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Amy M

Course Wrapping with Concept Mapping -- A Strategy for Capturing Course Content Meaning... - 0 views

  • Concept mapping requires thinking structurally about concepts, both object concepts and event concepts.
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    Background on concept mapping
Erin Fontaine

Critical Thinking Development: A Stage Theory - 0 views

  • We must recognize the importance of challenging our students — in a supportive way — to recognize both that they are thinkers and that their thinking often goes awry. We must lead class discussions about thinking. We must explicitly model thinking (e.g., thinking aloud through a problem). We must design classroom activities that explicitly require students to think about their thinking. We must have students examine both poor and sound thinking, talking about the differences. We must introduce students to the parts of thinking and the intellectual standards necessary to assess thinking. We must introduce the idea of intellectual humility to students; that is, the idea of becoming aware of our own ignorance. Perhaps children can best understand the importance of this idea through their concept of the "know-it-all," which comes closest to their recognition of the need to be intellectually humble.
    • Irene Watts-Politza
       
      This is a great foundation for an icebreaker module.
  • recognize that they have basic problems in their thinking and make initial attempts to better understand how they can take charge of and improve it.
  • begin to modify some of their thinking, but have limited insight into deeper levels of the trouble inherent in their thinking. Most importantly, they lack a systematic plan for improving their thinking, hence their efforts are hit and miss.
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  • appreciate a critique of their powers of thought.
  • we must teach in such a way as to help them to see that we all need to regularly practice good thinking to become good thinkers.
  • We must emphasize the importance of beginning to take charge of the parts of thinking and applying intellectual standards to thinking. We must teach students to begin to recognize their native egocentrism when it is operating in their thinking.
  • since practicing thinkers are only beginning to approach the improvement of their thinking in a systematic way, they still have limited insight into deeper levels of thought, and thus into deeper levels of the problems embedded in thinking.
  • need for systematic practice in thinking.
  • Practicing thinkers recognize the need for systematicity of critical thinking and deep internalization into habits. They clearly recognize the natural tendency of the human mind to engage in egocentric thinking and self-deception.
  • regularly monitor
  • articulate the strengths and weaknesses
  • often recognize their own egocentric thinking as well as egocentric thinking on the part of others. Furthermore practicing thinkers actively monitor their thinking to eliminate egocentric thinking, although they are often unsuccessful.
  • intellectual perseverance
  • have the intellectual humility required to realize that thinking in all the domains of their lives must be subject to scrutiny, as they begin to approach the improvement of their thinking in a systematic way.
  • We must teach in such a way that students come to understand the power in knowing that whenever humans reason, they have no choice but to use certain predictable structures of thought: that thinking is inevitably driven by the questions, that we seek answers to questions for some purpose, that to answer questions, we need information, that to use information we must interpret it (i.e., by making inferences), and that our inferences, in turn, are based on assumptions, and have implications, all of which involves ideas or concepts within some point of view. We must teach in such a way as to require students to regularly deal explicitly with these structures (more on these structure presently).
  • Recognizing the "moves" one makes in thinking well is an essential part of becoming a practicing thinker.
  • Students should be encouraged to routinely catch themselves thinking both egocentrically and sociocentrically.
  • advanced thinkers not only actively analyze their thinking in all the significant domains of their lives, but also have significant insight into problems at deeper levels of thought. While advanced thinkers are able to think well across the important dimensions of their lives, they are not yet able to think at a consistently high level across all of these dimensions. Advanced thinkers have good general command over their egocentric nature. They continually strive to be fair-minded. Of course, they sometimes lapse into egocentrism and reason in a one-sided way.
  • develop depth of understanding
  • nsight into deep levels of problems in thought: consistent recognition, for example, of egocentric and sociocentric thought in one’s thinking, ability to identify areas of significant ignorance and prejudice, and ability to actually develop new fundamental habits of thought based on deep values to which one has committed oneself.
    • Irene Watts-Politza
       
