Presented by Brett Cristie - Lets talk about Universal Design for Learning because we are talking about course redesign.
Accessible Technology Initiative
From a Jan. 1, 2006:
"Information Technology Procurement and Accessibility for Individuals with Disabilities"
Instructional Materials Accessibility
Are My Course Materials Accessible?
Your syllabus is the gateway, it should serve as a map and compass
If not accessible, some students will be at a disadvantage
There are simple things that you can do to make things in your course more accessible (using styles, etc.).
Textbooks and course readers should be accessible
Video and audio resources need to be captioned or transcribed
Library electronic reserves and internet resources that are used in classes should be accessible
Learning management systems - the ones that that we use are all basically accessible.
We have a state-wide contract with AutoSync that brings down the captioning cost to $1.35 a minute.
We have resources at at the Chancellor's offce here: http://teachingcommons.cdl.edu/access/ and on Universal Design for Learnin ghere: http://udluniverse.com
THIS BLOG IS HERE FOR HISTORICAL PURPOSES ONLY - IT IS CONTINUED AT WWW.GEOFFCAIN.COM
Tuesday, October 22, 2013
Biology eAcademy: Principles of Biology
| Extracted from file:LA2-NSRW-1-0230.jpg Brown bear sketch from scaned textbook (Photo credit: Wikipedia) |
ALS Goals
Make it easy for faculty, staff, and students to find no/low cost course content that can substitute for more costly textbooks
The chancellor's office if funding efforts for low or no cost textbook solutions.
Many instructors do not know that college librarys may already have free etext copies of textbooks for students.
We also looked at MERLOT http://www.merlot.org - they have gone through a refresh. The site was updated this year.
Textbooks are getting more expensive - the Biology textbooks are basically huge reference books. The online textbook was actually created completely online - it is not a
Nature was founded in 1869 - Scientific American was founded in 1845. They have 70+ journals in the life, physical, and clinical sciences. Their package includes Scitable. the CSU piloted this with 17,000 users.
Affordability - 39.50
Customizability
All in one solution
Student Success and Retention
Value
The technology landscape is changing - this is accessible to computers, tablets, and phones. This textbook built from the ground up as a digital work. The partnered with faculty from the beginning as a teaching tool by CSU faculty members.
Digital textbook sales are increasing
An instructor in the room said that she used it and it was not ready.
A majority of the CSU students were not buying any textbook because the Campbell book was too expensive. The faculty would rather work around the quality issues than deal with the high price of textbooks.
It will link to Moodle with its assessments.
Biology eAcademy: SmartScience Demonstration & Exploration
History of SmartScience - http://www.smartscience.net/SmartScience/SmartScience.html
What makes a great science lab experience? Edmund Hall wrote a book on science on teaching science - gave an ideal vision. A good experience:
| English: Students completing a lab experiment in Fisher Hall. (Photo credit: Wikipedia) |
What makes a great science lab experience? Edmund Hall wrote a book on science on teaching science - gave an ideal vision. A good experience:
- Proper background and context
- Inquiry style learning
- Data measurement and analysis "hands on"
- After the lab, cement the learning
- Accessible and effective
- It will not do everything you want it to do but it will do what it does well.
- Students choose an experiment
- Allows students to create a hypothesis
- Analyze results and write a report
- Offering virtual labs for a number of possibilities - use them for what you need them for
- An online lab keeps the sensibilities of real science
- Customizes lab experience per professor
- Some analytics
How It Works
SmartScience is is in Java and is now in an HTML 5 version that is mobile and tablet friendly.
Each module has a reading, warm-up questions (to prepare the student for the lab), the students watch a video, they then make a hypothesis (they can add hypothesis), they then watch a video that gives them the results of the experiment, students can click on the screen to make selections and gather data, the data is automatically plotted. The method asks the students to analyze the data to see if their hypotheses were supported. There is a final assessment - multiple choice questions about the data. The assessments are automatically corrected and will include feedback. The students write a lab report. The students writing and assessments are bundled up into a .pdf for the instructor.
Students can also decide to perform the experiments at home, upload their data, and a picture.
Students can also decide to perform the experiments at home, upload their data, and a picture.
Instructors can pre-write hypotheses.
Built in vocabulary (glossary) tool.
Each lab includes a profile of a scientist.
One instructor asks the students to keep working on their lab reports until they get an A.
Let us know if you want to be in the pilot - there is one in the CSU
Supply them with name, campus, courses - they will then create a campus site for us.
The instructors create their own course pages. Faculty can look at the data from the experiment, the reports and assessments. Teachers then can add scores and comments.
Discussion - an instructor points out that the images need to not be orphaned. They need a legend and figure description.
Discussion - an instructor points out that the images need to not be orphaned. They need a legend and figure description.
Biology eAcademy: Further Discussions on Teaching with Simulations
| Students in the incubation room at the Woodbine Agricultural School, New Jersey (Photo credit: Center for Jewish History, NYC) |
Nathan A. has used the fly lab since 1995. He found it useful and the students found it challenging. He used it in a junior level genetics course to map genes. The key to the success is the support materials. The "teaching commons" will be an important piece in getting the right curriculum to the right students. He also like the report feature. It is a good exercise in how to create a lab report. They suggest creating a stand alone program just for lab reports.
Some of the exercises presented are complex, but instructors should be able to scaffold the experiments to help the students through the work. The preparation of materials takes time because there is a self-guided aspect to some of the online learning.
