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Tiffany King

learning_theories_full_version - 1 views

  • Gagne also contends that learning tasks for intellectual skills can be organized in a hierarchy according to complexity: stimulus recognition response generation procedure following use of terminology discriminations concept formation rule application problem solving
  • Gagne also contends that learning tasks for intellectual skills can be organized in a hierarchy according to complexity: stimulus recognition response generation procedure following use of terminology discriminations concept formation rule application problem solving
  • Gagne also contends that learning tasks for intellectual skills can be organized in a hierarchy according to complexity: stimulus recognition response generation procedure following use of terminology discriminations concept formation rule application problem solving
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  • Gagne also contends that learning tasks for intellectual skills can be organized in a hierarchy according to complexity: stimulus recognition response generation procedure following use of terminology discriminations concept formation rule application problem solving
  • The following tutorial consists of five learning modules. Each module describes a learning theory and how that learning theory can be applied to improving online teaching and training materials. Each module features: a description of a well known learning theory; a practical example of how the theory and related strategies can be applied to a particular instructional objective or web-design problem; and a list of related pedagogical and web-design strategies as researched in the literature. This tutorial has been designed for MDDE 621 students studying in the Masters of Distance Education program at Athabasca University.
  • The primary significance of this hierarchy is to provide direction for instructors so that they can "identify prerequisites that should be completed to facilitate learning at each level" (Kearsley 1994a). This learning hierarchy also provides a basis for sequencing instruction. Gagne outlines the following nine instructional events and corresponding cognitive processes (as cited in Kearsley 1994a): gaining attention (reception) informing learners of the objective (expectancy) stimulating recall of prior learning (retrieval) presenting the stimulus (selective perception) providing learning guidance (semantic encoding) eliciting performance (responding) providing feedback (reinforcement) assessing performance (retrieval) enhancing retention and transfer (generalization)
  • The primary significance of this hierarchy is to provide direction for instructors so that they can "identify prerequisites that should be completed to facilitate learning at each level" (Kearsley 1994a). This learning hierarchy also provides a basis for sequencing instruction. Gagne outlines the following nine instructional events and corresponding cognitive processes (as cited in Kearsley 1994a): gaining attention (reception) informing learners of the objective (expectancy) stimulating recall of prior learning (retrieval) presenting the stimulus (selective perception) providing learning guidance (semantic encoding) eliciting performance (responding) providing feedback (reinforcement) assessing performance (retrieval) enhancing retention and transfer (generalization)
  • The primary significance of this hierarchy is to provide direction for instructors so that they can "identify prerequisites that should be completed to facilitate learning at each level" (Kearsley 1994a). This learning hierarchy also provides a basis for sequencing instruction. Gagne outlines the following nine instructional events and corresponding cognitive processes (as cited in Kearsley 1994a): gaining attention (reception) informing learners of the objective (expectancy) stimulating recall of prior learning (retrieval) presenting the stimulus (selective perception) providing learning guidance (semantic encoding) eliciting performance (responding) providing feedback (reinforcement) assessing performance (retrieval) enhancing retention and transfer (generalization)
  • The primary significance of this hierarchy is to provide direction for instructors so that they can "identify prerequisites that should be completed to facilitate learning at each level" (Kearsley 1994a). This learning hierarchy also provides a basis for sequencing instruction. Gagne outlines the following nine instructional events and corresponding cognitive processes (as cited in Kearsley 1994a): gaining attention (reception) informing learners of the objective (expectancy) stimulating recall of prior learning (retrieval) presenting the stimulus (selective perception) providing learning guidance (semantic encoding) eliciting performance (responding) providing feedback (reinforcement) assessing performance (retrieval) enhancing retention and transfer (generalization)
  • The primary significance of this hierarchy is to provide direction for instructors so that they can "identify prerequisites that should be completed to facilitate learning at each level" (Kearsley 1994a). This learning hierarchy also provides a basis for sequencing instruction. Gagne outlines the following nine instructional events and corresponding cognitive processes (as cited in Kearsley 1994a): gaining attention (reception) informing learn