      What do YOU believe in? How and why do you believe it?
  • successfully engaged in systematically monitoring the role in their thinking of concepts, assumptions, inferences, implications, points of view, etc., and hence have excellent knowledge of that enterprise. Advanced thinkers are also knowledgeable of what it takes to regularly assess their thinking for clarity, accuracy, precision, relevance, logicalness, etc.
  • critique their own plan for systematic practice, and improve it thereby.
  • articulate the strengths and weaknesses in their thinking.
  • reduce the power of their egocentric thoughts.
  • a) the intellectual insight and perseverance to actually develop new fundamental habits of thought based on deep values to which one has committed oneself, b) the intellectual integrity to recognize areas of inconsistency and contradiction in one’s life, c) the intellectual empathy necessary to put oneself in the place of others in order to genuinely understand them, d) the intellectual courage to face and fairly address ideas, beliefs, or viewpoints toward which one has strong negative emotions, e) the fair-mindedness necessary to approach all viewpoints without prejudice, without reference to one’s own feelings or vested interests. In the advanced thinker these traits are emerging, but may not be manifested at the highest level or in the deepest dimensions of thought.
  • our students will not become advanced thinkers — if at all — until college or beyond. Nevertheless, it is important that they learn what it would be to become an advanced thinker. It is important that they see it as an important goal. We can help students move in this direction by fostering their awareness of egocentrism and sociocentrism in their thinking, by leading discussions on intellectual perseverance, intellectual integrity, intellectual empathy, intellectual courage, and fair-mindedness. If we can graduate students who are practicing thinkers, we will have achieved a major break-through in schooling. However intelligent our graduates may be, most of them are largely unreflective as thinkers, and are unaware of the disciplined habits of thought they need to develop to grow intellectually as a thinker.
  • have systematically taken charge of their thinking, but are also continually monitoring, revising, and re-thinking strategies for continual improvement of their thinking. They have deeply internalized the basic skills of thought, so that critical thinking is, for them, both conscious and highly intuitive.
  • As Piaget would put it, they regularly raise their thinking to the level of conscious realization.
  • Accomplished thinkers are deeply committed to fair-minded thinking, and have a high level of, but not perfect, control over their egocentric nature.
  • To make the highest levels of critical thinking intuitive in every domain of one’s life. To internalize highly effective critical thinking in an interdisciplinary and practical way.
  • Accomplished thinkers are not only actively and successfully engaged in systematically monitoring the role in their thinking of concepts, assumptions, inferences, implications, points of view, etc., but are also regularly improving that practice. Accomplished thinkers have not only a high degree of knowledge of thinking, but a high degree of practical insight as well. Accomplished thinkers intuitively assess their thinking for clarity, accuracy, precision, relevance, logicalness, etc. Accomplished thinkers have deep insights into the systematic internalization of critical thinking into their habits. Accomplished thinkers deeply understand the role that egocentric and sociocentric thinking plays in the lives of human beings, as well as the complex relationship between thoughts, emotions, drives and behavior.
  • Naturally inherent in master thinkers are all the essential intellectual characteristics, deeply integrated. Accomplished thinkers have a high degree of intellectual humility, intellectual integrity, intellectual perseverance, intellectual courage, intellectual empathy, intellectual autonomy, intellectual responsibility and fair-mindedness. Egocentric and sociocentric thought is quite uncommon in the accomplished thinker, especially with respect to matters of importance. There is a high degree of integration of basic values, beliefs, desires, emotions, and action.
  • For the foreseeable future the vast majority of our students will never become accomplished thinkers 
  • important that they learn what it would be to become an accomplished thinker. It is important that they see it as a real possibility, if practicing skills of thinking becomes a characteristic of how they use their minds day to day.
  • Thus it is vital that an intellectual vocabulary for talking about the mind be established for teachers; and that teachers lead discussions in class designed to teach students, from the point of view of intellectual quality, how their minds work, including how they can improve as thinkers.
  • in elementary school an essential objective would be that students become "beginning" thinkers, that is, that they will be taught so that they discover that they are thinkers and that their thinking, like a house, can be well or poorly constructed. This "discovery" stage--the coming to awareness that all of us are thinkers--needs to be given the highest priority. Middle school and High School, on this model, would aim at helping all students become, at least, "practicing" thinkers. Of course, students discover thinking only by discovering that thinking has "parts." Like learning what "Legos" are, we learn as we come to discover that there are various parts to thinking and those parts can be put together in various ways. Unlike Legos, of course, thinking well requires that we learn to check how the parts of thinking are working together to make sure they are working properly: For example, have we checked the accuracy of information? Have we clarified the question?
  • We are not advocating here that teachers withdraw from academic content. Rather we are suggesting that critical thinking provides a way of deeply embracing content intellectually. Within this view students come to take intellectual command of how they think, act, and react while they are learning...history, biology, geography, literature, etc., how they think, act, and react as a reader, writer, speaker, and listener, how they think, act, and react as a student, brother, friend, child, shopper, consumer of the media, etc.
  • to effectively learn any subject in an intellectually meaningful way presupposes a certain level of command over one’s thinking, which in turn presupposes understanding of the mind’s processes.
  • Thinking is inevitably driven by the questions we seek to answer, and those questions we seek to answer for some purpose. To answer questions, we need information which is in fact meaningful to us only if we interpret it (i.e., by making inferences). Our inferences, in turn, are based on assumptions and require that we use ideas or concepts to organize the information in some way from some point of view. Last but not least, our thinking not only begins somewhere intellectually (in certain assumptions), it also goes somewhere---that is, has implications and consequences.
  • Thus whenever we reason through any problem, issue, or content we are well advised to take command of these intellectual structures: purpose, question, information, inferences, assumptions, concepts, point of view, and implications. By explicitly teaching students how to take command of the elements of reasoning we not only help them take command of their thinking in a general way; we also provide a vehicle which effectively enables them to critically think through the content of their classes, seeing connections between all of what they are learning.
  • if I am to develop my critical thinking ability I must both "discover" my thinking and must intellectually take charge of it. To do this I must make a deep commitment to this end.
  • the human mind, left to its own, pursues that which is immediately easy, that which is comfortable, and that which serves its selfish interests. At the same time, it naturally resists that which is difficult to understand, that which involves complexity, that which requires entering the thinking and predicaments of others.
  • When we learn together as developing thinkers, when we all of us seek to raise our thinking to the next level, and then to the next after that, everyone benefits, and schooling then becomes what it was meant to be, a place to discover the power of lifelong learning. This should be a central goal for all our students--irrespective of their favored mode of intelligence or learning style. It is in all of our interest to accept the challenge: to begin, to practice, to advance as thinkers.
lkryder