The discussion really speaks to the fear that somehow online learning will eliminate instructors but what we have seen here is that the role of the instructor as a guide through the experiments is essential. The creation of materials, the design of accompanying assignments, focusing the assessmemts all require a high level of faculty engagement.
Michael C. suggested that we create modular tools that would allow us to create our own experiments.
Biology eAcademy: How to Teach with Virtual Labs
| EPA GULF BREEZE LABORATORY, THE MICRO-BIOLOGY LAB. TAKING A BACTERIA COLONY COUNT - NARA - 546274 (Photo credit: Wikipedia) |
The online tools are only as useful as the assignments - the lecture before its use and the template for the lab report is just as important as the online tool. The online tools are simple but the assignments are complex.
Simulations are particularly useful for teaching evolution.
Paul discussed the "flipped lab" model - the students meet in a lab with an assistant and go back to the classroom to discuss what happened in the lab. The flipped lab model allows students to go home, run different sets of data and then bring the data back to the class to compare in groups.
The instructional design piece is not in the online tools but in the assignment development and built-in support. The students will need extensive introductory materials for these simulations. Students need a solid template for a lab report and a detailed rubric to let them know what should be included in the report. All of this really underscores the importance of the guidance whether direct or indirect of the instructor.
Some concerns were raised about accessibility for various platforms. There is plenty of documentation in their Moodle site.
These tools would be useful in an active learning situation where we ask the students to make a hypothesis about what will happen as a group.
Biology eAcademy: Introduction to Virtual Labs
| Figure 3 (Photo credit: Libertas Academica) |
Paul is from Cal State LA. He was hired as "Biology Educator" - he focuses on education. They are focusing on GE Biology - they have a plant and animal bio. They have also converted to the semester system. They are planning on combing plant and animal into a single course. The course is an experiment. They will have data by the end of the year.
Problem
GE Biology is faciltiy and labor intensive with a steady drop in their student success rates.
They are replacing wet labs with online simulations. Thoughtfully implement online labs:
- Engaging students in scientific methodology
- Reducing demand for lab facilities
- Decreasing costs
- Addressing both facility and pedagogical bottlenecks
Project Plan
Overview
- Redesign GE Biology courses - conversion to semesters
- Two new modes of lab instruction vs. trad
- All labs offered online
- Two tracks online and wet labs alternating every week
- Both modes = :-) to :-) (Lecture and drop-in times)
- Labs are staffed with advanced students
- Engaging inquiry based exercises vs. traditional "cook book" labs
- Grading rubric for each online lab
Project Activities
BIOL 144" Animal Biology (future blend with plant)
Retain large lecture
Labs
- Fall 2013 (two large lecture sections and 16 all onlkne lab sections with 24 students in each lag with 6 GAs @ 10 hrs a week)
- Winter 2014 - One lecture secion and 8 traditional "wet" labs = 24 students /lab with instructor
- Spring 2014 - Two large lecture sections and 16 hybrid lab sections = 24 students /lab simulation results are idealized; lack of reality
- Five of the weekly labs offered online - others wet labs
- Eight of the 16 sections will start with wet labs and then alternate
- Three GAs will be hired at 10 hrs a week
Lab Handouts
- Distributed via Moodle
- Background information
- Detailed assignment instructions
- Assignment requires experiment and interpretation the results in a quiz
- Students create a report and turn it in to Moodle
- Reports are graded via a detailed rubric
Project Resources
They are using an online website both "Biology Labs On-Line" and "SmartScience Labs."
Projects Assessment
Ji Son, PhD is the project evaluator
Implementing survey tools
Several questions are being addressed including student satisfaction and performance.
- Which delivery mode to students prefer?
- Which model provides the best understanding of science?
- What problems to students encounter most?
- What could be improved?
- Do online labs lead to better grades?
There was a discussion about training GAs (graduate assistants).
Potential for Reducing Bottlenecks
- GE requirement
- Courses are limited by space and personnel costs
- Each lab section has 20-25 students and requires an instructor
- Offering labs for evening students is an additional challenge
- Online labs allow increase in enrollments
- Less need for lab facilities
- Less personnel needed
- Costs of personnel and facilites can be lowered by 44% by using virtual labs
Pedagogical Bottlenecks
- These courses are challenges for non-majors who often view science as a static body of facts
- Cookbook labs with no engagement
- Online labs allow students to design their own experiments
- Students enjoy the online labs
- Results in better student engagement
Scalability and Sustainability
All projects available via STEM Labs and MERLOT
We participated in a demonstration of "Biology Labs Online" http://BiologyLabsOnLine.com
We have used this model before with Health Information Management - we used online simulations to provide students with more opportunities to practice procedures.
Related articles
- Smart Science New Era in Science Education (tech4classrooms.org)
Monday, October 21, 2013
Biology eAcademy: SmartSciece and Virtual Labs
| Charles Darwin as a young man, probably before the Galápagos visit (Photo credit: Wikipedia) |
Robert Deshamais has been working on online labs since the 90s. He started building PC software and then moving it onto the web. Cal State La is using virtual labs. They are teaching a non-majors with a virtual lab. They are experimenting - in the winter quarter they are doing traditional wet labs and they will compare it with the same sections with the virtual labs. They hired an independent assessor.
Virtual Labs are available online, interactive and hands on, and come in a variety of forms: simulations, interactive video, remote access to real time data, remote control experiments.
Why use virtual labs?
Improve pedagogy: add opportunities for inquiry-based learning, address difficult lab topics (e.g. evolution), allow students to learn from mistakes, better engage students.
