Showing posts with label Inquiry_Based_Instruction. Show all posts
Showing posts with label Inquiry_Based_Instruction. Show all posts

Friday, November 3, 2017

IQB? Yeah, You Know Me

IQB, IBI, IBL. All of these acronyms refer to inquiry based learning and instruction, and in this blog post, we will use IQB. IQB is  a form of active learning that incorporates questions, problems, and scenariosWNET has an extensive definition of IQB that describes it in more detail.

Edutopia has an extensive library of resources that show how IQB can be successfully incorporated into the classroom and tips and tricks for lesson design and implementation. How to write student learning objectives for IQB can also be challenging. Penn State's Schreyer Institute for Teaching Excellence has a great resource for how to do this.

As agriculture teachers, we often incorporate many IQB type activities into our classes. For classes that are very hands-on, this can be easy to do. For other classes, it can be more difficult. Illinois Agriculture in the Classroom  has ideas for many different types of IQB ag lessons.

IQB has five major steps: question, investigate, use evidence to describe, connect evidence to knowledge, share findings. To introduce IQB and explain how it works to students, this clip from Apollo 13 serves as a great example.

1. Question: How do we fit a square peg into a round hole?
2. Investigate: Determine what materials are available in space capsule and what is causing air leakage
3. Use Evidence to Describe: Figure out how materials can be used in combination to stop air leak
4. Connect Evidence to Knowledge: Use available materials from space capsule to construct new part to stop air leakage
5. Share Findings: Guide astronauts through process to build new part

IQB takes time to implement successfully, but it has the potential to make the classroom a much more student-centered and engaging place. Next time someone asks you, do you use QB? You can say "yeah, you know me".


Monday, October 10, 2016

Guest Blogger: Utilizing CASE to Achieve Inquiry and Integrated Science Goals (2016)

Editor's Note: Ms. Melanie Bloom has been a Curriculum for Agricultural Science Education (CASE) Writing Team Member since 2014, and is now also a doctoral student at the University of Missouri - Columbia. Prior to joining the CASE team, Melanie served for twelve years as an agricultural education Instructor in Iowa, during which she was active in the National Association of Agricultural Educators organization. Melanie was raised on a diversified crop and livestock farm in northwest Iowa and remains active in two family farm operations in addition to many agriculture-related hobbies.

Connect with Melanie:
@Ag_In_Bloom
Melanie.Bloom@case4learning.org



Joining PSU's AEE 412 class from my basement office; the commute is terrible when you work from home!

Here's a great inquiry resource to help get you started: Inquiry-Based Learning in the Science Classroom.

When we're building CASE courses, we use the CASE Curriculum Development Philosophy document. I have desk copies of How People Learn (Bransford, Brown, and Cocking, 2000) and Understanding by Design (Wiggins & McTighe, 2005). I suggest reading both if you're going to get into writing inquiry curriculum.

One visual resource I like to reference is the Rigor-Relevance Framework, which dials up Bloom's Taxonomy (no relation), developed by Bill Daggett, 2005. CASE curriculum fits into categories that represent real-world application of knowledge and skills. CASE design includes the following student documents:
  • Activities would be considered Structured Inquiry, which means students will conduct similar activities to achieve basic knowledge and skill acquisition. Activities fit the third level of the Application scale and set the stage for future activities, projects, and problems.
  • Projects are meant to be Guided Inquiry, so students might use different means to arrive at similar conclusions. Projects fall into the fourth level of Application.
  • Problems represent Open Inquiry, and fall into the Adaptation category. The sky's the limit, and students might use different processes to achieve different results, but all students will complete a relevant task. 
More at Utilizing CASE to Achieve Inquiry and Integrated Science Goals.

I'm always available to visit with and love connecting with other ag ed professionals!