Retrieval Practice Produces More Learning than Elaborative Studying with Concept Mapping - 0 views

  • Our findings support the theory that retrieval practice enhances learning by retrieval-specific mechanisms rather than by elaborative study processes. Retrieval practice is an effective tool to promote conceptual learning about science.
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    Results of study on quizzing vs concept mapping - new information about "practice retrieval" and learning
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    This is the study that explores the results of "practice retrieval" by administering quizzes after new information is introduced, and how that compares to student results of those who used concept mapping instead.
Shoubang Jian

Concept mapping as a medium of shared cognition in computer-supported collaborative pro... - 0 views

  • Two concepts and research paradigms are closely related to the problem area of collaborative learning--distributed cognition and shared cognition
  • Mind tools, (alternatively known as cognitive tools; Kommers, Jonassen, & Mayes, 1991) are intended to engage and facilitate cognitive processing
  • Concept mapping falls into the large category of Mind tools
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  • common frame of reference
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    Here's the full article "Concept Mapping as a Medium of Shared Cognition in Computer-Supported Collaborative Problem Solving".
diane hamilton

Learning-and-Concept-Formation.pdf (application/pdf Object) - 0 views

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    learning principle of concept formation
alexandra m. pickett

School Engagement: Potential of the Concept, State of the Evidence - 0 views

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    "The concept of school engagement has attracted increasing attention as representing a possible antidote to declining academic motivation and achievement. Engagement is presumed to be malleable, responsive to contextual features, and amenable to environmental change. Researchers describe behavioral, emotional, and cognitive engagement and recommend studying engagement as a multifaceted construct. This article reviews definitions, measures, precursors, and outcomes of engagement; discusses limitations in the existing research; and suggests improvements. The authors conclude that, although much has been learned, the potential contribution of the concept of school engagement to research on student experience has yet to be realized. They call for richer characterizations of how students behave, feel, and think-research that could aid in the development of finely tuned interventions "
Melissa Pietricola

Concept Mapping As A Medium Of Shared Cognition In Computer Supported Collaborative Pro... - 1 views

  • the mode of sharing and the representation of knowledge as expressed by students are more important than the access to the distributed resources itself.
    • Melissa Pietricola
       
      Mode of sharing being of the utmost importance.
  • concept Shared cognition emphasises the mutual understanding of collaborators' perspectives and shared interpretations of the problem as an essential requirement of collaboration
  • very important that cooperating subjects acquire a common frame of reference to communicate their individual viewpoints
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  • knowledge is arranged in networks with meaningful connections between nodes.
  • hared cognition is built upon the individual inputs in the collaborative process. Representing their cognitive structures and negotiating about the meaning of concepts, individuals reach a common vision on the problem.
  • Shared cognition at the same is the way a group contributes to "personal meaning" at the level of individual students
  • shared cognition is substantial for cognitive construction and reconstruction and that concept mapping is an effective tool for mediating computer-supported collaboration
  • orm in which knowledge is shared strongly influences the process of shaping, and shared cognition subsequently influences the effectiveness of collaborative learning
Heather Kurto

