffic accidents, drug abuse, suicide, violence. But it also makes it acutely sensitive to the influence of teachers, for good or for ill.
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    "key secondary school reform efforts need to emphasize learning activities involving metacognition, goal-setting, planning, working memory, reflection on one's learning, and frequent opportunities to make responsible choices."
Meghan Cureton

The Case For Competency-Based Education | Getting Smart - 0 views

  • transformed schools that feature tasks and projects that challenge young people in authentic ways to build design, collaboration, and communication skills that prepare young people for navigating new and complex situations.
  • Quality preparation. Much of the corporate training world has shifted from participation to demonstrated skills in order to improve job readiness.
  • Equity. If gap-closing equity is a stated goal, then structures, schedules, and supports can be aimed at struggling learners that need more time and assistance to accelerate their learning 
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  • Learning science. As Harvard’s Todd Rose notes, there is no average; each of us has a “jagged profile.” He and others argue that we should address the individual needs of learners.
  • Agency
  • The extent to which a student owns their own learning, often called agency, is key
  • innovation is required in five dimensions: More innovative learning models and networks, particularly for high schools (XQ, NewSchools, and NGLC grantees are a good start); Competency-based learning platforms, gradebooks, badge and portfolio systems; Quality guidance systems that ensure equity and access. Mastery-based transcripts that allow students to more fully share their capabilities with postsecondary institutions and employers; State policy that advances a relevant graduate profile, makes room for innovation pilots, and articulates a quality outcome framework (see the CompetencyWorks report Fit for Purpose).
Bo Adams

The Monthly Recharge - Risk Over Safety - 0 views

  • The learning classroom is active, collaborative, and full of real, thoughtful, academic-discipline-informed discussion with students working together to solve challenging problems
  • But when the teachers see it, really get it, there is no going back. It is what they are after for their students and classes: problem-based, project-based, inquiry-based, discussion-based-all student-centered deep learning.
  • And to pursue learning for their students, teachers must be pedagogical scientists. Every day, in every class, teachers must conduct research and experiments into the most compelling learning experiences for their students. In these experiments is unavoidably innovation.
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  • We can support teacherly innovation/experimentation a host of ways: Establish it as an expectation in posts for jobs and at the time of hiring new teachers. Discuss it in teacher evaluations and self-assessments. Feature examples of it in faculty meetings. Provide innovation grants for summer design work. Give time to teachers (through course loads, class enrollments, course reductions, and even sabbaticals) for innovation work.
Bo Adams

Authentic Design Challenges in Project-Based Learning: Fostering Innovators - Medium - 0 views

  • By connecting Design Thinking with Project-Based Learning, these amazing teams helped their students see how innovation and imagination can solve not just local challenges, but those faced by humans around the world. The design process required the kind of critique and revision PBL asks of students, and the resulting increases in risk taking and resilience will serve students well in any field. Most importantly, by grounding the design work in empathy interviews and authentic challenges, students were invited not only to witness the world as it is, but also to begin crafting the world as it might be.
Bo Adams

The Future of Big Data and Analytics in K-12 Education - Education Week - 0 views

  • data scientists would then search the waters for patterns in each student's engagement level, moods, use of classroom resources, social habits, language and vocabulary use, attention span, academic performance, and more.
  • would be fed to teachers, parents, and students via AltSchool's digital learning platform and mobile app, which are currently being tested
  • AltSchool's 50-plus engineers, data scientists, and developers are designing tools that could be available to other schools by the 2018-19 school year.
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  • AltSchool is almost certain to provoke a backlash from parents and privacy advocates who see in its plans the potential for an Orwellian surveillance nightmare, as well as potentially unethical experimentation on children.
  • The term "big data" is generally used to describe data sets so large they must be analyzed by computers. Usually, the purpose is to find patterns and connections relating to human behavior and how complex systems function.
  • Analytics generally refers to the process of collecting such data, conducting those analyses, generating corresponding insights, and using that new information to make (what proponents hope will be) smarter decisions.
  • replacing the top-down, slow-moving bureaucratic structures that currently shape public education with a "networked model" in which students, teachers, and schools are connected directly by information and thus capable of learning and adapting more quickly.
  • 'Montessori 2.0': a kind of supercharged version of the progressive, project-based learning often found in elite private schools and privileged enclaves within traditional school systems.
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    Eventually, Ventilla envisions AltSchool technology facilitating an exponential increase in the amount of information collected on students in school, all in service of expanding the hands-on, project-based model of learning in place at the six private school campuses the company currently operates in Silicon Valley and New York City.
Nicole Martin