Resources:
  • Bransford, J. D., Brown, A. L., & Cocking, R. R. (Eds.). (2000). How people learn: brain, mind, experience, and school. Washington, DC: National Research Council.
  • Daggett, W. R. (2005, September). Achieving academic excellence through rigor and relevance. Retrieved January 10, 2008 from http://www.daggett.com/pdf/Academic_Excellence.pdf
  • Wiggins, G. P, & McTighe, J. (2005). Understanding by design. Alexandria, VA: Association for Supervision and Curriculum Development.

Monday, November 23, 2015

Feedback on #psuaged16 questions from National Agriscience Teacher Ambassadors

From our reflection on November 13th, I distilled comments to three primary questions that I in turn sent to our friends, colleagues and  associates who are National Agriscience Teacher Ambassadors (Learn more about that program from NAAE and DuPont here: http://www.naae.org/profdevelopment/nataa.cfm)

1) What should the teacher be doing while the students are engaged in the inquiry process?

Monitoring for safety if this is a lab setting, formative assessment - don't answer procedural question - make students read and follow directions on their own so that you can be asking deeper questions, and depending on the class, you might at times be sitting down watching the kids work through whatever you have challenged them with. Please don't read this statement to think I said read the newspaper, but what I am saying is that don't be a helicopter teacher - give them a chance to work and think without you standing over their should for every minute of the period. (Donna, Ohio)

Moving about the room offering guidance and feedback (formative assessment). Posing "questions" to make the students think even deeper. (Mark, Pennsylvania)

Your job has now sifted from a teacher to facilitator- wonder around the room. With out being too distracting, ask them questions to connect with them- How was your day? How is your steer? Who do you play tonight?, etc. Its an opportunity you now have to connect with students who you might not otherwise connect to. Its also time that you give feed back, How might you do this differently? What do you think is going to happen? How could you take this further? Its also a chance to verify they are using equipment efficiently, etc. Try not to work on other things, as tempting as it might be. (Gina, Ohio)

Monitoring. Questioning students one on one. Probing. Do not fall into the temptation of multitasking and doing something else just because all of the students are busy. Question their ideas. Look at their observations and writing. My best discussions with students happen during this time. (JoAnn, Ohio)

Walking around among the students. Helping them stay focused without assisting too much. I like to ask questions about what they are doing Encourage thought and discovery. (Lee, Kansas)

Video Feedback from Jaysa Fillmore (Idaho)



2) How do you effectively manage groups/classroom management while conducting inquiry?

Starts on day one with your management and expectations when they are sitting in their seats not in groups. I use stamps to check to make sure groups get to a certain point correctly before moving on. I set up the expectation that you need to wait patiently until I get to you. Rarely do kids get to the same point at the same time so there is not a lot of ideal behavior. If a group is not on task, I talk to them directly. If a student specifically is not behaving I deal with that student. I teach three different age groups of kids, so how I deal with the sophomores is very different than the seniors. (Donna, Ohio)

Break the students into smaller groups/partners. An inquiry classroom will "seem" to be very chaotic and out of control to a casual observer, but in reality the students are "engaged" in their own learning. The teacher must move about the room. Be sure to set the room/lab up in such away that allows for easy movement and access to supplies and equipment. (Mark, Pennsylvania)
I still believe in heterogeneous groups when kids are working on day-to-day work. I use craft sticks with kids name to randomly assign groups. If it is a long term project I let them pick their own groups since they will need to be in contact with each other outside of class. However, to help them reflect on their work during long term project they have daily logs to fill out to explain what progress they have made and who is doing what for the next meeting/work day. (Donna, Ohio)

Part of what you have to do is make sure groups are set up well- if you know kids don't get along or wont work together, then don't put them together. Even if you are randomly assigning groups, control that randomness a little, to keep your groups under control. Again wonder around the room, keeping an eye on groups. I sometimes assign different roles/have them pick different roles. time keeper, clean up, group leaders, whatever it takes. Also have a plan and share that plan with them for clean up, where items go, etc. (Gina, Ohio)

Question cards (limiting the number of questions that a group can ask) helps tremendously. So does the use of stamps/stickers (when they get ____ done, raise your hand, get a stamp, move on). I have fewer class problems during inquiry because the kids are almost always engaged.(JoAnn, Ohio)

Prior discussion and expectations, walk among students, but do not do activity for them, let them struggle but help them stay focused, encourage and make sure they are using their notebook to record information.(Lee, Kansas)
3) How do you keep the “connection” when conducting an inquiry lesson over multiple days?