  • EXAMPLE The following example applies Gagne's nine instructional events: Instructional Objective: Recognize an equilateral triangle (example from Kearsley 1994a). Methodology: Gain attention - show a variety of computer generated triangles Identify objective - pose question: "What is an equilateral triangle?" Recall prior learning - review definitions of triangles Present stimulus - give definition of equilateral triangle Guide learning - show example of how to create equilateral Elicit performance - ask students to create 5 different examples Provide feedback - check all examples as correct/incorrect Assess performance - provide scores and remediation Enhance retention/transfer - show pictures of objects and ask students to identify equilateral triangles.
  • EXAMPLE The following example applies Gagne's nine instructional events: Instructional Objective: Recognize an equilateral triangle (example from Kearsley 1994a). Methodology: Gain attention - show a variety of computer generated triangles Identify objective - pose question: "What is an equilateral triangle?" Recall prior learning - review definitions of triangles Present stimulus - give definition of equilateral triangle Guide learning - show example of how to create equilateral Elicit performance - ask students to create 5 different examples Provide feedback - check all examples as correct/incorrect Assess performance - provide scores and remediation Enhance retention/transfer - show pictures of objects and ask students to identify equilateral triangles
  • EXAMPLE The following example applies Gagne's nine instructional events: Instructional Objective: Recognize an equilateral triangle (example from Kearsley 1994a). Methodology: Gain attention - show a variety of computer generated triangles Identify objective - pose question: "What is an equilateral triangle?" Recall prior learning - review definitions of triangles Present stimulus - give definition of equilateral triangle Guide learning - show example of how to create equilateral Elicit performance - ask students to create 5 different examples Provide feedback - check all examples as correct/incorrect Assess performance - provide scores and remediation Enhance retention/transfer - show pictures of objects and ask students to identify equilateral triangles
  • EXAMPLE The following example applies Gagne's nine instructional events: Instructional Objective: Recognize an equilateral triangle (example from Kearsley 1994a). Methodology: Gain attention - show a variety of computer generated triangles Identify objective - pose question: "What is an equilateral triangle?" Recall prior learning - review definitions of triangles Present stimulus - give definition of equilateral triangle Guide learning - show example of how to create equilateral Elicit performance - ask students to create 5 different examples Provide feedback - check all examples as correct/incorrect Assess performance - provide scores and remediation Enhance retention/transfer - show pictures of objects and ask students to identify equilateral triangles.
  • The primary significance of this hierarchy is to provide direction for instructors so that they can "identify prerequisites that should be completed to facilitate learning at each level" (Kearsley 1994a). This learning hierarchy also provides a basis for sequencing instruction. Gagne outlines the following nine instructional events and corresponding cognitive processes (as cited in Kearsley 1994a): gaining attention (reception) informing learners of the objective (expectancy) stimulating recall of prior learning (retrieval) presenting the stimulus (selective perception) providing learning guidance (semantic encoding) eliciting performance (responding) providing feedback (reinforcement) assessing performance (retrieval) enhancing retention and transfer (generalization)
  • Gagne also contends that learning tasks for intellectual skills can be organized in a hierarchy according to complexity: stimulus recognition response generation procedure following use of terminology discriminations concept formation rule application problem solving
  • Gagne also contends that learning tasks for intellectual skills can be organized in a hierarchy according to complexity: stimulus recognition response generation procedure following use of terminology discriminations concept formation rule application problem solving
  • Gagne also contends that learning tasks for intellectual skills can be organized in a hierarchy according to complexity: stimulus recognition response generation procedure following use of terminology discriminations concept formation rule application problem solving
  • Simplify navigation.
  • Create effective menus.
  • Include indexes, table of contents, and search capabilities.
  • Pedagogical Practices and Practical Web-Design Strategies
  • Clearly identify content with appropriate headings and titles.
  • Place most important information on the top-left. Important information should go to the top-left.
  • Web is (Fahy 1999, 181-182): Easy to get lost in (users can get confused bouncing around from one link to the next) Unstructured Non-interactive (although this is changing) Complex (the amount of information on the Web is mind-boggling) Time-consuming (because it is non-linear and invites exploration. NOTE: Research by Thaler [1997, as cited in Fahy 1999, 181] shows that "employees in a 1997 survey reported spending an average of 90 minutes per day visiting sites unrelated to their jobs").
Diane Gusa