Improves convenience
Address bottlenecks - increase section offerings, less demand for limited lab facilities, lower personnel and equipment costs. This can also lower course repeat rates.
Advantages and Disadvantages
Advantages
- Improve pedagogy: students can learn by designing and carrying out their own experiments
- Reduce time and safety constraints
- Immediate feedback; mistakes are OK
Disadvantages
- No hands on with equipment & methods
- Simulation results are idealized
- Lack of instructor to guide students
- Relies on student self-motivation
Two Labs with Different Approaches
EnzymeLab - website with a mini manual written around the site - a java applet. It is a simulation that allows students to gather data. It is used in Intro to Biology classes at the college level but also used in High Schools. Advantages include that students can explore by designing their own experiments. Disadvantages include idealized and cartoonish, yet too much for non-majors.
SmartScience - also written in Java but a more modern program. Includes about a dozen labs. With every activity there is background, warm-up material, and some focusing questions. They play a video and ask the students to form a hypothesis. They can write one or they can supply a hypothesis. They call the video an observation video. They video-taped a wide-variety of experiments with different variables. The students can click on the experiment and gather the data from their own actions.
Virtual STEM Labs Teaching Commons
These are two different tools - the important thing is to choose the right ones for the job. We need help in learning how to choose the appropriate tools.
- Faculty can share pedagogical innovations
- Share resources
- Connect with colleagues
Concerns and Discussion
Instructors concerned included the view that you can only learn science in a lab. But another instructor pointed out that much research takes place in computer simulations. Another view is that wet labs are often just "cook book" classes. Faculty are worried about students cheating. They discussed the accessibility issues.
Biology eAcademy: What Inspired Me to Teach Online
What Inspired Me to Teach Online - by Bob Giacosie
Evolution of a dynamic classroom.
1. Follow role models using the lecture method
2. Entertaining questions from students and then using the socratic method
Students had to explain what the instructor was just talking about. He did this as a form of his own self-assessment as a teacher.
3. Short discussions in class
These short discussion s were meant to facilitate critical thinking and teach problem-solving skills.
4. Adding research based written assignments
5. Began to use cooperative learning strategies/group learning-teaching/learning strategies.
Students would chose topics and research for seven weeks and then do a presentation. When we are involved in our own self-learning we learn better. It became one of the most popular courses on campus.
The Path to Offering Online Courses
1. Research the fear of Math and Science
2. Teaching college faculty to be better teachers
3. We need to do more than put a warm body in the classroom - we need to improve teaching and learning of science.
4. His early thinking on online learning is that there was no way they could be competent.
The face-to-face expereince could not be reproduced. Then 10 years ago a friend had a daughter who went to an online high school.
He became a proctor for her exams and then began to tutor the student. He was very impressed with the content and rigor - it was equal to the work of his best teachers.
He also found that there was an academically rigorous chemistry class at Dominguez Hills.
He looked at commercial colleges and was not impressed. He found that online courses from RA accredited brick-and-mortar courses where very different and taught by well-qualified, experienced faculty. Non-accredited degree mills.
His frustration with Dominguez Hills was that despite that there were a lot of online courses, there were none in sciences. He began to look at other online programs from across the country: they were poorly taught, poorly constructed, and very expensive.
Real teachers, well-trained teachers, who know how to engage their students are better able to translate their class room experience to the online format.
At Dominguez Hills, inadequate workload allocations didn't allow frequent enough offerings for the students. The courses often conflicted with other courses the students would need for their major. The students needed a more flexible schedule. Online classes were an answer to this.
The Reaction? Who teaches science online? He was allowed to teach two online courses. He found the student-student interaction to be very important. The courses had high enrollment - students like the course because it was convenient to their schedule. He brought all of the principles of engagement from his face-to-face class into his online courses.
Important Components to the Course
1. Flexibility for the students in all aspects of the course
2. Detailed class notes/worksheets keyed to a great text
3. Written assignments based on the latest scientific literature
4. Opportunities to engage in discussions and exchange ideas regarding research and literature.
5. Regular and extensive communication with students through email and phone on all aspects of content and process
He does not just use tests - he always uses discussion forums in online Biology courses. The students need to be able to communicate what they learn.
He says that you cannot teach an online course with high enrollments. He said that he would never teach an online course with 120 students.
His objective for going online was to serve his students in ways that he couldn't any longer.
Related articles
Evolution of a dynamic classroom.
1. Follow role models using the lecture method
2. Entertaining questions from students and then using the socratic method
Students had to explain what the instructor was just talking about. He did this as a form of his own self-assessment as a teacher.
3. Short discussions in class
These short discussion s were meant to facilitate critical thinking and teach problem-solving skills.
4. Adding research based written assignments
5. Began to use cooperative learning strategies/group learning-teaching/learning strategies.
Students would chose topics and research for seven weeks and then do a presentation. When we are involved in our own self-learning we learn better. It became one of the most popular courses on campus.
The Path to Offering Online Courses
1. Research the fear of Math and Science
2. Teaching college faculty to be better teachers
3. We need to do more than put a warm body in the classroom - we need to improve teaching and learning of science.
4. His early thinking on online learning is that there was no way they could be competent.
The face-to-face expereince could not be reproduced. Then 10 years ago a friend had a daughter who went to an online high school.
He became a proctor for her exams and then began to tutor the student. He was very impressed with the content and rigor - it was equal to the work of his best teachers.
He also found that there was an academically rigorous chemistry class at Dominguez Hills.
He looked at commercial colleges and was not impressed. He found that online courses from RA accredited brick-and-mortar courses where very different and taught by well-qualified, experienced faculty. Non-accredited degree mills.