Five minutes at the end or beginning of class....what did we learn today/yesterday? Could be a KWL chart as well (I tweeted one not too long ago.)....Not sure what "connection" means - are you referring to content or teacher/student connection? Teacher/student connection should never be lost because you are monitoring/asking questions throughout the period. (Donna, Ohio)

Have each group conduct a debrief/review of what happened the day before and how it relates to today's activity as part of the "bell work". One of my favorite is an "entrance ticket". Just the opposite of an "exit ticket". In this case the students must answer a question(s) and receive a sticker/stamp from me before they may begin that day's activities. This helps me ensure that they are seeing the "connection" to yesterday's lesson/activities before they charge ahead, while also serving as another formative assessment of what they really learned. (Mark, Pennsylvania)

Discuss what happened the day before, before leaping into the lesson the current day. Let them talk, discuss what happened, predict what it going to happen today. Or use some cool review tool or game, kahoot, post it notes, poll every where, etc.   (Gina, Ohio)

Review what they discover through them leading discussion. Just guide and sometimes add an article to help connect and make relevant and link activities and help reinforce. (Lee, Kansas)


Guest Blogger Series: Connecting Agriscience Fair to Inquiry Based Instruction

Editor's Note: This blog is part of a series of guest contributors from the National school-based agricultural education family.  Mrs. Gina R Neff is the Agricultural Education Instructor and FFA Advisor at Utica High School, in Utica, Ohio.  This is her 6th year of teaching, but her first year at Utica.  For the past 5 years, she taught at Lancaster High School in Lancaster, Ohio. She is a lead teacher for CASE and is certified in AFNR, ASA, ASP, and Natural Resources. Mrs. Neff is an active member in the Ohio Association of Agricultural Educators and the National Association of Agricultural Educators. She is currently serving a 3 year term as Treasurer for OAAE.  She is the 2013 and 2014 OAAE Outstanding Young Member Recipient, the 2013-2014 NAAE Region IV Outstanding Young Member and the 2015 Ohio ACTE Outstanding New Career andTechnical Educator.


Connecting Agriscience Fair to Inquiry Based Instruction.... thats a mouth full isn't it? But is is not as scary as it sounds!

Agriscience Fair projects have became one of my absolute, hand downs favorite projects in my ag ed teaching tool belt.  It's even more exciting now that I am in a new school that the science department wants to do a science fair of their own and my students and I have been asked to join in!!

When it comes to inquiry based instruction, it might be a little scary to your students.  The majority of my students are coming from classrooms where they are they are taught to memorize and then regurgitate that information.  And then forget it, never do anything with it! It is a HUGE disservice to these students and to their future careers.  So keep in mind, this project takes time and getting students use to inquiry can take a little time.  A great tool when it comes to inquiry is the essential features of classroom inquiry and their variations.  See below!



Essential Features of Classroom Inquiry and Their Variations

Less -------------------------------------Learner Self Direction--------------------------------------------More

More---------------------------- Direction from Teacher or Material-----------------------------------Less



