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Jill Bergeron

The Marshall Memo Admin - Issues - 0 views

  • students who have four years of art score 91 points higher on the SAT than students who don’t.
    • Jill Bergeron
       
      This seems correlational.
  • Danny Gregory applauds the arguments made for the importance of art and music in schools: they improve motor, spatial, and language skills; they enhance peer collaboration; they strengthen ties to the community; they keep at-risk students in school and improve their chances of ultimately graduating from college; and
  • In middle school, the majority start to lose their passion for making stuff and instead learn the price of making mistakes.
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  • In short, every child starts out with a natural interest in art, but for most it is slowly drained away until all that’s left is a handful of teens in eyeliner and black clothing whose parents worry they’ll never move out of the basement.”
  • As of 2015, only 26.2 percent of African-American students have access to art classes.
  • Gregory has a startling suggestion: take the “art” out of art education and replace it with creativity education. Why? Because creativity is something that almost everyone agrees is vital to success.
  • Solving problems, using tools, collaborating, expressing our ideas clearly, being entrepreneurial and resourceful – these are the skills that matter in the 21st century, post-corporate labor market. Instead of being defensive about art, instead of talking about culture and self-expression, we have to focus on the power of creativity and the skills required to develop it. A great artist is also a problem solver, a presenter, an entrepreneur, a fabricator, and more.”
  • We need to make sure that the kids of today (who will need to be the creative problem solvers of tomorrow) realize their creative potential and have the tools to use it.
  • A total of 21 percent of students said they had been bullied in the following ways: 13 percent made fun of, called names, or insulted; 12 percent subject of rumors; 5 percent pushed, shoved, tripped, or spat on; 4 percent threatened with harm; 5 percent purposefully excluded from activities; 2.5 percent told to do things they didn’t want to do; and 2 percent had their property purposefully destroyed. Girls reported more online harassment (16 percent) than boys (6 percent). These were the locations where students said the bullying occurred: -   42 percent in hallways or stairwells (similar for boys and girls); -   34 percent in classrooms (perhaps mainly during entry, transitions, and exit); -   22 percent in cafeterias; -   19 percent outside on school grounds; -   12 percent online or by text; -   10 percent on school buses; -   9 percent in bathrooms/locker rooms.
  • hallways and stairwells, taken together, are nearly twice as likely to be the source of the problem as the cafeteria, playground, or buses and bathrooms. Supervision and vigilance in those fluid spaces between classes is likely to benefit vulnerable students disproportionately.”
  • dance, gesture, and other forms of movement can improve motivation, engagement, and learning.
  • students in classrooms that integrated movement were “significantly more excited by, engaged in, and focused on the lessons” than they were with conventional teaching methods.
  • Dancing to memorize information
  • Moving among stations
  • Applying movement to assessments
  • Forming lines, rows, or other groupings – Each student gets a card with a punctuation mark or a word and students silently arrange themselves to form a complete sentence.
  • Representing terms or ideas with actions – After reading a book about emotions, students stand and act out furious, satisfied, courageous, and other words.
  • – The teacher gives each group of students sets of fraction cards and they take turns moving to another group in search of equivalent fractions, bringing possible matches back to their group to see if they’re correct.
  • – To test knowledge of synonyms and antonyms, pairs of students jump straight up and down three times, then choose to land on either their right or left foot; if both land on the same foot, they must come up with synonyms for a word on the board; if they land on opposite feet, they must name antonyms.
  • – Doing a dance skip-counting numbers (5, 10, 15, 20…) to the “Macarena.”
  • Many teachers assigned tasks with complex instructions and procedures, but little higher-level thinking was required of students
  • How many of these do schools teach? Just three, say the authors, even in schools where students get high state test scores: application, recall, and (sometimes) analysis.
  • a synthesis of the skills they believe adults need for successful lives: Cognitive skills: -   Recall -   Application -   Analysis -   Evaluation -   Creative thinking Interpersonal skills: -   Communication -   Cooperation -   Empathy -   Trust building -   Service orientation -   Conflict resolution -   Negotiation -   Responsibility -   Assertiveness -   Advocacy Intrapersonal skills: -   Flexibility -   Adaptability -   Appreciation of diversity -   Valuing learning -   Cultural appreciation -   Curiosity -   Forethought -   Self-regulation -   Self-monitoring -   Self-evaluation
  • Most teachers presented students with complex content, but the tasks students were asked to perform were simple recall and application
  • interpersonal and intrapersonal skills almost never showed up.
  • These exceptional instructors created “a harmonious environment,” say the researchers, “demonstrating an understanding that doing so is a prerequisite to academic learning.”
  • It was the teacher, not the subject. This level of intellectual and affective demand cropped up in different subjects, grades, and classes with different student achievement levels. The variable was the teacher.
