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Catherine Strattner

Applying Bloom's Taxonomy to teach thinking skills in e-learning « Jen e-blogger - 0 views

  • 4. ANALYSIS: This level is defined as the ability to break down material to identify its components and to analyze its organizational structure and content. E- Learning activities that focus on scaffolding thinking at this level includes those that guide students to identify different components of a particular object, to better appreciate the relationships between the parts. It requires students to identify different aspects of a process to appreciate the working principle behind the process.
  • 4. ANALYSIS: This level is defined as the ability to break down material to identify its components and to analyze its organizational structure and content. E- Learning activities that focus on scaffolding thinking at this level includes those that guide students to identify different components of a particular object, to better appreciate the relationships between the parts. It requires students to identify different aspects of a process to appreciate the working principle behind the process.
  • 4. ANALYSIS: This level is defined as the ability to break down material to identify its components and to analyze its organizational structure and content. E- Learning activities that focus on scaffolding thinking at this level includes those that guide students to identify different components of a particular object, to better appreciate the relationships between the parts. It requires students to identify different aspects of a process to appreciate the working principle behind the process.
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  • 4. ANALYSIS: This level is defined as the ability to break down material to identify its components and to analyze its organizational structure and content. E- Learning activities that focus on scaffolding thinking at this level includes those that guide students to identify different components of a particular object, to better appreciate the relationships between the parts. It requires students to identify different aspects of a process to appreciate the working principle behind the process.
  • 4. ANALYSIS: This level is defined as the ability to break down material to identify its components and to analyze its organizational structure and content. E- Learning activities that focus on scaffolding thinking at this level includes those that guide students to identify different components of a particular object, to better appreciate the relationships between the parts. It requires students to identify different aspects of a process to appreciate the working principle behind the process.
  • 4. ANALYSIS: This level is defined as the ability to break down material to identify its components and to analyze its organizational structure and content. E- Learning activities that focus on scaffolding thinking at this level includes those that guide students to identify different components of a particular object, to better appreciate the relationships between the parts. It requires students to identify different aspects of a process to appreciate the working principle behind the process.
  • 4. ANALYSIS: This level is defined as the ability to break down material to identify its components and to analyze its organizational structure and content. E- Learning activities that focus on scaffolding thinking at this level includes those that guide students to identify different components of a particular object, to better appreciate the relationships between the parts. It requires students to identify different aspects of a process to appreciate the working principle behind the process.
  • 4. ANALYSIS: This level is defined as the ability to break down material to identify its components and to analyze its organizational structure and content. E- Learning activities that focus on scaffolding thinking at this level includes those that guide students to identify different components of a particular object, to better appreciate the relationships between the parts. It requires students to identify different aspects of a process to appreciate the working principle behind the process.
  • 4. ANALYSIS: This level is defined as the ability to break down material to identify its components and to analyze its organizational structure and content. E- Learning activities that focus on scaffolding thinking at this level includes those that guide students to identify different components of a particular object, to better appreciate the relationships between the parts. It requires students to identify different aspects of a process to appreciate the working principle behind the process.
  • 4. ANALYSIS: This level is defined as the ability to break down material to identify its components and to analyze its organizational structure and content. E- Learning activities that focus on scaffolding thinking at this level includes those that guide students to identify different components of a particular object, to better appreciate the relationships between the parts. It requires students to identify different aspects of a process to appreciate the working principle behind the process.
  • guide students to arrive at a certain concept, rule, principle or method and use the concept, rule, principle or method in a workplace or simulated workplace environment.
  • require students to construct a new product from the components given or apply different aspects of their prior learning to put together a product.
  • require students to critic or review materials or ideas.
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    This blog post outlinse different learning activities that address the different levels of Bloom's Taxonomy.
Alicia Fernandez

Interaction and cognitive engagement: An analysis of four asynchronous online discussions - 0 views

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    Article analyzes types of interaction that occur during online discussions, examines levels of student cognitive engagement in each discussion, and explores their effects on and implications for learning and teaching in higher education. By combining methods of social network analysis with qualitative content analysis, the article explores new methodologies for analyzing participation, interaction, and learning that take place online, and suggests areas for research in learning and teaching online.
Alicia Fernandez

Online Instructional Effort Measured through the Lens of Teaching Presence in the Commu... - 1 views