Taylor & Francis Online :: Formative assessment and self‐regulated learning: ... - 0 views

  • Formative assessment and self‐regulated learning: a model and seven principles of good feedback practice
  • can help students take control of their own learning, i.e. become self‐regulated learners. This reformulation is used to identify seven principles of good feedback practice that support self‐regulation.
  • This shift in focus, whereby students are seen as having a proactive rather than a reactive role in generating and using feedback, has profound implications for the way in which teachers organise assessments and support learning.
Kristie Rushing

Technology and Education Online Discussion Forums: It's in the Response - 0 views

  • participation in online discussion forums provides opportunities for responsibility and active learning through the expectation of regular participation in online discussions.
  • hey construct knowledge through the shared experiences that each participant brings to the collaborative discussions. The online web courses about teaching offer deeper perspectives and opportunities to learn because the participants are teachers from school districts around the state and other states.
  • This particular use of the discussion forum, to negotiate and construct knowledge, is an example of using the technology as a cognitive tool and not simply as another kind of blackboard or one-way communication method. Cognitive tools and environments stimulate cognitive learning strategies and critical thinking (Jonassen, 1998). Students engaged with course content in discussions and group work with other students engage in generative processing of information.
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  • his involves the processes of reflection and the construction and re-construction of domains of knowledge. The resulting kinds of learning from these processes are not a regurgitation of a lecture or reading. It is a negotiated interpretation of knowledge
  • The discussion forum environment evens the playing field of opportunity and accessibility.
  • The discussion forum makes active participation by all students the price of citizenship within this learning community.
    • Tiffany King
       
      What do you think about this? I found this an interesting way of putting it.
    • Diane Gusa
       
      Cool!
  • Students quickly discover that their peers are also holders of knowledge and they initiate discussions and respond to one another's postings
  • It is possible to feel invisible in an online discussion forum if no one responds to an individual's postings. Part of a course design should include a requirement that students respond to at least 3 or more students each week and at least 1 of those should be a student not previously responded to. This helps distribute the responses. Responses are a hook to student motivation to participate above and beyond grades.
  • They recommended that, "Instructors can encourage and model this behavior from the beginning of a course, thereby creating a safe learning environment of acceptance and trust. Activities that enhance sharing and cooperation can further develop openness and solidarity within groups." (McDonald & Gibson, 1998, p.21)
  • Web environments can make use of interactive components and educators should design and look for activities that are problem oriented, interactive, and engage students in an application of knowledge, principles, and values (Hazari & Schnorr, 1999).
  • he stage for disagreement within the discussion forum is also a motivation and invitation for students to become more engaged in the discussions.
  • instructors should have the syllabus developed and the course up and online before the first day of class
  • Instructors need to be a "presence" in the virtual conference center as they monitor the discussions and provide continuous guidance to students to focus on the course goals by utilizing a technique called "weaving". This is a skill that involves using a part of a student comment in a posting and re-directing it to the main topic without an explicit negative value judgment. Instructors in a discussion forum will set and maintain the type of language and tone used in the virtual conference center. It is harder to interpret the tone and therefore the meaning of a message without visual clues or the sound of a voice. Instructors fulfill a role like that of a list moderator as they support and give students guidance in communicating successfully within the environment.
  • Feedback has long been recognized as critical to the learning process and timely feedback is potent.
  • Feedback needs to be specific, personal, and within 24 hours of the posting.
    • Diane Gusa
       
      I think the syllabus should be sent out at least a week before the class starts. What do you think?
    • Kristie Rushing
       
      I find my self doing this. I am always corious what my classmates have to add to what I have posted.
  • The need for affection is also present in a virtual discussion forum. This need is characterized by trust, self-disclosure and willingness to reveal experiences, thoughts and interpretations.
  • challenging deeply held beliefs
  • These "getting-to-know-you" scenarios are as important as course content in reaching the goal of a collaborative community of learners. The instructor needs to be sensitive to this need and find a balance within the discourse.
  • If they are left dangling for days on end, they lose a feeling of connection and begin to feel lost in Cyberspace.
  •  
    Why use Disuccion boards in online education.
Diane Gusa

Instructional Immediacy and the Seven Principles: Strategies for Facilitating Online Co... - 1 views

