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Barbara Lindsey

Kathy Schrock's Guide for Educators - Assessment Rubrics - Kathy Schrock's Guide for Ed... - 0 views

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    Thanks to Felipe Morales
Barbara Lindsey

Do Students Know Enough Smart Learning Strategies? | MindShift - 0 views

  • recent finding by PISA, the Programme for International Student Assessment, which administers academic proficiency tests to students around the globe, and place American students in the mediocre middle. “Students who use appropriate strategies to understand and remember what they read, such as underlining important parts of the texts or discussing what they read with other people, perform at least 73 points higher in the PISA assessment—that is, one full proficiency level or nearly two full school years—than students who use these strategies the least,” the PISA report reads.
  • Askell-Williams and her colleagues found that those students who used fewer of these strategies reported more difficulty coping with their schoolwork. For the second part of their study, they designed a series of proactive questions for teachers to drop into the lesson on a “just-in-time” basis—at the moments when students could use the prompting most. These questions, too, can be adopted by any parent or educator to make sure that children know not just what is to be learned, but how. What is the topic for today’s lesson? What will be important ideas in today’s lesson? What do you already know about this topic? What can you relate this to? What will you do to remember the key ideas? Is there anything about this topic you don’t understand, or are not clear about?
Barbara Lindsey

Innovation Expert John Seely Brown on New Ways of Learning in a Rapidly-Changing World ... - 1 views

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    8 minute video that touches on the key concepts we covered in class: communities of practice, assessment for learning, tolerance for ambiguity, change as a constant.
Barbara Lindsey

Teachable Moment - plagiarism - 0 views

  • Let's assume you have engaged students in worthwhile class work and it is time for them to involve themselves in an inquiry related to it and of interest to them. Forget about "research," forget about "the term paper,î abandon the often calcified list of "subjects." Here is a proposed series of steps and assignments for the process.
  • * "significant learningî ó that which raises questions and problems whose answers and solutions promote further curiosity and learning that have the potential to develop into a lifelong pursuit.
  • Assignment A: Ask students to prepare three carefully worded questions on a matter related to classwork whose answers they might like to pursue.
    • Barbara Lindsey
       
      I will do this from now on with our moderator questions and blog posts.
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  • If you feel there is no time for such a procedure (and if you are correct in your assessment), then you have the following options: Launch a campaign with other teachers directed at the problems and/or people responsible for making time unavailable so that it can be made available. If that fails, at least eliminate "research" and "term papers" from the curriculum on educational grounds.Use as much of the procedure as you can to promote inquiry and to eliminate as much plagiarism as possible.Continue to teach as in the past.Quit and find a more honorable line of work.
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    A must read for those who are concerned about plagiarism with online students.
Barbara Lindsey

C. M. Rubin: The Global Search for Education: More Technology, Please! - 0 views

  • One of the best examples I have seen of the flex model was in Morgan Hill, California. This is a district south of San Jose where about a third of its students are Hispanic and I believe over a third of its students are on free-and-reduced price lunch. The school is called the Silicon Valley Flex Academy - Grades 6 through 12. As you walk into the school there are a couple of huge open spaces on either side where every student has his/her own office. In this space, each student has his/her own computer. The students are encouraged to decorate their own space with things they like (in the same way an adult might decorate an office at work). There are break out classrooms around the perimeter of the building. Here teachers are getting the data on how the kids are doing. Teachers can pull students into these break-out classrooms in very small groups. The teacher is then able to focus on a student's individual issues. The teacher's job is totally different in this arrangement. The fascinating thing was how much ownership the students have over their learning. They all knew exactly what was expected of them the entire year. They knew exactly how they were doing at any point. Their job was to learn the material. If they could get the work done during the school day there was no homework. So it was up to the individual students to make those decisions.
  • The teachers I spoke to explained that they had been trained to do lesson planning, lectures to large groups of students and classroom management -- none of which they were now doing. They explained that the adjustment was difficult. Training has not been built into the formal teacher training system for programs like this, and few are really thinking about it at the moment. Now, the teacher is still doing teaching or tutoring when pulling students out into small groups for project-based work, but instead of this being determined by a pacing guide, this is now being determined by where the students are in their learning. What was so interesting was that in this model, teachers were able to do the tutoring and value enrichment work that teachers really like to do but don't always get time to do in a classroom. One of the challenges the teachers mentioned was staying on top of scheduling. How do you keep track when you have students at different places in the curriculum? Those were tough decisions for teachers to make and they were, as you say, learning on the job.
  • When students own their learning, they feel responsible for it and motivated to do it. What they also appreciated was that the teacher was no longer there to "punish them" or "grade them down". Instead the teacher was there to help them reach their goal. This is much more of an environment built around success and motivation versus failure.
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  • I also think the assessment system that we have in place in schools is a problem for this learning system going forward. Assessment needs to be based on where each individual child started and then grew to and finally ended up in a particular year, versus a snapshot once a year view of an entire school.
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    fall 2012 syllabus
Barbara Lindsey