  • The focus of this paper is teaching presence, which has been defined as “the design, facilitation and direction of cognitive and social processes for the purpose of realizing personally meaningful and educationally worthwhile outcomes” (Garrison et al., 2000).
  • Instructor teaching presence is hypothesized to be an indicator of online instructional quality.  Empirical research has supported this view with evidence indicating strong correlations between the quality of teaching presence and student satisfaction and learning (Bangert, 2008; Picciano, 2002; Shea, Pickett, & Pelz, 2003)
  • First, there is a need to revisit two of the original three teaching presence elements.
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  • The second limitation relates to design and organization (DE).
  • The third limitation relates to the locus of research investigating teaching presence which has been limited largely to threaded discussions.
  • Lastly, a careful review of the original teaching presence indicators developed by Anderson et al. (2001) reveals that they are largely reliant upon the threaded discussion activities of the instructor and thus fall short in identifying and articulating the full range of online collaborative tasks and effort demonstrated by both instructors and students.
  • If students’ perceptions indicate that they place a premium on instructor interaction (Anderson, 2003; Shea et al., 2006) instructors must actively manage students’ expectations about the nature of online learning and the role of the instructor in this process. Online instructors can accomplish this by taking the time to communicate that online courses are not teacher-centered models of learning and by explaining the rationale behind student-to-student interaction in negotiating shared meaning through discourse.
  • These results suggest that students’ teaching presence may have a “floor” threshold level and when the instructor's participation within the threaded discussion drops to zero students attempt to recreate “instructional equilibrium.”
  • When accounting for instructor teaching presence in all areas of a course, we see that there is a certain ebb and flow to teaching presence.
  • restricting analysis of teaching presence to discussion areas may present too narrow a view of individual instructor’s effort. Some instructors may take a strategic approach by participating in early discussions to model how to formulate probing questions and by providing direct feedback with the goal of withdrawing once this scaffolding is completed
  • These results also document a significant correlation between instructional effort reflected in frequency of teaching presence behaviors and learning outcomes evidence through instructor-assigned grades on closely related assignments. 
  • Where does teaching presence occur in online courses? 2. How do instructors employ communicative functionality within the course to   demonstrate teaching presence? 3. In what ways do students demonstrate teaching presence? 4. Does teaching presence shift over time? 5. Does teaching presence correlate with learning outcomes reflected in instructor-assigned grades?
  • In this study we found that the effectiveness of the instructor did not depend on participation within the threaded discussion per se, but that responsiveness and effective interaction with students was carried out through a variety of forums, including the ask-a-question area, email, and other modes of communication.  We suggest that benchmarks for effective interaction be communicated to instructors and that institutions provide training and support for online faculty around teaching presence. 
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    With more than 4 million students enrolled in online courses in the US alone (Allen & Seaman, 2010), it is now time to inquire into the nature of instructional effort in online environments. Reflecting the community of inquiry (CoI) framework (Garrison, Anderson, & Archer, 2000) this paper addresses the following questions: How has instructor teaching presence (Anderson, Rourke, Garrison, & Archer, 2001) traditionally been viewed by researchers? What does productive instructor effort look like in an entire course, not just the main threaded discussion? Results suggest that conventional research approaches, based on quantitative content analysis, fail to account for the majority of teaching presence behaviors and thus may significantly under represent productive online instructional effort.
Diana Cary

A Meta-Analysis of Three Types of Interaction Treatments in Distance Education - 0 views

  • student–student (SS), student–teacher (ST), or student–content (SC) interactions
  • A strong association is found between strength and achievement for asynchronous DE courses compared to courses containing mediated synchronous or face-to-face interaction
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    Abstract This meta-analysis of the experimental literature of distance education (DE) compares different types of interaction treatments (ITs) with other DE instructional treatments. ITs are the instructional and/or media conditions designed into DE courses, which are intended to facilitate student-student (SS), student-teacher (ST), or student-content (SC) interactions.
Diane Gusa

The Impact of Asynchronous Audio Feedback on Teaching and Social Presence: A Survey of ... - 2 views

  • The Impact of Asynchronous Audio Feedback on Teaching and Social Presence: A Survey of Current Research.
  • Data analysis revealed that 1. students perceived audio feedback to be more effective than text-based feedback for conveying nuance, 2. audio feedback was associated with feelings of increased involvement and enhanced learning community interactions, 3. audio feedback was associated with increased retention of content, and 4. audio feedback was associated with the perception that the instructor cared more about the student.
  • Document analysis revealed that students were far more likely to apply content for which they received audio feedback than content for which text-based feedback was received and at significantly higher cognitive levels. This presentation explores the original study, an ongoing study and two emerging, related areas of inquiry.
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    abstract
Irene Watts-Politza

Online Teaching Effectiveness: A Tale of Two Instructors | Gorsky | The International R... - 0 views