  • Table 1. Seven Principles of Good Practice in Undergraduate Education, Chickering and Gamson (1986) 1. Encourage contact between students and faculty: Frequent student-faculty contact both in and outside of class is an important factor in student motivation and involvement. 2. Develop reciprocity and cooperation among students: Faculty should create and encourage opportunities for collaborative learning among students. 3. Encourages active learning: Faculty should require students to apply their learning in oral and written forms. 4. Give prompt feedback: Faculty should provide appropriate and prompt feedback on performance. Students need help assessing their current competence and performance, and need frequent opportunities to perform and receive suggestion for improvement. Such feedback should be an ongoing process in collegiate settings. 5. Emphasize time on task: Faculty should create opportunities for students to practice good time management. This includes setting realistic time for students to complete assignments as well as using class time for learning opportunities. 6. Communicate high expectations: Faculty should set and communicate high expectations for students. Such becomes a self-fulfilling prophecy for students and they often will rise to meet the challenge. 7. Respect diverse talents and ways of learning: Faculty should create learning opportunities that appeal to the different ways students will process and attend to information. Varying presentation style and assignment requirement will allow students to showcase their unique talents and learn in ways that work for them.
Diane Gusa

User:Arided/ParagogyPaper - Wikiversity - 0 views

  • 1. Context as a decentered center. "For learning design in a peer-to-peer context, understanding the learner's self-concept -- in particular, whether they see themselves as self-directed or not -- may be less important than understanding the concept of 'shared context in motion'." (See "Paragogy and basho", below.) 2. Meta-learning as a font of knowledge. "We all have a lot to learn about learning." 3. Peers are equals, but different. "The learner mustn't seek only to confirm what they already know, and must therefor confront and make sense of difference as part of the learning experience." 4. Learning is distributed and nonlinear. "Side-tracking is OK, but dissipation isn't likely to work. Part of paragogy is learning how to find one's way around a given social field." 5. Realize the dream, then wake up! "Paragogy is the art of fulfilling motivations when this is possible, and then going on to the next thing."
  • shared context in motion.
  • Knowledge creation in schools is the creation of knowledge by students for their own use. [
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  • The view of fluid social contexts advanced by Engestrom as a move beyond the traditional "communities of practice" view is quite compatible with the most famous peer production virtue, freedom (cf. ), which is what allows people to function in a distributed and nonlinear fashion relative to a learning or production "ecosystem". Star and Griesemer[16], on whom Wenger drew heavily as he was developing the idea of community of practice[17], describe their view as "ecological". One key difference between Star/Wegner on the one hand and Engestrom on the other has to do with the nature of boundaries. In the community of practice view, boundary objects exist to effect translations or initiations. In Engestrom's view, attention is drawn to boundaries that remain in flux (via an ongoing process of co-configuration) or which are blurred (e.g. by a blurring of consumer and producer roles).
  • the modules must be small in size (noting that heterogeneous granularity will allow people with different levels of motivation to collaborate by contributing smaller or larger grained contributions);
  • basho ("shared context in motion") can help us think about how a context constrains or supports different types of (inter-)actions, and also about how we (re-)shape the contexts we find ourselves in.
  • e encourage the research community to test our ideas in practice of various forms. Some ideas for paragogical design include: Establish a group consensus for expectations/goals/social contract of the course and how each of them should be evaluated at its conclusion. Have learners designate learning goals that they then commit to stick with. Formalize a process for assisting peers (e.g. responding to questions, giving feedback on publicly posted work). Develop explicit pathways for learner feedback to translate into changes to the learning environment
Diane Gusa

WPI Teaching with Technology Collaboratory - Encouraging Class Discussion - 0 views

  • Idea Center Assigning Multimedia Projects to Students Motivating Your Students Promoting Student Collaboration Gathering Student Feedback Enhancing Presentations Engaging Students Through Alternatives to Written Assignments Encouraging Class Discussion Benefits of Using Discussion Boards Improving Use of Discussion Boards Grading Online Discussons The Benefits of Learning Contracts Survey Design Best Practices Blended Learning How-To Center Learning Objects Faculty Technology Grants Distance Teaching Faculty Stories News & Events Technology Tips Contact Us Search ATC site only All WPI IT sites ATC Home Related Sites Distance Learning Morgan Teaching & Learning Center Encouraging Class Discussion
  • Learning objects spanning many disciplines are freely available on the Internet, especially at repository sites such as: MERLOT NEEDS EngApplets EOE Citidel Illumina Exploratories
Diane Gusa