  • In a 10th-grade honors humanities class, for example, students were asked to invent questions to guide their study of Western imperialism in China (having just finished a unit on the colonization of Africa). Guided by the teacher, students brainstormed possible questions, decided which were most important, and edited questions until the questions were intellectually stimulating and open-ended.
  • These outliers managed to weave rigorous instruction of content across the cognitive, interpersonal, and intrapersonal domains, putting to rest the notion that content- and skill-focused instruction precludes higher-order thinking – and vice-versa.
  • Teachers adapted their teaching to the moment.
  • to teach a deep and broad range of skills while also addressing disciplinary knowledge – requires intelligence and years of practice.”
  • Instruction was tied to complex assessments. Often designed by the teachers themselves, these checks for understanding stood in contrast to the test-prep oriented assessments in other classrooms.
  • Teachers built strong relationships with students.
  • First, Nehring, Charner-Laird, and Szczesiul suggest that schools need complex, high-level assessments to make all classrooms accountable for teaching the full range of adult skills. Second, “excellence requires highly skilled teachers with finely tuned radar and improvisational ability.” And third, “good teaching is about caring relationships, a parental affection that gives and receives, that honors the fundamentally human nature of our work as educators.
  • Thomas Guskey (University of Kentucky) stresses the importance of professional development starting with clear outcomes.
  • “In education, getting better generally means having a more positive influence on the learning of our students and helping more students learn well,” says Guskey. “Knowing our destination provides the basis for determining the effectiveness of our efforts.”
  • Polly details the 5E approach, in which students spend most of a lesson exploring mathematical tasks with limited support from the teacher, and some students get individual or small-group support: -   Engage – The class is given a math task or activity. -   Explore – Students have time to work on the task with their partner or a small group, with the teacher giving only instructions and circulating, sometimes posing questions to support students’ exploration. -   Explain – The class comes together to discuss the problem and how different students solved it. The teacher facilitates the discussion, perhaps choosing a main focus based on what was observed during the work time, and provides direct instruction as needed. -   Elaborate/extend – For the rest of the class, the teacher gets students working on activities, math games, and small-group activities that deepen understanding of the concept and zeros in on students who seem confused or off track. -   Evaluate – Students solve a final task or participate in a discussion of concepts, allowing the teacher to assess learning and plan for future lessons.
  • “Looking beyond the intended goals to the broader array of possible outcomes is an important aspect of evaluation and vital to judging effectiveness,”
  • What sparks robust discussions in PLCs is looking at variations in students’ responses to individual items on common assessments and writing prompts.
  • “The primary purpose of this collaborative data analysis,” says Guskey, “is to guide these teachers’ professional learning experiences so they can improve the quality of their instruction and help all students learn well.”
  • One additional cautionary note: PLCs tend to jump into “debating new ideas, techniques, innovations, programs, and instructional issues,” says Guskey. “While these are important issues, we must remember that they are means to an important end that must be determined first. Our journey always begins by deciding our destination… Ninety percent of essential questions in any evaluation are addressed in the planning process, before the journey begins.”
  • “When a teacher models and provides direct instruction at the start of a lesson, it rarely enables students to explore mathematical tasks or engage in productive struggle,” says Drew Polly (University of North Carolina/Charlotte) in this article in Teaching Children Mathematics.
  • researchers have found that if students grapple with a task before the teacher explains and models it (and receive appropriate follow-up), they’re more engaged and learn better.
  • What student learning outcomes do we aim to accomplish? -   What evidence will tell us if we met the goal? (ideally more than one source of data) -   What unintended consequences might occur, positive or negative?
  • “[T]he size of a person’s vocabulary is one of the strongest predictors of his or her reading comprehension,” say Tanya Wright (Michigan State University/East Lansing) and Gina Cervetti ((University of Michigan/Ann Arbor) in this article in Reading Research Quarterly.
  • Students who enter school knowing fewer words are likely to continue with relatively small vocabularies and struggle with text comprehension throughout school. Students who start with larger vocabularies, on the other hand, have broader general knowledge, need to spend less time accessing memory of words (which frees up working memory to grasp the meaning of a text), read and enjoy their reading more, and build stronger vocabularies – a reciprocal relationship that tends to widen the achievement gap.
  • Teaching word meanings almost always improved comprehension of texts containing the words taught. • Teaching word meanings doesn’t seem to improve comprehension of texts that don’t contain the target words.             • Instruction involving students in some active processing was more effective than dictionary and definition work at improving comprehension of texts containing the words taught. One caveat: researchers don’t know how much active processing is enough.             • Teaching one or two strategies (e.g., context clues or morphology) for solving word meanings doesn’t seem to improve generalized reading comprehension.
Scott Nancarrow