JTE v24n1 - Transfer of Learning: Connecting Concepts During Problem Solving - 0 views

  • There are several factors that affect learning transfer. These include whether students understand or simply memorize knowledge, the amount of time spent on learning the task, the amount of deliberate practice that is done beyond learning the task, the motivation of the student, how the problem is represented, the transfer conditions, and the metacognition of the solver (Dweck, 1989; Ericsson, Krampe, & Tesch-Romer, 1993; Johnson et al., 2011; Palinscar & Brown, 1984; Singley & Anderson, 1989).
  • A student’s comprehension of a problem and his or her ultimate ability to transfer concepts learned previously to the current problem is inextricably linked to his or her ability to properly represent the problem.
  • ognitive research shows that the organization of learning and how new learning relates to what a student already knows are the strongest predictors of how well a student will transfer knowledge (National Research Council, 2000). Schunn and Silk (2011) articulated, however, that in science and engineering students often “lack relevant conceptual frameworks or have frameworks that are not developed enough to support new learning adequately” (p. 9). The absence of such frameworks makes it difficult for students to connect and apply other knowledge where relevant.
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  • The problem solving process begins as soon as the problem solver generates enough information about the problem space to gain an understanding of the problem.
  • Representation in the problem-solving process refers to how the solver mentally represents the problem. The solver’s representation of the problem is directly related to his or her existing knowledge structure of the content of the problem.
  • Students have to increase their reflective practice to aid their metacognition and transfer of STEM concepts.
  • Different individuals have different conceptual knowledge and will make different associations to their knowledge. Exposure to the constraints and affordances of a particular context in which a problem exists will invariably influence the way in which the student represents a problem in a similar context.
  • Sanders (2009) admitted that it is difficult to prepare a teacher that is competent in all three bodies of knowledge, given the volume of content knowledge necessary to be an effective science, mathematics or technology educator.
  • This pedagogical approach is not without its challenges, as students may still compartmentalize their knowledge. Also, it is often difficult logistically and in terms of instructional timing for teachers across STEM discipline to collaborate effectively (Crismond, 2011; Kimbell & Stables, 2008).
  • Good and poor problem solvers differ in their recall of information from previously encountered problems and by extension their ability to transfer concepts to the target problem. This difference exists because poor problem solvers tend to remember surface similarities between problems, while good problem solvers remember underlying conceptual structures that make two problems similar although they have different surface features (Sutton, 2003).
  • Until student assessment methods are modified to reflect less dependency on standardized tests, engineering and technology educators will garner greater collaboration from math and science teachers when the latter can see that engineering and design-based curriculums does improve students’ ability to solve standardized test problems.
Maria Guadron

Student-Led Discussion Build Complex Understandings of Psychology Concepts | The Sloan ... - 0 views

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    "Student-led discussions not only insure that students will read and think about concepts in the textbook, they empower students and develop a culture of inquiry."
Bill Hooper

Economics Interactive Tutorial: Elasticity - 0 views

  • In each of the following examples, choose whether you would expect demand to be elastic or inelastic. In none of these examples will the demand be as elastic as the demand for gasoline at a particular gas station on a street with many gas stations. Drivers will flock to a gas station with a price a few pennies below its neighbors' prices, and will abandon a gas stations with a price a few pennies higher. Choose "Elastic demand" if you think that buyers will buy somewhat less if the price goes up, or somewhat more if the price goes down. Choose "Inelastic demand" if you think that the buyers will buy about the same amount if the price goes up or down. An unconscious bleeding man is brought to a hospital emergency room. A patient is given a presciption for a drug to control high blood pressure. The patient's insurance doesn't cover drugs, so the patient must pay out of pocket. A hospital in-patient has insurance that will pay all charges. What would the demand be like for nurse-administered propoxyphene (Darvon), a pain-reliever? A senior signs up with a managed care plan to get the Medicare drug benefit. Even though the senior is locked in for a year, the plan can, at any time, change which drugs it will pay for, based on the plan's judgement about a drug's effectiveness and price relative to other drugs that do about the same thing. For members of that plan, what might the demand for the Darvon be like? Darvon's cheapest alternative might be acetomenophen (Tylenol) in this case. A family has a high-deductible health insurance policy. The effect is that the family pays for primary care office visits out of pocket. Now, one of their children has an earache. What would their demand be like for an office visit to get this checked out? In general, if the decision-maker has an incentive to spend less on some product and if there is an adequate substitute for that product, then demand is more ...
    • Bill Hooper
       