WPI Teaching with Technology Collaboratory - The Benefits of Learning Contracts, and Ho... - 0 views

  • Idea Center Assigning Multimedia Projects to Students Motivating Your Students Promoting Student Collaboration Gathering Student Feedback Enhancing Presentations Engaging Students Through Alternatives to Written Assignments Encouraging Class Discussion Benefits of Using Discussion Boards Improving Use of Discussion Boards Grading Online Discussons The Benefits of Learning Contracts Survey Design Best Practices Blended Learning How-To Center Learning Objects Faculty Technology Grants Distance Teaching Faculty Stories News & Events Technology Tips Contact Us Search ATC site only All WPI IT sites ATC Home Related Sites Distance Learning Morgan Teaching & Learning Center The Benefits of Learning Contracts, and How to Design One
  • "Allowing students to decide which grade they wish to strive for, which activities they will engage in, and how they will demonstrate that they have satisfactorily completed their studies permits a teacher to seize upon powerful motivating forces within individual students ... This notion shifts responsibility for learning from the teacher to the student, but at the same time offers an incentive by insuring success under known conditions. Students are challenged without being threatened." (Frymier, 1965)
  •  
    "A learning contract is a collaboratively written agreement between a student and a faculty member that delineates what is to be learned, how it will be learned, and how that learning will be evaluated. There are many different ways to design a learning contract, incorporating as many or as few elements as you wish. Despite this flexibility, there is a general format which the majority of learning contracts follow: Identify what content will be learned Specify the methods and strategies that will be used to learn the content Specify resources to be used in order to learn the content Specify the type of evidence that will be used to demonstrate learning Specify how the evidence will be validated, and by whom"
Diane Gusa

Adult Learning Theory and Principles - 0 views

  • equality between the teacher and learner.
  • Set up a graded learning program that moves from more to less structure, from less to more responsibility and from more to less direct supervision, at an appropriate pace that is challenging yet not overloading for the student.
  • Develop rapport with the student to optimise your approachability and encourage asking of questions and exploration of concepts
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  • Lead the student toward inquiry before supplying them with too many facts.
  • Provide regular constructive and specific feedback (both positive and negative),
  • Acknowledge the preferred learning style of the student
Karin Bogart

http://www.tirfonline.org/wp-content/uploads/2012/12/TIRF_DDG_2010_Olesova_Final.pdf - 0 views

    • Karin Bogart
       
      Audio feedback is suggested to be very effective for EFL students.
Diane Gusa

Evolution of an e-Learning Developers Guide by Mike Dickinson : Learning Solutions Maga... - 0 views

Diane Gusa

Productivity and online learning redux - 2 views

  • Instructional MOOCs (xMOOCs) have basically removed learner support, at least in terms of human (instructor) support, but this has resulted in a very low number of MOOC learners passing end-of-course assessments of learning. Indeed, prior research into credit-based learning has established that instructor online ‘presence’ is a critical factor in retaining students. So far, it has proved difficult to scale up learner support on a massive scale, except through the use of computer technology, such as automated feedback. However, Carey and Trick (2013) and indeed faculty at elite institutions who are offering xMOOCs (see Thrun and ‘the Magic of the Campus‘) have argued that such computer support does not support ‘the learning that matters most’.
  • computer-based approaches to learner support to date has been inadequate for formal assessment of higher order learning skills such as original, critical or strategic thinking, evaluation of strategies or alternative explanations.
  • In cMOOCs that are more like communities of practice and thus contain many participants with already high levels of expertise, that expertise and judgement can be provided by the participants themselves
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  • ‘disruptive’ innovation, where a new technology results in sweeping away old ways of doing something.
  • Thus knowledge management becomes more important than mere access to knowledge. If we look at xMOOCs though we have taken a new technology – video lecture capture and Internet transmission – and applied it to an outdated model of teaching. True innovation requires a change of process or method as well as a change of technology.
  • .Content is only one component of teaching (and an increasingly less important component); other components such as learner support and assessment are even more important. Care is needed then because changes in methods of online content development and delivery could have negative knock-on cost and productivity consequences in other areas of course delivery, such as learner support and assessment. I
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