His frustration with Dominguez Hills was that despite that there were a lot of online courses, there were none in sciences. He began to look at other online programs from across the country: they were poorly taught, poorly constructed, and very expensive.
Real teachers, well-trained teachers, who know how to engage their students are better able to translate their class room experience to the online format.
At Dominguez Hills, inadequate workload allocations didn't allow frequent enough offerings for the students. The courses often conflicted with other courses the students would need for their major. The students needed a more flexible schedule. Online classes were an answer to this.
The Reaction? Who teaches science online? He was allowed to teach two online courses. He found the student-student interaction to be very important. The courses had high enrollment - students like the course because it was convenient to their schedule. He brought all of the principles of engagement from his face-to-face class into his online courses.
Important Components to the Course
1. Flexibility for the students in all aspects of the course
2. Detailed class notes/worksheets keyed to a great text
3. Written assignments based on the latest scientific literature
4. Opportunities to engage in discussions and exchange ideas regarding research and literature.
5. Regular and extensive communication with students through email and phone on all aspects of content and process
He does not just use tests - he always uses discussion forums in online Biology courses. The students need to be able to communicate what they learn.
He says that you cannot teach an online course with high enrollments. He said that he would never teach an online course with 120 students.
His objective for going online was to serve his students in ways that he couldn't any longer.
Related articles
- 9 Tips For Finding And Actually Completing A Free Online Class (businessinsider.com)
- Coursera hits 100 partner milestone on its journey to make higher-ed open to anyone (venturebeat.com)
- Mooctivity Launches Central Platform to Access Online Courses (prweb.com)
- University considers online courses (tuftsdaily.com)
Biology eAcademy: Preliminary Meeting
| Charles Darwin (1809-1882) (Wikipedia) |
Kathy Fernandez opened the meeting today to talk about 21st century learners: she says that students are used to immediate feedback, media rich environments, and instant access to information and data. We can be skeptical about online learning, but as instuctors, we should be curious and willing to explore. We have new tools and approaches. Students are used to a high level of engagement. Our eAcademy is a way to create a learning community (this is phase 2 of the eAcademy). There are professional learning communities coming out of the eAcademys. We are here to explore, connect, and engage with one another. Common topics on Course Redesign includes: quality online teaching and learning aligning outcomes with assessment.
Gerry says that he does not want to have this be a top down project from the Chancellor's office. He wants this to arise from this faculty community. He wants us to be skeptical - we have to look at the evidence and real measures.
CSU wants to increase on achievement and graduation rates. We need to use course redesign but also analytics. Kathy Fernandez says that we gather over 200 mb of data in our ag research on cows but gather very little data on our students. The CSU wants to use live data sources for decision making. Learning analytics covers activity in a course LMS, gathering real-time data every 24 hours, to provide a quicker
"Learning analytics is the measurement, collection, analysis and reporting of data about learners and their contexts, for purposes of understanding and optimising learning and the environments in which it occurs." - George Siemens.
Kathy then shared a case study on a team taught intro to religion course that was converted to a hybrid course. The course had over 370 students. There was a 10 percent increase in students getting higher than a C, but there was also an increase in students who got F's. They then used data from the LMS and then demographic data from PeopleSoft. The tools they used were Excel, Tableau, Stata, IBM spss, and R. Blackboard and Moodle (Martin Dougiamas) are working on other tools. They found that final grade and LMS use were significant factors. Things like "first in the family to go to college" was less significant than use of the LMS for the grade. "At risk" students was not a significant factor.
Micheal: Accessing an LMS is a learning activity, simply being something isn't.
But at-risk students had to work harder to get the same grade. It is harder to get a B as an under-represented minority and Pell elgible student.
The question for us is: How do we reach these students?
She talked about Blackboard learning analytics. The CSU has a STEM grant for student analytics. We need analytics tools for all of our LMSs. Analytics tools will show us how they are engaging in the course.
We had a discussion about whether students are ready for online learning and how to prepare them.
We then discussed how to communicate with at-risk students.
For Moodle - there is a program called "X-Ray Research" SRL. It creates a data dashboard.
Friday, September 13, 2013
MOOCs and Student Support
| Internet Penetration (% Population). Red indicates no statistics available. (Wikipedia) |
In another look back to the 90s, I am really concerned about so-called "MOOCs" that are massive, not particularly open, online courses that are based on a one-way distribution of information and then tests. This is a huge step backwards. Especially when there are such better models out there such as Stephen Downe's and George Siemens' Connnectivism and Connective Knowledge MOOC or Jim Groom's project-based DS 106. There are all of these great models out there (often called "cMOOCs") but the ones that get all the attention are the ones supported by the Ivy Leagues and a lot of grant money. The entire MOOC phenomena is being judged by players like Sebastian Thrun who just figured out that online students need student advisors, mentoring, and tutors. These are things that many people have been writing about and more importantly doing for years now. In the article "Udacity CEO Says 'Magic Formula' is Emerging," David Carr reports:
Thrun's magic formula is not a fully automated online class featuring prerecorded videos and Web-based assessments. In other words, it's not a MOOC at all. To get better results, he said, "We changed the equation and put people on the ground." By adding mentors and a help line, and making phone calls to remind students to do their work, Udacity found it could get more students to do the work, finish the course and pass. Longer term, he has some ideas about using adaptive learning software to eliminate some of this labor, but for now it takes manpower.