  • We propose, as have others (i.e., Shea, Pickett, & Pelz, 2003), that the community of inquiry model (Garrison, Anderson, & Archer, 2000) reflects the principles of good practice in undergraduate education and can accurately quantify them.
    • Irene Watts-Politza
       
      Go, Dr. Pickett!
  • issues of pedagogy, dialogue, and interaction
  • guide the coding of transcripts.
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  • Social presence is the perceived presence of others in mediated communication (Rourke, Garrison, & Archer, 1999), which Garrison et al. (2000) contend supports both cognitive and teaching presence through its ability to instigate, to sustain, and to support interaction. It had its genesis in the work of John Dewey and is consistent with all theoretical approaches to learning in higher education.
  • Teaching presence is defined as “the design, facilitation and direction of cognitive and social processes for the purpose of realizing [students’] personally meaningful and educationally worthwhile outcomes” (Anderson et al., 2001, p.5). Vygotsky’s (1978) scaffolding analogies illustrate an assistive role for teachers in providing instructional support to students from their position of greater content knowledge. Although many authors recommend a “guide on the side” approach to moderating student discussions, a key feature of this social cognition model is the adult, the expert, or the more skilled peer who scaffolds a novice’s learning
  • Shea, Pickett, & Pelz , 2004
  • Each category of a tutor’s presence is vital to learning and to the establishment of the learning community; tutors' behavior must be such that they are seen to be “posting regularly, responding in a timely manner and modeling good online communication and interaction” (Palloff & Pratt, 2003, p.118). Without an instructor’s explicit guidance and “teaching presence,” students were found to engage primarily in “serial monologues” (Pawan et al., 2003). Baker (2004) discovered that “instructor immediacy, i.e., teaching presence (Rourke et al., 1999), was a more reliable predictor of effective cognitive learning than whether students felt close to each other. Studies have demonstrated that instructor participation in threaded discussion is critical to the development of social presence (Shea, Li, Swan, & Pickett, 2005; Swan & Shih, 2005) and sometimes not fully appreciated by online faculty (Liu, Bonk, Magjuka, Lee, & Su, 2005). Shea, Li, and Pickett (2006) proposed that teaching presence – viewed as the core role of the online instructor – is a promising mechanism for developing learning community in online environments.
  • students ranked instructor modeling as the most important element in building online community, while instructors ranked it fourth.
  • Shea (2006), who completed an extensive study of teaching presence and online learning, concluded that two categories (“design” and “directed facilitation”) sufficed to define the construct.
  • Kalman, Ravid, Raban, and Rafaeli (2006) argued that interactivity is an essential characteristic of effective online communication and plays an important role in keeping message threads and their authors together. Interactive communication (online as well as in traditional settings) is engaging, and loss of interactivity results in a breakdown of the communicative process.
  • Research indicates the existence of a relationship between learners’ perceptions of social presence and their motivation for participation in online discussions (Weaver & Albion, 2005).
  • Northrup (2002) found that online learners felt it was important for instructors to promote collaboration and conversation. When interactive activities are carefully planned, they lead not only to greater learning but also to enhanced motivation (Berge 1999; Northrup, 2002).
  • Researchers have suggested that timing of messages can serve as a proxy for a sense of social presence (Blanchard, 2004), as an indication of attentiveness (Walther & Bunz, 2005) or respect (Bargh & McKenna, 2004), and as a clue to the sociability of a community (Maloney-Krichmar & Preece, 2005). As such, the frequency of messages may serve as a signal for how engaged participants are with the community.
    • Irene Watts-Politza
       