FEATURE




1. Learner engages in scientifically oriented questions.
A. Learner engages in question provided by teacher, materials, or other source
B. Learner sharpens or clarifies question provided by teacher, materials, or other source
C. Learner selects among questions, poses new questions
D. Learner poses a question
2. Learner gives priority to evidence in responding to questions
A. Learner given data and told how to analyze
B. Learner given data and asked to analyze
C. Learner directed to collect certain data
D. Learner determines what constitutes evidence and collects it
3. Learner formulate explanations from evidence
A. Learner provided with evidence
B. Learner given possible ways to use evidence to formulate explanation
C. Learner guided in process of formulating explanations from evidence
D. Learner formulates explanation after summarizing evidence
4. Learner connects explanations to scientific knowledge
A. Learner given all connections
B. Learner given possible connections
C. Learner directed toward areas and sources of scientific knowledge
D. Learner independently examines other resources and forms links to explanations
5. Learner communicates and justifies explanations
A. Learner given steps and procedures for communication
B. Learner provided broad guidelines to use to sharpen communication
C. Learner coached in development of communication
D. Learner forms reasonable and logical argument to communicate explanations


Ideally, all teaching and learning is going to happen with learner self direction being more and direction from teacher or material being less.  It's not always possible in everyday classroom instruction (although it is a GREAT goal to figure out how to move at least one feature further down the essential features in each lesson).  However agriscience fair is going to get you in the D column every time!

Besides agriscience fair connecting to inquiry learning, it also does an amazing job of allowing student interest projects.  I know we all have a unit or subject that we love- but it might just bore our students to tears.  This is a great way to get that student to connect to a topic that they love. 

Another piece that I like about the agriscience fair is that it give the students the opportunity to connect a project in all 3 circles of the agricultural education model. They can complete the project in class for a grade, take it to an FFA sponsored science fair, and use it as their SAE.  In my old school, traditional SAE projects were hard to find, so agriscience fair became a great way for my students to have a project besides taking care of a pet or go beyond an exploratory project. 

Yet another thing I like- students have to talk to people about their project! Most cant seem to get away from their cell phone or how to speak to a person, so what better way to make them communicate then to get them talking about something they are interested in!

So- back to the inquiry piece of this- how can this connect?

As mentioned before, this can be put into the D column for each learner feature, but you do have to set it up right.


When starting an agriscience fair project, its important to allow your students time to free write/brainstorm.  I often ask my students, what is it you are interested in? What is something you have always wanted to know more about? How does this relate back to agriculture?  You will end up with quite the list of projects that may or may not be possible.  Be available to give them some feed back and some critiques to help them find a suitable project.  The first year that I started this project in the classroom, two of my students wanted to know: Which will be heavier: A dairy steer on feed or a dairy steer in the wild? We had a wonderful discussion on the problems a "wild" cow running around the county side could case and the students modified their project to being about rabbits raised on a pelleted diet vs. a "natural" diet.  The end result: 2 students who eventually went to compete on the National Level and place 7th with a silver rating.   

My students agriscience fair board/display that went to the National FFA Convention
To best make agriscience work in the classroom, I find it takes chunking the project into small pieces.  After all, you can eat an elephant, you just have to do it a bite at a time!

For my students, I find the best way to chunk it is to give them due dates and then check for a grade.  I also give them LOTS of feed back.  Sometimes my feed back is simply asking them multiple questions, but it's always meant to make them THINK about their project.  After all, that is the goal of inquiry, is to teach the kids how to think!  

So, overall don't be scared of inquiry! Agriscience fair is a great way to practice it in the classroom! 

If you have questions, feel free to contact me at gneff@uhs.laca.org.  Friend me on facebook or follow me on instragram- gneff85. 

Wednesday, September 23, 2015

Guest Blogger Series: Incorporating Blended Learning in an Ag Education Classroom

Editors Note: This blog is part of a series of guest contributors from the National school-based agricultural education family. Ms. Jillian Gordon is a current graduate student at the University of Georgia in Agricultural Leadership, Education & Communications in the College of Agricultural and Environmental Sciences. She is 2015 graduate of the Penn State Agricultural Education having completed her student teaching at Ridgemont High School in Ridgeway, Ohio. She is a past Pennsylvania State FFA Officer and graduate of the Twin Valley High School Agriscience Program.