Moving at the Speed of Creativity - Academic Integrity on a Digital Campus by Berlin Fang - 0 views

  • Causes of Academic Dishonesty from literature: Craig, Federici & Buehler, 2010 Academic - assessment design - education about academic dishonesty - poor understanding of citation styles - “poor understanding of the proper use of intellectual property”
  • Ethical - cutting corners - work ethics - cultureal differences Personal - personal maturity - “poor time management skills” - “new to college experience” Academic dishonesty can be defined as “anything with gives students an unearned advantage academically” - see Hart and Morgan, 2010
  • We also use TurnItIn.com Encourage professors to use questions from randomized question blocks Provide resources - Writing Center - Library Resources - Endnote
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  • One example: LockDown Browser - students are locked down to just that browser - highly recommended by Berlin, stop students from digitally multi-tasking during exams in class
  • You need to have published policies and procedures about academic dishonesty - policies, syllabus, and enforcement Education is key - do this as part of orientation - special seminars for students - workshops for teachers
  • It comes down to this: “Life itself is open book” “Open is the new normal” - some assessment can be made out in the open so students can have their own identities - like blogs - I was very impressed by Dr. Alec Couros‘ presentation yesterday about how students are using their blogs
Barbara Lindsey

The Copyright Genie - 0 views

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    Goes through interactive steps to help you assess whether a particular item is copyrighted or not. Might be a good exercise for students to go through prior to introducing them to Creative Commons.
Barbara Lindsey

10 Rules of Teaching in this Century -- Campus Technology - 0 views

  • the knowledge developed during the course does not pre-exist the course. Second, since the knowledge of the course does not exist before the course (because you and the students develop the knowledge during the course), your chief challenge is to manage the process of knowledge discovery.
  • Now, because learning resources and opportunities are infinite, make the move: Don’t just tell students the key knowledge in your field, but help them discover it through problem-based active learning. Change your curriculum from a list of what you will say to a list of essential problems (or questions) that students will address, with your guidance, throughout the semester.
  • It may well be better to re-state learning outcomes in terms of essential problems and the research associated with those essential problems, and build rubrics based on the problems within a problem-based learning structure.
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  • Move most assessment activity away from testing and toward evaluation of student evidence of learning.
  • In the new paradigm of active and varied learning, testing is less appropriate but assessing student evidence is more appropriate.
  • You, as a faculty member, must be as adept as your students in using Web-based applications, and there is no better way to learn the new breed of applications than to use them yourself for important professional purposes.
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    Talks about how we now can really walk the walk and have a learner-centered environment and the technologies nec. to support that.
Barbara Lindsey

Convenience, Communications, and Control: How Students Use Technology | Resources | EDU... - 0 views

  • They are characterized as preferring teamwork, experiential activities, and the use of technology
  • Doing is more important than knowing, and learning is accomplished through trial and error as opposed to a logical and rule-based approach.2 Similarly, Paul Hagner found that these students not only possess the skills necessary to use these new communication forms, but there is an ever increasing expectation on their part that these new communication paths be used
  • Much of the work to date, while interesting and compelling, is intuitive and largely based on qualitative data and observation.
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  • There is an inexorable trend among college students to universal ownership, mobility, and access to technology.
  • Students were asked about the applications they used on their electronic devices. They reported that they use technology first for educational purposes, followed by communication.
    • Barbara Lindsey
       
      All self-reported. Would have been powerful if could have actually tracked a representative sample and compared actual use with reported use.
  • presentation software was driven primarily by the requirements of the students' major and the curriculum.
  • Communications and entertainment are very much related to gender and age.
  • From student interviews, a picture emerged of student technology use driven by the demands of the major and the classes that students take. Seniors reported spending more time overall on a computer than do freshmen, and they reported greater use of a computer at a place of employment. Seniors spent more hours on the computer each week in support of their educational activities and also more time on more advanced applications—spreadsheets, presentations, and graphics.
  • Confirming what parents suspect, students with the lowest grade point averages (GPAs) spend significantly more time playing computer games; students with the highest GPAs spend more hours weekly using the computer in support of classroom activities. At the University of Minnesota, Crookston, students spent the most hours on the computer in support of classroom activities. This likely reflects the deliberate design of the curriculum to use a laptop extensively. In summary, the curriculum's technology requirements are major motivators for students to learn to use specialized software.
  • The interviews indicated that students are skilled with basic office suite applications but tend to know just enough technology functionality to accomplish their work; they have less in-depth application knowledge or problem solving skills.
  • According to McEuen, student technology skills can be likened to writing skills: Students come to college knowing how to write, but they are not developed writers. The analogy holds true for information technology, and McEuen suggested that colleges and universities approach information technology in the same way they approach writing.6
  • he major requires the development of higher-level skill sets with particular applications.
    • Barbara Lindsey
       