      Agreed.
  • Eom found that the most significant factors for increasing student satisfaction with online classes are paying attention to students and responding to their concerns.
  • The highly esteemed instructor was especially active from semester midpoint to semester end; she more than doubled her active participation in both teaching presence (especially discourse and instruction) and social presence (all three categories).
  • the lack of specific, progressively structured inquiry tasks and/or the lack of facilitation skills (teaching presence/facilitating discourse) may have contributed to the relatively limited occurrences of cognitive presence.
  • something else accounted for the extreme satisfaction and dissatisfaction experienced by students in the two forums. The something else may be the two exceptional events that occurred during the third month: The instructor held in low esteem became nearly dysfunctional, while the highly esteemed instructor exhibited very high teacher presence and social presence (see Table 3 and 4).
  • Shea, Pickett, and Pelt (2003) found that students’ perceived teacher presence also correlates with perceived learning as well as with students’ satisfaction with the forum. This correlation points to the tentative conclusion that teaching presence affords learning by setting a convenient climate.
  • we suggest that students’ perceived learning in course forums has a significant impact on their participation
  • the table is suggestive of the eventual possibility of having an “objective” tool for evaluating the quality of a given forum.
  • (Anderson et al., 2001).
  • Teaching effectiveness may be defined as how an instructor can best direct, facilitate, and support students toward certain academic ends, such as achievement and satisfaction. Teaching effectiveness has been investigated extensively in traditional classrooms for more than seven decades (for a meta-analysis of empirical studies from 1995-2004, see Seidel & Shavelson, 2007). Over the past five years, research has become directed toward teaching effectiveness in online or virtual classes. As a preface to our study, we discuss findings and conclusions concerning teaching effectiveness in traditional classrooms.
  • Journal Help ISSN: 1492-3831 Journal Content Search All Authors Title Abstract Index terms Full Text Browse By Issue By Author By Title User Username Password Remember me Article Tools Abstract Print this article Indexing metadata How to cite item Review policy Email this article (Login required) Email the author (Login required) Post a Comment (Login required) Font Size Make font size smaller Make font size default Make font size larger SUBSCRIBE TO MAILING LIST 5,591  subscribers Select Language​▼ function googleTranslateElementInit() { new google.translate.TranslateElement({ pageLanguage: 'en', autoDisplay: false, layout: google.translate.TranslateElement.InlineLayout.SIMPLE }, 'google_translate_element'); } Home About Register Archives Announcements Resources Submissions http://www.irrodl.org/
  • One of the most widely cited sources for teacher effectiveness in traditional classrooms is Chickering and Gamson (1987), who suggested seven principles for good practice in undergraduate education.
  • encourages student-faculty contact, encourages cooperation among students, encourages active learning, gives prompt feedback, emphasizes time on task, communicates high expectations, respects diverse talents and ways of learning.
Julie DelPapa

A Meta-Analysis of Three Types of Interaction Treatments in Distance Education - 0 views

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    Abstract This meta-analysis of the experimental literature of distance education (DE) compares different types of interaction treatments (ITs) with other DE instructional treatments. ITs are the instructional and/or media conditions designed into DE courses, which are intended to facilitate student-student (SS), student-teacher (ST), or student-content (SC) interactions.
aperr1

http://centerononlinelearning.org/wp-content/uploads/Foundation_7_2012.pdf - 0 views

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    Analysis of struggles in accommodating needs for students with disabilities in online education.
Alicia Fernandez

Collaborative learning in asynchronous discussion groups: What about the impact on cogn... - 1 views

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    Results of study using content analysis of online discussion groups confirm that interaction in the discussion is very task-oriented, stays task-oriented and reflects high phases in knowledge construction. Clear results can be presented about the impact of the amount of discussion activity on the nature and quality of the discussions and the phases of knowledge construction.
lkryder