      This area is a perfect tool for the student to self-assess whether or not he/she grasps the concept of elasticty. The student reponds to each scenario and is provided with an immediate solution to confirm their answer.
  • Health Savings Accounts -- The Best Way to Make Demand More Elastic?
    • Bill Hooper
       
      This section would be the perfect way to take the concept of elasticity and apply it to a current event. It could also be an excellent prereading for a discussion or blog.
  • Elasticity
    • Bill Hooper
       
      This initial section provides a nice summary of elasticity and would be useful to assign as a reading to provide background at the beginning of the module.
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    • Bill Hooper
       
      Terrific website to use as part of a short unit on elasticity. It provides all the basic background information, provides a self-assessment, and applies it to a current event. Students should have no trouble getting some good information out of this site.
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    This is a very cool interative activity for students to use in their learning about the concept of elasticity.
Maria Guadron

Malcolm Knowles, informal adult education, self-direction and andragogy - 0 views

  • 1. Self-concept: As a person matures his self concept moves from one of being a dependent personality toward one of being a self-directed human being2. Experience: As a person matures he accumulates a growing reservoir of experience that becomes an increasing resource for learning.3. Readiness to learn. As a person matures his readiness to learn becomes oriented increasingly to the developmental tasks of his social roles.4. Orientation to learning. As a person matures his time perspective changes from one of postponed application of knowledge to immediacy of application, and accordingly his orientation toward learning shifts from one of subject-centeredness to one of problem centredness.5. Motivation to learn: As a person matures the motivation to learn is internal (Knowles 1984:12).
  • 1. Self-concept: As a person matures his self concept moves from one of being a dependent personality toward one of being a self-directed human being2. Experience: As a person matures he accumulates a growing reservoir of experience that becomes an increasing resource for learning.3. Readiness to learn. As a person matures his readiness to learn becomes oriented increasingly to the developmental tasks of his social roles.4. Orientation to learning. As a person matures his time perspective changes from one of postponed application of knowledge to immediacy of application, and accordingly his orientation toward learning shifts from one of subject-centeredness to one of problem centredness.5. Motivation to learn: As a person matures the motivation to learn is internal (Knowles 1984:12).
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    Malcolm Knowles and andragogy
Donna Angley

Constructionist Learning Environment - 1 views

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    Moving from constructivist philosophy, psychology and epistemology to the characterization of constructivist learning environments presents the challenge of synthesizing a large spectrum of somewhat disparate concepts. An appropriate analogy for the way in which constructivist concepts have evolved is that of a prism with many facets. While the facets reflect the same light and form one part of a whole, they nonetheless each present distinct and finely delineated boundaries.
Nicole Arduini-Van Hoose

CoL Model--concept map - 0 views

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    CoI model in concept map form
Diane Gusa

ON COURSE: The One-Minute Paper - 0 views

  • : A “one-minute paper” may be defined as a very short, in-class writing activity (taking one-minute or less to complete) in response to an instructor-posed question, which prompts students to reflect on the day’s lesson and provides the instructor with useful feedback.
  • What was the most important concept you learned in class today? Or, “What was the ‘muddiest’ or most confusing concept covered in today’s class?
  • more as a student-centered reflection strategy designed to help students discover their own meaning in relation to concepts covered in class, and to build instructor-student rapport
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  • *For you, what interesting questions remain unanswered about today’s topic?
  • In your opinion, what was the most useful idea discussed in today’s class?
  • *What do you think was the most important point or central concept communicated during today’s presentation?  
  • *What relationship did you see between today’s topic and other topics previously covered in this course?
  • Minute papers can provide a “conceptual bridge” between successive class periods
  • Minute papers are a more efficient way to promote writing-across-the curriculum than the traditional term paper.
  • Minute papers can function as an ongoing learning log or learning journal for the course.
Alicia Fernandez

The Illusory Theory of Multiple Intelligences | Psychology Today - 0 views

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    Article argues that Gardner's theory of multiple intelligences looks to be a confused and nebulous set of claims that have not been empirically validated. Many of Gardner's proposed "intelligences" appear to be explainable in terms of existing concepts of personality and general intelligence, so the theory does not really offer anything new. Additionally, some of the proposed "intelligences" are poorly defined (particularly intrapersonal) and others (e.g. musical) may be more usefully thought of as skills or talents. The popularity of Gardner's theories in educational contexts may reflect its sentimental and intuitive appeal but is not founded on any scientific evidence for the validity of the concept.
Nicole Arduini-Van Hoose