      Not really quantitative--self-reported data back by selected qualitative interviews
  • The comparative literature on student IT skill self-assessment suggests that students overrate their skills; freshmen overrate their skills more than seniors, and men overrate their skills more than women.7 Our data supports these conclusions. Judy Doherty, director of the Student Technologies Resource Group at Colgate University, remarked on student skill assessment, "Students state in their job applications that they are good if not very good, but when tested their skills are average to poor, and they need a lot of training."8
  • Mary Jane Smetanka of the Minneapolis–St. Paul Star Tribune reported that some students are so conditioned by punch-a-button problem solving on computers that they approach problems with a scattershot impulsiveness instead of methodically working them through. In turn, this leads to problem-solving difficulties.
  • We expected to find that the Net Generation student prefers classes that use technology. What we found instead is a bell curve with a preference for a moderate use of technology in the classroom (see Figure 1).
    • Barbara Lindsey
       
      More information needs to be given to find out why--may be tool and method not engaging.
  • It is not surprising that if technology is used well by the instructor, students will come to appreciate its benefits.
  • A student's major was also an important predictor of preferences for technology in the classroom (see Table 3), with engineering students having the highest preference for technology in the classroom (67.8 percent), followed by business students (64.3 percent).
  • Humanities 7.7% 47.9% 40.2
  • he highest scores were given to improved communications, followed by factors related to the management of classroom activities. Lower impact activities had to do with comprehension of classroom materials (complex concepts).
  • I spend more time engaged in course activities in those courses that require me to use technology.
  • The instructors' use of technology in my classes has increased my interest in the subject matter. 3.25 Classes that use information technology are more likely to focus on real-world tasks and examples.
  • Interestingly, students do not feel that use of information technology in classes greatly increases the amount of time engaged with course activities (3.22 mean).12 This is in direct contrast to faculty perceptions reported in an earlier study, where 65 percent of faculty reported they perceived that students spend more time engaged with course materials
  • Only 12.7 percent said the most valuable benefit was improved learning; 3.7 percent perceived no benefit whatsoever. Note that students could only select one response, so more than 12.7 percent may have felt learning was improved, but it was not ranked highest. These findings compare favorably with a study done by Douglas Havelka at the University of Miami in Oxford, Ohio, who identified the top six benefits of the current implementation of IT as improving work efficiency, affecting the way people behave, improving communications, making life more convenient, saving time, and improving learning ability.14
    • Barbara Lindsey
       
      Would have been good to know exactly what kinds of technologies were meant here.
  • Our data suggest that we are at best at the cusp of technologies being employed to improve learning.
  • The interactive features least used by faculty were the features that students indicated contributed the most to their learning.
  • he students in this study called our attention to performance by noting an uneven diffusion of innovation using this technology. This may be due, in part, to faculty or student skill. It may also be due to a lack of institutional recognition of innovation, especially as the successful use of course management systems affects or does not affect faculty tenure, promotion, and merit decisions
  • we found that many of the students most skilled in the use of technology had mixed feelings about technology in the classroom.
  • What we found was that many necessary skills had to be learned at the college or university and that the motivation for doing so was very much tied to the requirements of the curriculum. Similarly, the students in our survey had not gained the necessary skills to use technology in support of academic work outside the classroom. We found a significant need for further training in the use of information technology in support of learning and problem-solving skills.
  • Course management systems were used most by both faculty and students for communication of information and administrative activities and much less in support of learning.
  • In 1997, Michael Hooker proclaimed, "higher education is on the brink of a revolution." Hooker went on to note that two of the greatest challenges our institutions face are those of "harnessing the power of digital technology and responding to the information revolution."18 Hooker and many others, however, did not anticipate the likelihood that higher education's learning revolution would be a journey of a thousand miles rather than a discrete event. Indeed, a study of learning's last great revolution—the invention of moveable type—reveals, too, a revolution conducted over centuries leading to the emergence of a publishing industry, intellectual property rights law, the augmentation of customized lectures with textbooks, and so forth.
  • Both the ECAR study on faculty use of course management systems and this study of student experiences with information technology concluded that, while information technology is indeed making important inroads into classroom and learning activities, to date the effects are largely in the convenience of postsecondary teaching and learning and do not yet constitute a "learning revolution." This should not surprise us. The invention of moveable type enhanced, nearly immediately, access to published information and reduced the time needed to produce new publications. This invention did not itself change literacy levels, teaching styles, learning styles, or other key markers of a learning revolution. These changes, while catalyzed by the new technology, depended on slower social changes to institutions. I believe that is what we are witnessing in higher education today.
  • The institutions chosen represent a nonrepresentative mix of the different types of higher education institution in the United States, in terms of Carnegie class as well as location, source of funding, and levels of technology emphasis. Note, however, that we consider our findings to be instructive rather than conclusive of student experiences at different types of Carnegie institutions.
  • Qualitative data were collected by means of focus groups and individual interviews. We interviewed undergraduate students, administrators, and individuals identified as experts in the field of student technology use in the classroom. Student focus groups and interviews of administrators were conducted at six of the thirteen schools participating in the study.
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