The press, publications like the Chronicle of Higher Ed and Information Week are now defining MOOCs by such phrases as "a fully automated online class featuring prerecorded videos and Web-based assessments." This is not innovation, at least, not innovation in education. It may be an innovation in platform building, fund raising, or grant writing, but it is not an innovation in education. Real online courses and truly massive, open, online courses are engaging, interactive, and focus on building learning communities and networks. There is a rich body of literature and research that discusses the importance of student advising and support. If it has taken this long for Udacity to figure out what we all learned about online education in the 90s, I don't think I will live long enough to see them figure out the importance of learning communities and PLNs.
But it is not enough just to be against something. I am going to keep using the term MOOC even though the term is missapplied by the press and highly funded institutions and businesses. We need to keep building instances of MOOCs that counter the prevailing notions. I will be posting updates here as I continue to work on the eLearning 101 MOOC.
Related articles
- Four Steps to Getting MOOCs Right (cain.blogspot.com)
- The underlying inequality of MOOCs (downes.ca)
- Professors Still View MOOCs Skeptically (scientificamerican.com)
- Why MOOCs aren't all they're cracked up to be (thinkdreamfly.wordpress.com)
Tuesday, August 13, 2013
Time Saving Tips for Teaching Online
| Time Selector (Photo credit: Telstar Logistics) |
Note: this is an update of a post from 2012 that adds tips that teachers have sent in since then. Thanks everyone! Here are some of my favorite time-saving tips. Please add to them through the comments or via email.
1. Create a "Welcome Letter" that not only introduces the instructor and the course but gives detailed instructions on how to access the course and where to get help. Here is our example from DE 101.
2. Create a comprehensive syllabus. Utilize a "Week Zero," a module that explains to new students how to be an online student and use the learning management system (LMS). Direct students to tech support and the help desk as much as possible. Use the syllabus to let students know how to find tech support, tutoring, and a librarian. If your college does not provide online tutoring for students, be sure to check out OpenStudy which provides free, facilitated, online peer tutoring.
3. Use a syllabus quiz. Creating a quiz or syllabus scavenger hunt will help students understand how your course is organized and where to find help. I found this to be even more effective if it were worth a few points.
4. Make your course easy to navigate. Keep as much content as you can no more than two clicks away. Use a consistent format week-to-week or module-to-module. Remove buttons or tools you are not using.
5. Schedule your time. Do not work on your online course because you can; work on it because you have scheduled the time. Let the students know your schedule. Access your course consistently (e.g. three times a week) and respond to email promptly (with-in 48 hours).
6. Be strict about forms of communication. If you give students multiple email and messaging accounts to contact you, be prepared for students to use them. Some instructors do not receive class related email but take course related questions only through the learning management system. Some will only use email. Some only take assignments in drop box. Make sure you are clear about how you want to be contacted.
7. Automate your course as much as possible. Take advantage of the time-release feature of announcements and other content. Record and reuse lectures. Let the learning management system handle as much of the grading as you can.
8. Distributing and exchanging documents. Use the assignment feature of your LMS instead of e-mail. Encourage students to share documents using Google Docs or Dropbox.
9. Centralize question and answers. Use a discussion forum for “Frequently Asked Questions.” Create a FAQ page. Ask students to ask questions in the forum rather than e-mail.
10. Use online groups with a deliverable Let the students do the work. Do not respond to every posting, respond to the group deliverable.
11. Use a "common responses" file to quickly paste in answers to common questions. This file can be a Google Docs file that you can open on any computer.
12. Allow students to facilitate online discussions. Giving students an opportunity to discuss what they have learned in their own voice can really help students learn.
13. Use a detailed grading rubric to help answer questions in advance. Teachers can create rubrics online using tools like RubiStar.
14. Encourage student-student interaction and study groups. Give them the space to solve problems.
15. Communicate to entire class in general terms using audio and/or video on a regular basis. Try to anticipate problems or sticking points in a class and record a video to address these issues. We like to suggest tools like Screencast-o-Matic. A YouTube account is also very handy.
Bonus: There is a great resource from Dennis Thomas O'Connor, "Time Management Strategies for Online Instructors," that he sent to me in the last incarnation of this post.
What about you? How do you streamline your online teaching process? Leave a comment below if you have any time saving tips.
Related articles
- The Power of Teaching Online (pluralsight.com)
- Courage to Teach Online (bwatwood.edublogs.org)
- Challenges of Teaching Online-Extreme Weather Edition (realdrlaura.wordpress.com)
Thursday, August 08, 2013
Are You Ready for Online Learning?
If you are new to online learning, you might be wondering what skills you will need to be successful in your online classes. Students are often surprised at the fact that they already have some of the main skills it takes to be successful as an online student. Many of the skills that you need to take online classes you can learn as you take the classes; there are, however, some differences. The seven factors below are some of the considerations you may want to keep in mind as you take online classes.
1. Time Management
Time management is very important in online courses; be sure to download the course calendar and keep it near your computer. Keep "to-do" lists and take advantage of any calendar and alarm functions on your phone or computer. You can use online calendars like Google Calendar. Take some time to develop a system. Students tend to take online classes because they want to take advantage of the flexibility it gives their schedule.
2. Academic Rigor
Often, students new to online classes expect them to be easier than face-to-face classes. Classes online are just as academically rigorous as face-to-face. Online classes require the same amount of effort as traditional courses, sometimes more; the convenience is that you can select (to an extent) when you show up in the course environment. They may require a little more for some students as they learn the technology. Online courses can rely heavily on reading assignments, written lecture, and written communication in groups. If you learn best by reading, then you have an advantage in an online environment.