At 23 years of age, I didn’t think I would start a piece with a sentence like “back in my day…” but here we are. When I was in high school, five short years ago, cell phones were off limits. I had peers who regularly ended up in the principal’s office having to explain exactly why the text they were sending was so darn important. Bringing your laptop to school was basically unheard of as well, the wifi connection was strictly off limits to students and teachers weren’t even trusted with the knowledge to be able to log on on their own accord, their laptops needed to be set up by someone in the tech department.

Today, however, more and more schools are adopting open cell phone policies and not only allowing students to bring in laptops but providing them. And while technology use is expanding, it could be argued that purposeful and meaningful use of technology in the classroom is not. 
Education is one of the only professions where slow technology adoption is acceptable. I’ve seen even some of the most innovative and talented teachers unwilling to make the dive into implementing technology into their classroom. It’s much like a new fashion trend (bear with me for a moment fellas) that looks great in magazines, but you’re not willing to try it yourself. “I mean, it looks like it works great in THEIR classroom, but I just don’t think I can pull it off in my classroom.” Sound familiar?

Agricultural education classrooms are especially susceptible to this mindset. With hands-on, lab based classes it is a common conception that blended learning just doesn't fit the experiential learning model of agricultural education. I am here to tell you, from experience, that this sentiment is straight up wrong. 

This post aims to talk about blended learning in the agricultural education classroom. Blended learning, doesn’t have a specific, succinct definition, but the folks over at TeachThought gave it a try anyway.
Defining hybrid or blended education is a trickier task than one might think–opinions vary wildly on the matter. In a report on the merits and potential of blended education, the Sloan Consortium defined hybrid courses as those that “integrate online with traditional face-to-face class activities in a planned, pedagogically valuable manner.” Educators probably disagree on what qualifies as “pedagogically valuable,” but the essence is clear: Hybrid education uses online technology to not just supplement, but transform and improve the learning process.

That does not mean a professor can simply start a chat room or upload lecture videos and say he is leading a hybrid classroom. According to Education Elements, which develops hybrid learning technologies, successful blended learning occurs when technology and teaching inform each other: material becomes dynamic when it reaches students of varying learning styles. In other words, hybrid classrooms on the Internet can reach and engage students in a truly customizable way. In this scenario, online education is a game changer, not just a supplement for status quo. But what does this theoretical model actually look like in practice?”

There are MANY ways to blend your classroom, including flipping the classroom, which is another awesome method, but not one I am going to address here. If you're interested, definitely check out Edutopia for some great resources.

One common misconception is that online learning strips a classroom of its environment of inquiry, but after watching a group of equine science students approaching me after learning about body systems, completely on their own accord, and say to me "Ms. Gordon, we passed those tests and finished our project, but we don't really think we really learned what we needed to, do you think we could do a dissection?"

Pig Dissection prompted by the students
After I picked my jaw off the floor (my only reaction to a group of high school students truly wanted to do MORE than assigned to reach mastery), we contacted the local butcher, got ahold of the internal organs of a pig and later that week, the students were using information they gathered on their own about how to dissect and identifying the organs and body parts their learned a few days earlier. That's when I realized the potential for blended learning to foster inquiry is huge, and I couldn't help but share the love. 

Because everyone loves lists nowadays, I went ahead and created TWO for this post (you can thank me later). These are specific ways for the 2016 Penn State Student Teacher Candidates to tinker with technology at their cooperating centers in the Spring, however, I think they can be applicable for anyone looking to blend!



First, let’s talk about the advantages of going blended.

     1. You’ll increase your capacity as a teacher
By using curriculum from iCEV, I was able to teach five different class pathways in ONE class period. By offering your content online, as opposed to only in class and only through you, you can expand the choices that you are able to offer your students.

1     2. You’ll increase your ability to easily differentiate.
To expand on the first point, offering your content online also offers greater capacity for differentiation both when it comes to types of content as well as the level of difficulty. Students move through content and assignments at their own pace, and you can work one on one with students to meet their individual learning needs. 