Bringing Life to Online Instruction with Humor - 1 views

  • Based on our experience using humor as an instructional strategy in traditional and online courses, we explain how instructors can incorporate humor into online courses
  • Of the personal dimensions of teaching, humor is the most human of them all. T
  • Humor is not a pedagogical panacea, and the mere inclusion of humor will not assure that learning will occur. I
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  • The challenge for instructors teaching online courses is to learn to use humor to create interesting and inviting virtual learning environments while minimizing any potential pitfalls of humor as an instructional device
  • e, the educational purpose of the humor is the most important consideration. As a pedagogical device, humor can promote various objectives, such as to increase student interest and attention, facilitate the student-teacher relationship, provide students with a “mental break,” or promote the understanding and retention of a concept. In contrast to humorists, who gauge success by laughter, educators measure the effectiveness of humor by how it promotes learning. Although humor can be used to increase students’ overall enjoyment of the online experience, most of the humor incorporated into an online course should serve an instructional purpos
  • simpler forms of humor that would “bomb” in a comedy venue, such as word-play (e.g., puns, oxymorons) and clever or witty observations, can be used successfully in online course
  • nstructors recognize that potentially offensive humor, such as sexist or racist jokes, is not appropriate (Perlman & McCann, 1998). The safest target is the instructor, because self-deprecating humor avoids offending or alienating others, and allows students to view the teacher as more “human.
  • several ways that instructors can enhance visual humor for the online environment
  • journals devoted to humorous research (e.g., Journal of Polymorphous Perversity, Annals of Improbable Research).
  • Visual humor is especially effective in online courses, and cartoons, illustrations, and photographs, can easily be integrated throughout the course
  • e, we strongly encourage instructors to consider the guidelines for pedagogical humor mentioned in the previous section. First, does the humor promote an educational objective? Second, will the students understand and appreciate the humor? Third, is the target of the humor appropriate for the course?
  • For this type of humor to be effective, the visual punch line needs to be hidden behind a hyperlink.
  • We strongly believe that integrating personal photographs or “home movies” into online instruction adds a more personalized and intimate feel to the often sterile nature of online courses
  • use an extra-credit activity called the “Contributing Editor” that requires students to locate potential sources of humor on any course topic.
  • For instructors who are comfortable using humor in course examinations, there are several approaches for adding humor to multiple-choice tests. First, an additional distracter (e.g., choice “e”), such as a joke at the expense of the instructor, can be added to select items. Second, names that appear in items can be reformatted by inserting the instructor's name or creating fictitious names. Third, a “final” item can be added with the setup “The test is over and you...” with funny distracters targeted to the students, instructor, or course. (See Berk, 2000 for additional strategies for infusing humor into multiple-choice examinations.)
  • the most suitable joke formulas for the online course are word-play and exaggeration. A word-play joke involves the modification of a word, clichés, definition, common phrase, or concept. Examples of word-play pedagogical humor include silly names, funny unit subtitles, oxymorons, and factitious definitions. Word-play is a relatively simple form of humor, and instructors should expect smirks (or moans) rather than big laughs. Also, word-play jokes will only be successful when instructors follow the principle of “knowing your audience” (i.e., students must recognize the word, concept, or phrase that is being reformatted or embellished).
  • The final step of humor writing is to edit the joke by following the four principles of “aggressive editing” (Sankey, 1998)
  • The placement and duration of humor used in online lecture modules are critical to the flow of instruction.
  • Humor can allow students a brief “mental break” from an online lecture, and instructors can use transitions to illustrate a concept with topic-related tangents or self-deprecating stories.
  • ules as an opportunity to use humorous personal examples and commentary to expand on previously discussed lecture topics. By clearly identifying the tangent, students recognize that the rant is separate from the lecture
  • For a more detailed explanation of the techniques and principles of humor writing, instructors can refer to various comedy writing books (e.g., Carter, 2001; Helitzer & Shatz, 2005).
  • course, we strongly encourage instru
  • course, we strongly encourage instru
  • luding funny quotes, jokes, and cartoons, and in this section, we identify resources for locating pedagogical humor. When deciding which material to use for the online course, we strongly encourage instructors to c