Minding the Knowledge Gap - 0 views

  • In the meantime, I've written a book, from which this article is drawn, about all that I've learned from my research. In my book, I focus on what I identify as seven myths, or widely held beliefs, that dominate our educational practice. I start with the myth that teaching facts prevents understanding, because this (along with my second myth, that teacher-led instruction is passive) is the foundation of all the other myths I discuss. These myths have a long pedigree and provide the theoretical justification for so much of what goes on in schools. Taken together, all seven myths actually damage the education of our pupils. But here, let's focus on facts and the role knowledge has in our understanding.
  • Why Is It a Myth? My aim here is not to criticize true conceptual understanding, genuine appreciation of significance, or higher-order skill development. All of these things are indeed the true aim of education. My argument is that facts and subject content are not opposed to such aims; instead, they are part of it. Rousseau, Dewey, and Freire were wrong to see facts as the enemy of understanding. All the scientific research of the last half-century proves them wrong. The modern bureaucrats and education experts who base policy and practice on their thinking are wrong too, and with less excuse, as they have been alive when evidence that refutes these ideas has been discovered. Rousseau was writing in the 18th century; Dewey at the turn of the 20th; Freire in the 1970s. Research from the second half of the 20th century tells us that their analyses of factual learning are based on fundamentally faulty premises.
  • If we want pupils to develop the skills of analysis and evaluation, they need to know things. Willingham puts it this way:23 Data from the last thirty years lead to a conclusion that is not scientifically challengeable: thinking well requires knowing facts, and that's true not just because you need something to think about. The very processes that teachers care about most—critical thinking processes such as reasoning and problem solving—are intimately intertwined with factual knowledge that is stored in long-term memory (not just found in the environment).
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  • The main reason they do not work is because of a misguided, outdated, and pseudoscientific stigma against the teaching of knowledge. The evidence for the importance of knowledge is clear. We have a strong theoretical model that explains why knowledge is at the heart of cognition. We have strong empirical evidence about the success of curricula that teach knowledge. And we have strong empirical evidence about the success of pedagogy that promotes the effective transmission of knowledge. If we fail to teach knowledge, pupils fail to learn.
  • By neglecting to focus on knowledge accumulation, therefore, and assuming that you can just focus on developing conceptual understanding, today's common yet misguided educational practice ensures not only that pupils' knowledge will remain limited, but also that their conceptual understanding, notwithstanding all the apparent focus on it, will not develop either. By assuming that pupils can develop chronological awareness, write creatively, or think like a scientist without learning any facts, we are guaranteeing that they will not develop any of those skills. As Willingham and others have pointed out, knowledge builds to allow sophisticated higher-order responses. When the knowledge base is not in place, pupils struggle to develop understanding of a topic.
  • In a lot of the training material I read, these knowledge gaps were given very little attention. Generally, the word "knowledge" was used in a very pejorative way. The idea was that you were supposed to focus on skills like analysis, evaluation, synthesis, and so forth. Knowledge was the poor relation of these skills. Of course, I wanted my pupils to be able to analyze and evaluate, but it seemed to me that a pupil needed to know something to be able to analyze it. If a pupil doesn't know that the House of Lords isn't elected, how can you get him to have a debate or write an essay analyzing proposals for its reform? Likewise, if a pupil doesn't know what the three branches of government are in the United States, how can she understand debates in the papers about the Supreme Court striking down one of Congress's laws?
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    From American Educator, AFT - A Union of Professionals Teaching facts is critical to developing higher order thinking skills. An excellent case is made and the origins of our disdain for teaching facts in the works of Rousseau, Dewey, Freire and others is examined.
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    I think this article compliments some earlier discussions I saw on Bloom's Taxonomy in our class and also some of the discussions I saw on Common Core. I would be interested in what the K-12 folks think about this article.
alexandra m. pickett

Class Size - 0 views

  • Smaller class size seems to result in higher achievement among students who are economically disadvantaged. Students with lower academic ability seem to do better in smaller classes than in larger ones. It may be that class size affects student attitudes more significantly than it affects achievement. A direct effect of large class size is to lower the morale and increase the stress of teachers. There is typically little to be gained from reductions in class size that do not bring class size below 30.
  • Smaller classes are beneficial for children at the primary level, particularly in math and reading.
  • The most positive effects of small classes on pupil learning occur in grades K-3 in reading and mathematics.
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  • Little, if any, increase in pupil achievement can be expected from reducing class size if teachers continue to use the same instructional methods and procedures in the smaller classes that they have used in larger classes (Robinson, p. 82).
  • Teachers with small classes must not only be trained to be effective in such settings, but they must also be committed to try new skills and procedures.
  • Robinson, Glen E. “Synthesis of Research on the Effects of Class Size.” EDUCATIONAL LEADERSHIP (April 1990): 80-90.
  • The most recent comprehensive review of existing research was completed by Robinson (1990), and used a cluster analysis approach. Studies were “clustered” into categories considered important for class size decisions such as grade levels, subject areas, student characteristics, student achievement, student behavior, and teaching practices. The results of part of Robinson’s analysis appear below.
  • Effective schools research has extended its research agenda by focusing on an expanded number of variables that are presumed to be related to student achievement. Schools are now perceived as a cultural entity where the complex interplay of multiple variables affect the lives of all who learn and teach in those institutions. As the metaphor for American schools has shifted from an assembly line to that of a caring, learning community, the class size research agenda has also shifted to include such variables as instructional method, teacher morale and stress, teacher work load, student behavior and attitudes, content areas, student characteristics, and grade level. Bennett (1987), in a review of more recent research, found broad agreement among researchers on the following general conclusions:
    • alexandra m. pickett
       
      hey ;just demoing diigo to faculty
    • alexandra m. pickett
       
      another demo of a comment
Diana Cary

A Meta-Analysis of Three Types of Interaction Treatments in Distance Education - 0 views

  • ITs are the instructional and/or media conditions designed into DE courses, which are intended to facilitate student–student (SS), student–teacher (ST), or student–content (SC) interactions
Irene Watts-Politza

Three generations of distance education pedagogy | Anderson | The International Review ... - 0 views