2     3. You’ll get to know your students better
When you no longer are the “gatekeeper of knowledge” during class time, this frees up the opportunity for you to meet with students one on one or in small groups. They can ask you questions about content or an assignment they may never have asked through a lecture or activity engaging the entire class. This also gives you better feedback about what content is sticking, what is not as well as identifying best practices for your individual students!



Next, lets cover three tips for making the transition to blended easy as pie!

      1. Take the time to set context
      The biggest mistake I made when trying out blended learning is making alot of assumptions. I assumed the students would understand everything I was saying, assumed they knew how to use the technology, etc. It is SO important to take the time to ensure you are using the utmost clarity with your students about expectations and procedures. It may feel as though you are using valuable instructional time, but if you do not go slowly on the front end, you will spend even more time throughout the class re-explaining things that you thought was covered weeks ago. 

    2. Be prepared for push back
      By far, the most confusing learning moment for me was understanding that just because this generation of students grew up with technology, doesn't mean they are dying for it in the classroom. I had many students, who after 11 years of being talked at in school followed by worksheets at home, took weeks to get used to or enjoy learning online. Often, students see technology as where they "have fun" (texting, playing games, etc) while school is NOT fun. I do not have a good piece of advice to combat this, because it is something I struggle with greatly myself. Anyone reading with ideas or feedback, please drop a note in the comments below!

     3.  Utilize your resources
      The biggest limiting factor, in my opinion, of teachers adopting a blended learning classroom is believing that have to create all of the online videos, modules, etc themselves. This is simply not true! My cooperating teacher and I personally utilized iCEV, which has great agricultural education content. By no means was it as simple as "plug and play." Some days I did create or edit iCEV content on my own (check out this blog post about how I did that). Others, I found content from completely different courses. Finding content that fits your classroom does take time, but don't think you need to do all of it on your own!

One last piece of advice for the 2016 Student Teachers before I am off of my soapbox, take risks! The reason I am so passionate about this post is because I was given the opportunity during my student teaching to take one big scare jump off of the educational diving board into the waters of blended learning.


Did things go smoothly why I tried it? Nope.

Are there a lot of things I would have changed if I were to do it again? You betcha.

But guess when I get to try it over again? In my own classroom! Taking risks as a student teacher not only set me up to continue taking risks as an educator, but allowed by cooperating teacher to finally try something out in her classroom that she had been planning for years. Sounds like a win-win to me!


If you have more questions about my experience developing the class and working with iCEV, you can check out a few of my blog posts from student teaching, or feel free to reach out via Twitter @jillianpsu!

Submitted by:
Jillian Gordon
Graduate Student
University of Georgia
@jillianpsu
https://travelingteachertales.wordpress.com/
jilliangordon@uga.edu 


Friday, November 22, 2013

Inquiry Based Instruction Lab Videos! FINALLY!

Hello Cohort!

Below are each of your Lab #5 Inquiry Based Instruction Labs.  Please be sure to review AT LEAST 2 and upload your peer feedback on VoiceThread.

If you have any questions, please contact me!


Emily Urban


Kate Livingston



Billy Saylor



Mindy Stoops (Part 1)



Mindy Stoops (Part 2)


Brittany Rigg


Quinn Cashell (Part 1)



Cashell Quinn (Part 2)



Tyler Cremeans



Mike Petrun (Part 1)



Mike Petrun (Part 2)




Caleb Wright (Part 2)


Caleb Wright (Part 1)


Annette Snook (Part 1)


Annette Snook (Part 2)



Annette Snook (Part 3)




Allison Hoover (Part 1)



Allison Hoover (Part 2)


Megan Slates

http://youtu.be/c4JqioeTnd4

Jeanne Case

http://youtu.be/y9Gf73HW8N8

Valerie Laub

http://youtu.be/_BB4yJ_Tm0E

Cassie Foster

http://youtu.be/ISSErTXRAho

Jessie Ross

http://youtu.be/RoLygoOXj70


Todd McMillen (Part 1) 


Todd McMillen (Part 2)