  • we strongly encourage instructors to consider the guidelines for pedagogical humor mentioned in the previous section. First, does the humor promote an educational objective? Second, will the students understand and appreciate the humor? Third, is the target of the humor appropriate for the course? The Internet is the best resource for pedagogical humor, and although any search using a discipline and “humor” as descriptors will yield numerous web sites, we recommend more narrowly focused searches (i.e., “humor” and a specific discipline topic). Additional resources for pedagogical humor include supplemental instructional materials provided by book publishers and journals devoted to humorous research (e.g., Journal of Polymorphous Perversity, Annals of Improbable Research). When using humor from other sources, instructors need to adhere to copyright considerations. Visual humor is especially effective in online courses, and cartoons, illustrations, and photographs, can easily be integrated throughout the course. Although visual humor is usually self-contained (i.e., a caption or the illustration delivers the punch line), there are several ways that instructors can enhance visual humor for the online environment. Visuals, such as photographs or illustrations, can be used as a punch line for a joke. For example, when discussing the difficulty of course examinations, the setup would be “And this is how students often feel after an exam…” with a photograph or cartoon of frighten individuals delivering the punch line. For this type of humor to be effective,
  • we strongly encourage instructors to consider the guidelines for pedagogical humor mentioned in the previous section. First, does the humor promote an educational objective? Second, will the students understand and appreciate the humor? Third, is the target of the humor appropriate for the course? The Internet is the best resource for pedagogical humor, and although any search using a discipline and “humor” as descriptors will yield numerous web sites, we recommend more narrowly focused searches (i.e., “humor” and a specific discipline topic). Additional resources for pedagogical humor include supplemental instructional materials provided by book publishers and journals devoted to humorous research (e.g., Journal of Polymorphous Perversity, Annals of Improbable Research). When using humor from other sources, instructors need to adhere to copyright considerations. Visual humor is especially effective in online courses, and cartoons, illustrations, and photographs, can easily be integrated throughout the course. Although visual humor is usually self-contained (i.e., a caption or the illustration delivers the punch line), there are several ways that instructors can enhance visual humor for the online environment. Visuals, such as photographs or illustrations, can be used as a punch line for a joke. For example, when discussing the difficulty of course examinations, the setup would be “And this is how students often feel after an exam…” with a photograph or cartoon of frighten individuals delivering the punch line. For this type of humor to be effective,
  • we strongly encourage instructors to consider the guidelines for pedagogical humor mentioned in the previous section. First, does the humor promote an educational objective? Second, will the students understand and appreciate the humor? Third, is the target of the humor appropriate for the course? The Internet is the best resource for pedagogical humor, and although any search using a discipline and “humor” as descriptors will yield numerous web sites, we recommend more narrowly focused searches (i.e., “humor” and a specific discipline topic). Additional resources for pedagogical humor include supplemental instructional materials provided by book publishers and journals devoted to humorous research (e.g., Journal of Polymorphous Perversity, Annals of Improbable Research). When using humor from other sources, instructors need to adhere to copyright considerations. Visual humor is especially effective in online courses, and cartoons, illustrations, and photographs, can easily be integrated throughout the course. Although visual humor is usually self-contained (i.e., a caption or the illustration delivers the punch line), there are several ways that instructors can enhance visual humor for the online environment. Visuals, such as photographs or illustrations, can be used as a punch line for a joke. For example, when discussing the difficulty of course examinations, the setup would be “And this is how students often feel after an exam…” with a photograph or cartoon of frighten individuals delivering the punch line. For this type of humor to be effective,
  • ll the students unders
  • A wide range of hum
  •  
    "The challenge for instructors teaching online courses is to learn to use humor to create interesting and inviting virtual learning environments while minimizing any potential pitfalls of humor as an instructional device. In a commentary noting the need for humor in online courses, James (2004) observed that "Because humor is one of the major traits of the best, most effective teachers, it is a characteristic that all teachers should want to hone, practice, and nurture, regardless of medium" "
  •  
    Thinking back to our conversation on humor. (I was only a lurker in that conversation, but maybe now I have time to revisit this idea). Hope this adds to your thoughts.
  •  
    explain how instructors can incorporate humor in an online course, the enhancement humor can bring, guidelines for locating, selecting, developing, and integrating humor into an online courses, and examples of humor in various online components.
Celeste Sisson

Concept of Perplexity - 0 views

  •  
    The article desribes Dan Meyer's concept of perplexity with ten design principles in the math classroom.
Alicia Fernandez