3. Communication Skills
Online classes are primarily text-based environments. Communicating online lacks the visual cues we are all used to in conversations; be specific when you ask questions and don't assume that someone else can tell when you are joking. Remember to take a few moments to check spelling and grammar, as this it will affect the impression you create with your peers and instructor.
4. Technology Skills
You do not have to be an expert in technology to be successful in an online class. You should be comfortable navigating the internet, using email, and attaching documents to email. Technology skills are not a barrier to your success: just as you learned how to be a face-to-face student, you can learn to be an online student. Be sure to check out the minimum technology requirements recommended by your school's distance education department. As you take online classes you will become more comfortable with online technology. You can't "break" anything in your online class. Go ahead and click all the buttons and get use to the environment. Take the time to find out what kind of tech support is available to you and keep that information handy.
5. Networking Skills
Online learning is a social environment. Participate in your class. Online learning is about connections you will make with your instructor, your fellow students and the course content. Take some time to read about your instructor in the faculty area, and be sure to ask for a face-to-face or virtual office hour if you feel you aren't getting the information you need in the online environment. Be sure to give some extra effort to all the group activities, discussion forums, or social lounges offered in the course. The real learning in your online courses comes in the connections you make with your instructor, fellow students and the content of the class. Use social media like Twitter and Facebook to help other students create learning networks - study groups and connections that will follow you throughout your academic and professional career.
6. Critical Thinking Skills
The same kind of critical thinking skills that are required in paper-based research is required online. You will need to remember that not all sources on the internet are equal as far as academic credibility is concerned. The same citation questions for paper-based research apply online: what are the author's credentials? What is the author's purpose in writing? Is the author an expert in his or her field? Remember that as an online student, you have access to a librarian for guidance by phone or email. Consult your college webpage for the reference librarian's contact information. Your college may even have a librarian that specializes in online learning or internet research.
7. Motivation
The habits that you developed to be a successful face-to-face student are also required in online learning. Online learning requires a little more discipline. Online classes are generally not to self-paced classes and participation can be a major factor in your success as an online student. Typically, as an online student, you will need to check in with your class at least three times a week and take time to do your assignments completely and thoughtfully. Ask questions if you do not understand an assignment. Go into the discussion forums and see if there are students forming study groups (or form one yourself). Set course and personal goals in your calendar and don’t forget to reward yourself or celebrate your accomplishments. Remind yourself why you are taking classes online and keep fixed on your goals.
By keeping in mind these seven factors, any student can successfully take online courses.
Related articles
- Four Steps to Getting MOOCs Right (cain.blogspot.com)
- Three Things Students Hate about Online Learning and Rightfully So (ctasit.com)
- Why I Hated THIS Online Class and Not THAT One. (curiouslybored.wordpress.com)
Monday, July 29, 2013
Nomic: Interactive Gaming Online and Off
| Peter Suber in Golm bei Potsdam (Wikipedia) |
Peter Suber, the inventor
of Nomic, wrote “If law-making is a game, then it is a game in which changing
the rules is a move.” (This is from the appendix to his book The Paradox of Self-Amendment: A Study of Law, Logic, Omnipotence, and Change (1990).) A version also appears in Douglas Hofstader's excellent book Metamagical Themas. Nomic attempts to model the self-amending character of a
legal system. Self-amendment is only a small part of any set of laws, but
capturing it in a game can create a useful model of a functional legal system.
Rules are made
by a rule-governed process that itself is governed by rules. The process of
making and changing rules can effect some of the rules that govern the process
rule-changing itself. Peter Suber calls this the “paradox of self-amendment.”
In a legislative
body, like the U.S. Congress, most of the rules that govern the making of laws
are constitutional and beyond the reach of the power they govern. Congress can
change its parliamentary rules, committee structure, and irrevocably bind its
future action by its past action, but through mere statutes it cannot override
a presidential veto, abolish one of its houses, start a tax bill in the Senate,
or even delegate too much of its power to experts.
When a conflict
exists between different laws, the constitutional rules always prevail. This
logical difference is matched by a political difference: the logically prior
(constitutional) rules are more difficult to amend than the logically posterior
(statutory) rules. That these two differences occur together is not accidental.
One purpose of making some rules more difficult to change than others is to
prevent a brief wave of fanaticism from undoing decades or centuries of refined
structure. It is self-paternalism, our chosen insurance against our anticipated
weak moments.
Below is an example of how we played Nomic in class. It was meant to take place in a single class meeting face-to-face (hence the short version of the rules) but it tended to go on longer, especially hybrid courses where students could resume the game online in a discussion forum. You will want to read Peter Suber's appendix to his book (actually the whole book is great) and decide for yourself what should be included in a minimal set of rules. I printed everything below this for the class:
Below is an example of how we played Nomic in class. It was meant to take place in a single class meeting face-to-face (hence the short version of the rules) but it tended to go on longer, especially hybrid courses where students could resume the game online in a discussion forum. You will want to read Peter Suber's appendix to his book (actually the whole book is great) and decide for yourself what should be included in a minimal set of rules. I printed everything below this for the class:
Playing the Game
You should have three or more players. More players is better. Players may use paper and pencil, note cards, e-mail, or any method of recording and managing information. Players suggest and vote on proposed rule changes. Assigning points can be based on a set amount of points given to participants for each rule passed or any other method voted on (rolling of a die, for instance). Each player should have a copy of the Initial Set of Rules to consult. The set includes Immuntable Rules (unchangeable) and Mutable Rules (changeable). New proposals for rule-changes can be written on index cards or on scratch paper. For a blog, rules can be emailed to the moderator or posted as comments, and then he or she can post updated rules to the blog as they are voted in. The participants can also vote on the proposed rules via comments.