  • Another notable trend is towards more object-based, contextual, or activity-based models of learning. It is not so much a question of building and sustaining networks as of finding the appropriate sets of things and people
  • and activities. CloudWorks, a product of the OU-UK, is an example of this new trend, in which objects of discourse are more important than, or at least distinct from, the networks that enable them (Galley, Conole, Dalziel, & Ghiglione, 2010).
  • The next step in this cycle would seem to be, logically, to enable those sets to talk back to us: to find us, guide us, and influence our learning journeys. This represents a new and different form of communication, one in which the crowd, composed of multiple intelligences, behaves as an intentional single entity.
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  • PageRank algorithm behind a Google search works in exactly this way, taking multiple intelligent choices and combining them to provide ranked search results (Brin & Page, 2000).
  • it is not individuals, groups, or networks that help us to learn but a faceless intelligence that is partly made of human actions, partly of a machine’s.
  • We and others have described these entities in the past as collectives (Segaran, 2007).
  • Despite the ubiquity of such systems, what still remains unclear is how best to exploit them in learning. However, it seems at least possible that the next generation of distance education pedagogy will be enabled by technologies that make effective use of collectives.
  • learners and teacher collaborate to create the content of study, and in the process re-create that content for future use by others. Assessment in connectivist pedagogy combines self-reflection with teacher assessment of the contributions to the current and future courses. These contributions may be reflections, critical comments, learning objects and resources, and other digital artifacts of knowledge creation, dissemination, and problem solving.
  • Teaching presence in connectivist learning environments also focuses on teaching by example. The teachers’ construction of learning artifacts, critical contributions to class and external discussion, capacity to make connections across discipline and context boundaries, and the sum of their net presence serve to model connectivist presence and learning.
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    Special Issue - Connectivism: Design and Delivery of Social Networked Learning Terry Anderson and Jon Dron Athabasca University, Canada Abstract. This paper defines and examines three generations of distance education pedagogy.
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    Connectivism: Design and Delivery of Social Networked Learning Terry Anderson and Jon Dron Athabasca University, This paper defines and examines three generations of distance education pedagogy.
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    Three Generations of Distance Education Pedagogy [Print Version] Special Issue - Connectivism: Design and Delivery of Social Networked Learning Terry Anderson and Jon Dron Athabasca University, Canada
Heather Kurto

Making Sense of MOOCs: Musings in a Maze of Myth, Paradox and Possibility | Daniel | Jo... - 0 views

  • The first course carrying the name MOOC was offered in 2008, so this is new phenomenon. Second, the pedagogical style of the early courses, which we shall call cMOOCs, was based on a philosophy of connectivism and networking. This is quite distinct from the xMOOCs now being developed by elite US institutions that follow a more behaviourist approach. Third, the few academic studies of MOOCs are about the earlier offerings because there has been no time for systematic research on the crop of 2012 xMOOCs. Analysis of the latter has to be based on a large volume of press articles and blogs. Fourth, commentary on MOOCs includes thinly disguised promotional material by commercial interests (e.g. Koller, 2012) and articles by practitioners whose perspective is their own MOOC courses.
  • The term MOOC originated in Canada. Dave Cormier and Bryan Alexander coined the acronym to describe an open online course at the University of Manitoba designed by George Siemens and Stephen Downes. The course, Connectivism and Connective Knowledge, was presented to 25 fee-paying students on campus and 2,300 other students from the general public who took the online class free of charge (Wikipedia, 2012a).
  • Can xMOOCs make money?
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  • technology has been about to transform education for a long time
  • In 1841 the 'inventor of the blackboard was ranked among the best contributors to learning and science, if not among the greatest benefactors to mankind'. A century later, in 1940, the motion picture was hailed the most revolutionary instrument introduced into education since the printing press. Television was the educational revolution in 1957. In 1962 it was programmed learning and in 1967 computers. Each was labelled the most important development since Gutenberg's printing press.
  • But first, we agree with Bates (2012) that what MOOCs will not do is address the challenge of expanding higher education in the developing world. It may encourage universities there, both public and private, to develop online learning more deliberately, and OER from MOOC courses may find their way, alongside OER from other sources, into the teaching of local institutions.
  • He notes (Siemens, 2012) that 'MOOCs are really a platform' and that the platforms for the two types of MOOC that we described at the beginning of the paper are substantially different because they serve different purposes. In Siemens' words 'our cMOOC model emphasises creation, creativity, autonomy and social networking learning.
  • teaching methods 'are based on very old and out-dated behaviourist pedagogy, relying primarily on information transmission, computer-marked assignments and peer assessment'.
  • Another myth is that computers personalise learning. Bates (2012) again: 'No, they don't. They allow students alternative routes through material and they allow automated feedback but they do not provide a sense of being treated as an individual.
  • With such support MOOCs provide a great opportunity to develop new pedagogy. In a world of abundant content, courses can draw from a pool of open educational resources (OER) and provide their students with better and more varied teaching than individual instructors could develop by themselves. The University of Michigan (2012) (which made history by using OER from Africa in its medical school) uses OER extensively in its Coursera course Internet History, Technology and Security. UC Berkeley (2012) draws extensively on OER in its course on Quantum Computing.
  • pedagogy is not a familiar word on the xMOOC campuses. It is a myth that professors distinguished by their research output are competent to create online courses without help.
  • This, in turn, will put a focus on teaching and pedagogy to which these institutions are unaccustomed, which will be healthy. At the same time academics all around the world will make judgements about the intellectual quality and rigour of the institutions that have exposed themselves in this way.
  • With such support MOOCs provide a great opportunity to develop new pedagogy. In a world of abundant content, courses can draw from a pool of open educational resources (OER) and provide their students with better and more varied teaching than individual instructors could develop by themselves.
Alicia Fernandez