How to Tap Memory Systems to Deepen Learning - MindShift - 0 views

  • When teachers have a better understanding of the brain’s memory systems, they can help students develop stronger study habits and engage them in deep learning. 
  • In classrooms, some students absorb and master these skills faster than others. Oakley calls these “race car learners” who zoom to the finish line. In contrast “other students have hiker brains,” says Oakley. “They get to the finish line, but more slowly.”
  • It’s also why many students struggle at following multi-step directions. It’s not a lack of focus. Their working memory simply does not have the capacity to “keep in mind” something like a five-step process –  unless they’ve practiced those steps so many times that it has become a routine that doesn’t require active thought. That’s why skilled teachers spend so much time at the beginning of the year establishing classroom procedures and thinking routines. These practiced routines can free up working memory space for students to learn novel material.
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  • Because many students don’t understand their working memory, they study ineffectively, she says. They read over their notes or stare at a list of vocabulary words and think “I’ve got it.” And they do have it in their brain – while they have their notes in front of them. But working memory is short term. Hiker students, in particular, need concrete strategies for moving material into long-term storage. 
  • Active learning is when “the student themself is grappling with the material,” says Oakley. “This really builds our procedural links in long-term memory. While you can be actively learning while you are staring at the professor, you can’t do that for very long.”
  • Offering brain breaks: Breaks are crucial to long-term memory formation. When students relax mentally, even for a minute or two, it gives their brain time to consolidate new learning.
  • Use the Jot-Recall Technique: Pause while teaching and help students check whether they’ve moved the material from working into long-term memory. Take one minute and have them jot down important ideas from class, jot down a sketch to visually represent their learning, or jot down key ideas from previous classes that relates to the topic at hand.
  • Teach Students How to Engage in Active Recall: Remember the student who looks at the vocabulary list and thinks they have it memorized? Teach students to regularly put away their notes or shut their book and see what they can recall.
  • Engage in Think-Pair-Share: Activities such as think-pair-share ask students to engage individually, engage with a partner and then engage with the class. In effect, they are interacting with the information three times in quick succession, helping strengthen their neural pathways.
  • Practice Interleaving: Interleaving involves mixing up practice problems instead of working on nearly identical activities over and over again.  This builds in active recall practice and cognitive flexibility as students have to consciously decide what information or procedure to apply to a given problem.
  • “The best way to make rapid progress is to make things tougher on yourself,” says Oakley, drawing on the concept of “desirable difficulties”,
  • And for those students who already feel like learning is a constant struggle? Remind them that speed isn’t smarts.
Scott Nancarrow

How to Design Better Tests, Based on the Research | Edutopia - 0 views

  • To help address test anxiety, researchers recommend setting aside a little time for simple writing or self-talk exercises before the test—they allow students to shore up their confidence, recall their test-taking strategies, and put the exam into perspective.
  • Students who study moderately should get roughly 70 to 80 percent of the questions correct. 
  • Don’t start a test with challenging questions; let students ease into a test. Asking difficult questions to probe for deep knowledge is important, but remember that confidence and mindset can dramatically affect outcomes—and therefore muddy the waters of your assessment. 
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  • Consider the mix of your testing formats: Combine traditional testing formats—multiple choice, short answer, and essay questions—with creative, open-ended assessments that can elicit different strengths and interests.
  • Tests aren’t just tools to evaluate learning; they can also alter a student’s understanding of a topic.
  • Instead of a single high-stakes test, consider breaking it into smaller low-stakes tests that you can spread throughout the school year.
  • When students take high-stakes tests, their cortisol levels—a biological marker for stress—rise dramatically, impeding their ability to concentrate and artificially lowering test scores
  • Time limits are unavoidable, but you can mitigate their pernicious effects on anxiety levels. “Evidence strongly suggests that timed tests cause the early onset of math anxiety for students across the achievement range,”
  • ask students to write their own test questions. 
  • Beyond test design, there’s the important question of what happens after a test. All too often, students receive a test, glance at the grade, and move on. But that deprives them, and the teacher, of a valuable opportunity to address misconceptions and gaps in knowledge. Don’t think of tests as an endpoint to learning. Follow up with feedback, and consider strategies like “exam wrappers”— short metacognitive writing activities that ask students to review their performance on the test and think about ways they could improve in future testing scenarios.
Jill Bergeron

Don't Ban ChatGPT. Use It as a Teaching Tool (Opinion) - 0 views

  • I can envision all kinds of activities challenging students to use their own voice by replacing nondescript language, creating masterful imagery, and inserting figurative language.
  • If teachers can use ChatGPT to show students how to generate prompts to stimulate their writing, the experience could provide a leg up for students who struggle with idea generation.
  • Once students have made use of these prompts or outline to write something themselves, AI algorithms can also analyze a student’s writing style and provide feedback on grammar, spelling, and structure. One feature of this program can help students revise their writing using better word choice and advanced vocabulary.
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  • Because the bot writes and rewrites so quickly, students can see a number of different ways their writing can improve. It’s up to teachers to take away the computer assistance at the right moment during this process and allow students the time needed to put pen to paper to apply what they’ve learned.
  • It’s important to note that AI is not a replacement for human creativity and critical thinking.
  • AI has the potential to greatly assist students in the essay-writing process. It can help generate ideas, provide feedback on writing style, and even provide templates or outlines. However, it is important to remember that while AI can certainly aid in the writing process, it is ultimately up to the student to come up with their own ideas and arguments for critical thinking—and it’s up to teachers to teach them how. AI can help with the mechanics of writing, but it cannot replace the unique perspective and insights that a human can bring to their work.
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