Assignment
Play one game. Ironically, you may need to make meta-rules beforehand (choose a scribe and/or a judge, how long should the game be, how shall it be played, etc.). Afterwards, write a short essay describing the experience. What did you learn about the rule-making process? What kinds of rules were useful? How well did your group work together?Nomic: A Minimal Set of Initial Rules
Immutable Rules
101. The purpose of the game is to change the rules. A rule-change is any of the following:- the enactment, repeal, or amendment of a mutable rule;
- the enactment, repeal, or amendment of an amendment of a mutable rule; or
- the transmutation of an immutable rule into a mutable rule or vice versa.
102. Initially rules in the 100's are immutable and rules in the 200's are mutable. In a conflict between a mutable and an immutable rule, the immutable rule takes precedence and the mutable rule shall be entirely void. For the purposes of this rule a proposal to transmute an immutable rule does not "conflict" with that immutable rule.
103. Each proposed rule-change shall be given a number for reference. The numbers shall begin with 301, and each rule-change proposed in the proper way shall receive the next successive integer, whether or not the proposal is adopted. A note at the end of the rule entry will record the vote for or against adoption
104. Every player is an eligible voter. Every eligible voter must participate in every vote on rule-changes. Each player always has exactly one vote.
105. All proposed rule-changes shall be written down before they are voted on. If they are adopted, they shall guide play in the form in which they were voted on.
106. There must always be at least one mutable rule. The adoption of rule-changes must never become completely impermissible.
107. Whatever is not prohibited or regulated by a rule is permitted and unregulated, with the sole exception of changing the rules, which is permitted only when a rule or set of rules explicitly or implicitly permits it.
108. An adopted rule-change takes full effect at the moment of the completion of the vote that adopted it. No rule-change may take effect earlier than the moment of the completion of the vote that adopted it, even if its wording explicitly states otherwise. No rule-change may have retroactive application.
109. Adding or changing mutable rules requires a simple majority vote. Changing immutable rules to mutable requires a unanimous vote.
110. If a rule-change as proposed is unclear, ambiguous, paradoxical, or destructive of play, or if it arguably consists of two or more rule-changes compounded or is an amendment that makes no difference, or if it is otherwise of questionable value, then the other players may suggest amendments or argue against the proposal before the vote. A reasonable time must be allowed for this debate. The proponent decides the final form in which the proposal is to be voted on and, unless a Judge has been asked to do so, also decides the time to end debate and vote.
Mutable Rules
201. Players shall alternate in clockwise order, taking one whole turn apiece. Turns may not be skipped or passed, and parts of turns may not be omitted. All players begin with zero points. In email and computer games, players shall alternate in alphabetical order by surname.202. Players shall chose a Judge by simple majority vote. The Judge shall also record rules and votes.
203. One turn consists of proposing one rule-change and having it voted on.
204. When a proposed rule-change is adopted, the player who proposed it gains n points.
205. If a rule-change does not pass a vote, the player who proposed it loses n points.
206. The winner is the first player to achieve n (positive) points wins.
207. At no time may there be more than n mutable rules.
208. If the rules are changed so that further play is impossible, or if the legality of a move cannot be determined with finality, or if by a judge's best reasoning, not overruled, a move appears equally legal and illegal, then the player with the most points at that turn wins.
209. If two or more mutable rules conflict with one another, or immutable rules conflict with one another, then the rule with the lowest ordinal number takes precedence.
210. If players disagree about the legality of a move or the interpretation or application of a rule, then players may invoke Judgment. When Judgment has been invoked, the next player may not begin his or her turn without the consent of a majority of the other players.
Friday, July 26, 2013
OER: Possible Resources for Biology - Human Anatomy & Physiology
| human anatomy (Photo credit: Shira Golding) |
Open Textbooks
- OpenStax - OpenStax textbooks are freely available in .pdf and they also have a low-cost, print-on-demand option.
- WikiBooks
- Anatomy and Physiology
- IB Biology Review Guide (good for some of the illustrations)
- Boundless
- Open Learning Initiative (Carnegie Mellon University) Their textbook is in their class. You can access it as a guest by clicking on the blue "Enter Course" button
- Utah State Office of Education
- Biology (adapted from a CK12 book)
- Open Source Library (WA State)
- Bio 100 - Survey of Biology (click on "Browse")
- Human Anatomy & Physiology 1
- Human Anatomy & Physiology 2
- Bruce Forceia
- Wendy Riggs
- CK12
- Biology (include short video demonstrations)
- Khan Academy
- MERLOT (content builder)
- The Biology Corner
- The Anatomy Corner
- Saylor Foundation
- All of their bio classes
- Bio 302 - Human Anatomy
- Human Anatomy Lab
Related articles
- The Impact of Open Textbooks at OpenStax College (creativecommons.org)
- Where Can I Download Pictures Of Human Anatomy Online | Human Anatomy Course (wdxnpl0d.wordpress.com)
Tuesday, July 23, 2013
Four Steps to Getting MOOCs Right
| "Lehrer-Student" von Reinhard Schmidt in Rostock (Photo credit: Wikipedia) |
- Interactivity and Engagement - There is a direct correlation in the research between online interactivity and student success rates. Interactivity means "meaningful, purposeful, engagement" not just clicking on the play button. Interactivity means teacher-student, student-student, and student-content. And yes, there are ways to do this successfully in a MOOC (step 1, hire an instructional designer!). There needs to be more emphasis in MOOCs on collaborative projects and less"watch a video, take a test." This distinction is easily made when you look at connectivist cMOOCs versus xMOOCs.