eCoaching Tip 51: A Garden of Three Presences - Social Presence, Teaching Presence and ... - 1 views

  • Social presence is the ability to project oneself socially and affectively in a virtual environment. You achieve social presence by being a real -- three-dimensional -- person to your students. Another way of saying this is that you let yourself be known as a person with a life in addition to your role as a teacher/mentor.
  • teaching presence is the work of teaching both before and during the course. It includes the designing and developing the course and in directing and supporting the learners during the course delivery. Teaching presence is manifested in the course materials -- in the syllabus, assignments, choice of readings and discussions. Teaching presence is also manifested in everything the faculty member does to guide, support and shape the learners' experiences. Effective teaching presence sets clear expectations and supportive guidance.
  • Cognitive Presence is the extent to which a group of learners are able to 'construct meaning through sustained communication.' (Garrison, 2006)
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  • Faculty sets high expectations for student inquiry and expectations Faculty examine student responses and probes, challenges, questions encouraging thought and analysis of ideas and content Learners participate thoughtfully in the discussions, responding to content and thoughts and questions from other learners so that a sustained communication occurs. Faculty and students strive to ensure that project outcomes are long-lasting and meaningful.
  • Cognitive presence requires a focus on meaning and not on covering conte
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    Of all the best practices for online teaching, the most important practice is "being there." Being there is the core of presence, letting your students know that you are there to direct, to guide, to listen and to share your expertise with your learners. This tip takes you on a guide through a Garden of Three Presences for Online Teaching and Learning - Social Presence, Teaching Presence and Cognitive Presence (Garrison, 2006b). This tip defines the three types of presence and then lists tools and behaviors - for both faculty and students -that support these three types of presence.
Catherine Strattner

Reading Online - Articles: Exploring an Approach to Online Instruction - 0 views

  • One study explicitly examined the quality of the discourse environment in an online literacy course at the graduate level in a teacher education program (Many, Howrey, Race, Pottinger-bird, & Stern, 2001). The authors noted that with deliberate scaffolding by the instructor and teacher-leaders, students developed a strong support community, provided mentoring and advice, and collaborated with colleagues. In addition, research has focused specifically on the nature of scaffolding that occurred in an online reading assessment course (Many, Bates, & Coleman, 2002). In that study, bulletin board postings included support from both the instructor and the class members and focused on the use of technology; clarification of assignments; strategies for learning online; understanding, assessing, and teaching literacy concepts; and understanding general concepts in education. Online scaffolding processes included modeling, supplying information, clarifying, assisting, questioning, prompting, focusing attention, encouraging self-monitoring, and labeling/affirming.
  • Instructional scaffolding of course content in online conversations. Instructional scaffolding took place in the highly individualized and elaborative e-mail feedback given by the instructor for all course assignments. An analysis of all such correspondence between the instructor and the members of the focus group revealed the following four categories related to scaffolding: Affirming Probing Providing explicit instruction Clarifying
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    Addresses various uses of scaffolding in online instruction.
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    This article provides examples of online instructional scaffolding.
Joan McCabe