Position and Power of Students in a Mastery-based System - Springpoint - 0 views

  • mastery-based system helps students know where they are on their journey toward graduation
  • formative approach
  • students are true partners in their own education, empowered to engage their learning facilitators in conversations about their learning targets and individual goals
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  • assessment practices that emphasize continual growth and development of skills
  • opportunities for student voice
  • I knew I was succeeding as an educator when students were assessing their own mastery of competencies and providing insightful evidence from their own work to guide our discussion
Nicole Martin

Zero-Based Thinking in Education - What? Why? and Sort of How… - 0 views

  • he road to Zero-Based Thinking begins with observation. But not observation limited to — or even primarily within — schools. Go outside, watch kids, watch humans. Watch them learn when you are not interfering. Watch them learn in parks and coffee shops, on playgrounds and playing fields, in museums and in stores, while riding on buses and trains, while playing with legos, while watching the tide come in. Learn to watch learning.
Bo Adams

Students Design, Tinker, Create and Discover through Maker-based Learning | NextGen Lea... - 1 views

  • The nature of maker-based learning actively engages students, nurtures their agency, improves efficacy, and develops a creator or producer identity instead of a (passive) consumer one.
  • In Thomas’ experience, too many people fail to reflect on WHY they’re choosing certain tools, and HOW those tools will be integrated into the curriculum and culture of school.
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    Sometimes the impetus for making is a practical problem. Other times, play, curiosity and imagination are the motivators. Regardless, researchers from Harvard's Project Zero agree, "maker experiences help students learn to pursue their own passions and become self-directed learners, proactively seeking out knowledge and resources on their own" (Agency by Design, p. 3). HT Parker Thomas
Meghan Cureton

How Do You Teach to the Standards When Doing Project-Based Learning? - 4 views

  • People often debate about whether we should be process-driven or product-driven in project-based learning. But I think there’s a third option. We can be learning-driven. In other words, we should start with the question, “What do we want students to learn?” and let that drive the process and the product.
  • PBL is not a license to ditch the standards or take a break from real learning.
  • #1: Inquiry-DrivenInquiry-driven PBL begins with a state of curiosity and wonder. It might be as simple as the sentence stem “I wonder why _________” or “I wonder how _________.” Students then have the opportunity to research, ideate, and create.
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  • #4: Problem-DrivenProblem-driven PBL begins with a specific problem or challenge that students must solve. An example is our maker challenges that present a specific scenario that leads students into research, problem-solving, ideation, and a final product that solves the initial challenge.
  • #3: Product-DrivenPBL experts often say, “Students should focus on the process and not the product.” But there’s also a time and a place for projects that challenge students to focus on developing a quality product. In these projects, the product has tighter parameters but the process is more flexible.
  • #2: Interest-DrivenAnother approach is the interest-driven PBL process.
  • #5: Empathy-Driven (Design Thinking)Empathy-driven PBL can have elements of the previous four PBL approaches.
Meghan Cureton

Q: What's the Right Dosage of PBL?        A: Not Once Per Year | Blog | Proje... - 2 views

  • Does adopting PBL mean we should use it all the time and teach everything via projects? If not, then how many projects should teachers do per semester or year?
  • Project Based Teaching Practices are actually just good teaching, period, and many of the practices can be used in the classroom when students are in between projects.
  • “Just make two high-quality projects per year for every student be the goal.” In a K-12 system, that means each student would experience 26 projects at a minimum—which sounds like a lot! But that’s only the start. Perhaps students in middle and high school, at first, would experience two projects per year in one subject area—if, say, only social studies teachers begin to use PBL. But assuming PBL spreads across the school, students would do projects in other subject areas, or do interdisciplinary projects, and eventually experience many more than 26 projects if they stayed in one K-12 PBL-infused system.
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  • But assuming projects are between 3-6 weeks long, I’d like to see a minimum of two projects per year in every K-12 classroom, in all subject areas—so that all students, no matter who they are, can gain the benefits of high quality PBL.
  • Even better, make it one project per quarter—four per year. And while you’re at it, sprinkle in a few mini-projects to help build a PBL culture or tackle a relatively confined topic or task.
  • Why is the PBL dosage important?
  • Students cannot build 21st century success skills if they only get occasional opportunities to practice and internalize them.
  • Students will become more confident, independent learners—even identifying and tackling problems authentic to themselves, their communities, and the wider world.
  • be part of a culture that celebrates risk-taking and innovation.
  • If only a few scattered teachers use PBL in a school or district, or only a few students experience it and thus limit demand, then the system’s basic structures, policies, and culture will remain the same. But if a critical mass is reached, schools and districts will need to rethink the use of time, teacher workloads, community relationships, assessment systems, decision-making processes, and much more. Here’s to reaching the PBL tipping point!
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