- Student Support - If your face-to-face students can't be successful without tutors, academic advisors, a help desk, and librarians, why would you expect your online students to be successful without them? There are tutoring services on your campus and great peer-to-peer tutoring resources online such as OpenStudy.
- Student Orientation - Students have spent 12 years learning how to be a face-to-face student and 0 years learning how to be an online student. This is an easy fix. We did it in the community colleges with courses like "DE 101." Things that make students successful in online classes include time management, study skills, motivation, and other metacognitive skills that can be taught. Online learning is not just about technology.
- Faculty Training - The same magic that makes someone a teacher instantly when they get their master's degree does not work online. Just as students need to learn the skills to be an online student, teachers need to learn the skills to facilitate online teaching. Recording your lecture and posting it online will not work. There are a lot of resources, classes, and research online on this subject.
Related articles
- MOOCs: Disruption is the Mother of Invention (cain.blogspot.com)
- Udacity Experiment at San Jose State Suspended After 56% to 76% of Students Fail Final Exams (openculture.com)
- Online courses a 'game-changer' for uni (stuff.co.nz)
- MOOCagogy: Assessment, Networked Learning, and the Meta-MOOC (downes.ca)
- Udacity Looks To AI To Improve Learning Experience (i-programmer.info)
Friday, July 12, 2013
Mobytes Instructional Design App
| Juniper Hall at Humboldt State University. (Photo credit: Wikipedia) |
- Instructional Design (ID) basics
- Evolution and application
- Learning theory and styles
- Instructional theory
- Getting started with ID
If you are not an Android phone person, much of the information here is available on Madhuri Dubey's blog.
Related articles
- ID Blogs: Find the Best, Ignore the Rest (betterblendedinstruction.wordpress.com)
- Processes, models and learning theories (jcronk11.wordpress.com)
- More articles from this blog on instructional design.
Monday, July 01, 2013
RIP Google Reader; Long Live Feedly!
Today is the last day of Google Reader. Many of you may not know about it which explains some of why it is going away. It is not the flashiest RSS aggregator out there but certainly the most functional and useful: qualities not valued much in our post-iPad world. I explored a lot of options - there are some articles at the bottom of this post that point to some reviews. I found that this reader was the one that best integrated with my Android phone, iPad, and the Chrome browser. I liked that all I had to do was log-in with my old Google Reader credentials to get it to work.
This was my old Google Reader:
This was my old Google Reader:
This is my new Feedly reader:
I am now an iPad user and I will say that the Feedly interface is superior to most readers on the iPad, but I am still willing to experiment. If you have a tool that you think we absolutely must try, feel free to email me or post a comment here below. I would also recommend checking out Stephen Downes posting on this if you have not checked it out yet - and if you haven't - you should think about getting a feed reader to manage all those blog posts you haven't read!
In the meantime, past Google Reader users, check out Feedly, they will be expecting you.
Related articles
- Feedly: The best alternative to Google Reader (ibnlive.in.com)
- 8 Google Reader alternatives for your PC (reviews.cnet.com)
- Google Reader is shutting down tomorrow, here's everything you need to know (idownloadblog.com)
- Google Reader closes today (telegraph.co.uk)
Learning Analytics Summer Institute
| Marist College Student Center. (Photo credit: Wikipedia) |
Although this is really short notice on my part, I like to post professional development opportunities on this blog to help support our faculty and instructional designers. I have been interested in learning analytics since I was up in Washington State at Tacoma Community College where we started working with the Angel learning management system. At the time, it seemed to have a lot of analytics capabilities built in. I continued that work at College of the Redwoods where we partnered with Josh Baron at Marist College and participated in a Next Generation Learning Challenges learning analytics grant. Here is the latest from Stanford this summer:
George Siemens posted this to his blog:
"...Next week, we (SoLAR, IEDMS and others) are organizing a Learning Analytics Summer Institute (LASI). A call for attendance was held earlier this year and the event was/is (massively) oversubscribed. We were only able to accept 100 attendees due to space and cost constraints. Since then, we have heard from numerous disappointed individuals. In response, LASI is organizing a series of local events and live-streamed keynotes.
We have an outstanding program:
George Siemens posted this to his blog:
"...Next week, we (SoLAR, IEDMS and others) are organizing a Learning Analytics Summer Institute (LASI). A call for attendance was held earlier this year and the event was/is (massively) oversubscribed. We were only able to accept 100 attendees due to space and cost constraints. Since then, we have heard from numerous disappointed individuals. In response, LASI is organizing a series of local events and live-streamed keynotes.
We have an outstanding program:
Monday, July 1, 2013How to join us:
Tuesday, July 2, 2013
Wednesday, July 3, 2013
Thursday, July 4, 2013
Friday, July 5, 2013
1. Information on joining the live stream: http://lasionline.ning.com/blog/tuning-into-stanford-webcasts.
2. Join the LASI Ning
3. Join any of our local LASI events from around the world
4. Join the distributed conversation on Twitter/your blog/wherever: #LASI13
Related articles
- Join us: Stanford Learning Analytics Summer Institute (elearnspace.org)
- Learning analytics, intervention and helping teachers (davidtjones.wordpress.com)
- Learning Analytics from "Brainstorm in Progress"
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