From Pedagogy to Andragogy and Heutagogy: Thinking Distance Education and Self-Directed... - 4 views

  •  
    Education has historically been a core concept in societies. Over the years we have seen founders of educational thought compromise with dated economic and social trends. Locke, Dewey, Piaget, Montessori are only some of the 'contemporary' contributors in the field. It is very difficult for the educational paradigm of the industrial age to serve the so called 'Universal Electronic Campus' of the 'digital age' as there is a movement from campus based learning to web-based distance education.
  •  
    Education has historically been a core concept in societies. Over the years we have seen founders of educational thought compromise with dated economic and social trends. Locke, Dewey, Piaget, Montessori are only some of the 'contemporary' contributors in the field. It is very difficult for the educational paradigm of the industrial age to serve the so called 'Universal Electronic Campus' of the 'digital age' as there is a movement from campus based learning to web-based distance education.
Lisa Martin

Research Findings and Policy Recommendations - 0 views

  • 1) Though the overwhelming majority (89%) claimed critical thinking to be a primary objective of their instruction, only a small minority (19%) could give a clear explanation of what critical thinking is. Furthermore, according to their answers, only 9% of the respondents were clearly teaching for critical thinking on a typical day in class.
  • 5) Although the majority (67%) said that their concept of critical thinking is largely explicit in their thinking, only 19% could elaborate on their concept of thinking.
  • 6) Although the vast majority (89%) stated that critical thinking was of primary importance to their instruction, 77% of the respondents had little, limited or no conception of how to reconcile content coverage with the fostering of critical thinking.
  •  
    Research on Critical Thinking in Higher Education classrooms
alexandra m. pickett

My Reflections (Gary) - 0 views

  • This becomes a problem in education if you have a policy, as my school, of no electronic devices on during school hours. I think this subject can be a huge debate among educators, but encourage for an online course.  
    • alexandra m. pickett
       
      i would love to have you bring some of that debate into your blog or into the class discussions.
  • it just can’t be reading and discussions, so there needs to be virtual activities and videos to help them visualize the concept that we are learning about.
    • alexandra m. pickett
       
      YES!!!! but who says it can only be limited to virtual activities, videos, an online stuff? Think outside the "box" :
  • I kept falling off the second floor of the  building and running into walls,
    • alexandra m. pickett
       
      here is a little video i made of my first year in SL. http://etap640.edublogs.org/secondlife-if-my-avatar-could-talk/ : ) me
  • ...6 more annotations...
  • I believe my list of assumptions can get very long, knowing how unpredictable this age group can be.  Now that I am not assuming anything, I can move on to the next step at planning this awesome astronomy course.
  • design.
  • module 1
  •   In this class, i had to wrap my head that I have to design a course that the student is responsible for their learning with me as a facilitator. 
  •  I have so many ideas that I have learned from this course that I want to implement them all into my class.  But, I really need to stand back and reflect.  The most I got from this class is all the information that everybody shared on diigo.com and in their discussions.  I am very proud of everybody’s  contribution to my education and their own.  I loved how everybody had a share in the teaching presence and how Alex facilitated the learning.  This was an an excellent example of an effective student-centered learning environment.
  • . Apply strategies for identifying and solving routine hardware and software problems that occur during everyday use. 2. Demonstrate knowledge of current changes in information technologies and the effect those changes have on the workplace and society. 3. Exhibit legal and ethical behaviors when using information and technology, and discuss consequences of misuses. 4. Use content-specific tools, software, and simulations to support learning and research. 5. Apply productivity/multimedia tools and peripherals to support personal productivity, group collaboration, and learning throughout the curriculum. 6. Design, develop, publish, and present products using technology resources that demonstrate and communicate curriculum concepts to audiences inside and outside of the classroom. 7. Collaborate with peers, experts, and others using telecommunications and collaborative tools to investigate curriculum-related problems, issues, and information, and to develop solutions or products for audiences inside and outside of the classroom. 8. Select and use appropriate tools and technology resources to accomplish a variety of task and solve problems. 9. Demonstrate an understanding of concepts underlying hardware, software, and connectivity, and of practical applications to learning and problem solving. 10. Research and evaluate the accuracy, relevance, appropriateness, comprehensiveness, and bias of electronic information sources concerning real-world problems. I do believe that these standards should assist the students in either online or face-to-face class to succeed with learning.  I am actually going to observe and take notes of my 8th graders to see how many standards that they can achieve. I had a great summer learning and being challenged to do my best at learning.
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