Assessment Design and Cheating Risk in Online Instruction - 0 views

  • It would be a mistake to minimize the problem of cheating in f2f classes. Four stylized facts emerge from a survey of the literature on cheating in f2f undergraduate courses. First, cheating by college students is considered widespread (McCabe and Drinan 1999). For example, estimates from five studies of college students reporting having cheated at least once during their college career range from 65% to 100% (Stearns 2001), and Whitley (1998) reports an average of 70% from a review of forty-six studies.   Second, cheating by college students is becoming more rather than less of a problem. Estimates from five studies of the percentage of college students cheating at least once in their college career have been steadily rising over the period 1940 to 2000 (Jensen, Arnett et al. 2002). A study administered in 1964 and replicated in 1994 focused on the incidence of serious cheating behaviors (McCabe, Trevion et al. 2001). This study reported that the incidence of serious cheating on written assignments was unchanged at 65-66%, but the incidence of serious cheating on exams increased from 39% to 64%.  Third, the format of assessment is correlated with cheating. Whitley (1998) reviewed 107 studies of cheating by students over the span of their college courses (published since 1970), and reported that from 10 studies a mean estimate of 47% for cheating by plagiarism, from 37 studies a mean estimate of 43% for cheating on exams, and from 13 studies a mean estimate of 41% for cheating on homework. Fourth, student characteristics of age and GPA are negatively correlated with cheating.  Whitley (1998) reviewed 107 studies on college cheating (published since 1970), and found 16 studies reporting a small negative correlation between GPA and cheating and 10 studies reporting a negative correlation between age and cheating.
  • In the growing literature about online instruction there are two opposing views on the integrity of assessments. One view is that cheating is as equally likely to occur in the f2f format as in the online format of instruction.
  • The alternative view is that proctored exams are the only way to protect the integrity of grades by guaranteeing both that a substitute is not taking the exam and that students are not working together on an exam.
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  • Summary and Conclusions This study reports three principle findings.  First, from a survey of student opinion it is reported that 59% believe that the frequency of cheating is the same in both the online and the f2f instructional format. The proportion is significantly greater than 50% at the .05 level. It is also reported that the responses to the question of cheating and instructional format are significantly different depending on whether the student came from an online class or a f2f class, but only at a p-value of .1060.  Recalling the literature review in Table 1, which reported mixed findings by previous empirical studies, an interesting implication for future research is whether student experience with each instructional format influences student perceptions of differences in the frequency of cheating. Second, on proctoring and the frequency of cheating on essay exams and multiple choice exams, it is reported that roughly half of the respondents perceive unproctored assessments as having greater cheating risk than the same assessment in a proctored format, and half think they have equal cheating risk. These findings are consistent with the conventional perception that in a side by side comparison of two courses with comparable content and predominately multiple choice exam assessments, the course with unproctored exams is viewed as having greater cheating risk. Third, in our analysis of assessment design in 20 online courses it is reported that 70% base roughly half the course grade on unproctored multiple choice exams.     These findings imply that online courses, which have unproctored multiple choice exams, can reduce perceived cheating risk by proctoring some of their multiple choice exams without significantly altering the original mix of assessment types. Gresham’s Law suggests that online courses debased by assessment designs with high cheating risk will displace courses with relatively lower cheating risk. Institutions of higher education tone deaf to the issue of proctoring online multiple choice assessments may understandably find other institutions reluctant to accept these courses for transfer credit.  The benefit of proctoring is not without cost.  A proctored exam limits the spatial and the asynchronous dimensions of online instruction, which may have been the core reason the student enrolled in the online. These costs can be mitigated to some extent by early announcement of the time and date of the exam, by allowing for some flexibility of time of exam, and by permitting use of alternate certified proctoring centers. The costs to individual instructors are formidable but there are potentially significant economies of scale to be realized by integration of online courses with an existing system that administers proctoring of exams for f2f classes.  Proctoring of some multiple choice exam assessments will reduce cheating risk. The elephant in the room, however, is the cheating risk on non-exam unproctored assessments (for example term papers, essays, discussion, and group projects). These are widely used in f2f instruction and, as online instruction evolves, will likely become equally widely used in online courses. These assessments are valuable because they encourage learning by student-to-student and student-to-faculty interactions, and because they measure Bloom’s higher levels of learning. These assessments have higher cheating risk than proctored multiple choice exams. These assessments, more so than multiple choice exams, challenge the ability of faculty and administration to inspire students to behave ethically and to refrain from academic misconduct.
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    Two views on online assessment. Student and teacher opinions on online assessment. How to reduce cheating.
Jessica M

A Content Analysis Of Critical Thinking Skills As An Indicator Of Quality Of Online Dis... - 0 views

  • promote interaction and collab-oration
  • determining the quality of discussion andamount of participation of students in a coursecan be cumbersome to measure
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    Benefit and importance of online discussions between instructor, students, and each other
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