As I round out my Wednesday, I can’t
help but stop in awe of all that I have accomplished in my Education 250 class over
the past week. It has been particularly draining as my workouts and homework
have increased and my sleep has steadily decreased. However, this class keeps
me on my toes as my professors start the day’s lesson. Even though I do the
TeachScape modules, I never enter the room fully knowing what will be covered
that day. What I do know is that I will exit with numerous “teaching moments”
and “getting real for a moment” concepts to ponder. Regardless of how energy
deprived I feel when I enter, I always leave encouraged and full of life.
This past week has been especially
full of food for thought as we took rabbit trails throughout our discussions.
Today, we explored NCTCS 4 which is the standard for how teachers are to
facilitate learning in their classrooms. While it started humbly with how we
are to integrate technology (4d), it quickly escalated to the TPACK Model and
how technology should be used as a scaffold and not as the sole source of
content. As we made connections between content, technology and pedagogy, I
couldn’t help but think back to school days where my class would be taken to
the computer lab for hours on end to have the screen teach us. I can even
reflect on instances in college in which my professor only showed us how to do
the problems on the computer and did not teach any separate lesson.
In my pursuit of math education, I
find the task of meeting 4d even more taxing because I am called to do more than
what I have been exposed. Unlike history and English, most math problems do not
require the same depth of research. When there is background for mathematical
concepts, it isn’t a flashy story like one would find when researching the
Civil War or the gold rush. Mathematical research is much more cut and dry. I can
personally attest to the fact that they do not strike excitement. The only resources
that do seem to strike excitement are those that solve math problems for you,
supplying both the work and the answer. As I enter my career, I want to make it
more than just a tool for cheating. How will I use technology as a scaffold instead
of an unplanned nap time or effortless plugging in of equations?
Along
with this, how will I make my assignments and assessments meaningful and
thorough without my students feeling like they’ve been drilled to exhaustion? When
I discuss math with others, a commonality I have found is that they feel like
the homework from their classes is too extensive. While I understand that math
teachers must evaluate their students’ abilities to work concepts at a range of
difficulties, I also have experienced assignments that have kept me stressing into
the wee hours of the morning. A big part of understanding mathematical concepts
is through repetitive practice. How can I avoid these late night breakdowns
among my students while still giving them sufficient practice?
In my
high school calculus classes, a way my teacher dodged the bullet of high stress
take home assignments was her method of grading them. Rarely were we assessed by
the answers we got for every single problem. Instead, we were graded on our
ability to present our work for a random problem from the assignment the next
morning. If there were questions from classmates, we were to explain how and
why we used the method we chose. If our answer was incorrect, we would work the
problem as a class with the presenter writing on the board as the class thought
through the steps aloud. In my opinion, this was an extremely effective means
of learning the material. We weren’t expected to fully understand every single
answer the first time, but we were expected to work through our struggle spots
together. We would notice common mistakes together and see how to overcome
them. In the future, I definitely plan to implement parts of this in my
classroom. While I can’t completely eliminate individual assessment, this
method both decreases pressure to avoid embarrassment but also promotes
critical thinking, teamwork and a deeper understanding of how the problems
work.
Sydney,
ReplyDeleteAwesome, AWESOME post. Your level of understanding is EXACTLY what we want you to get out of this class. Thank you for making deep connections and asking great questions to yourself (and to us). You are on the right track. Keep in mind, the best way to be prepared to truly integrate technology is to continually keep up-to-date with new instructional technologies? What is your way of doing this?
Sydney, I love the way you reflect back on your previous classes and the teaching methods used and applied them to what we are learning now. Our previous teachers are huge resource for us as we begin teaching, either ideas we love or hate, they can still inspire us. Comparing our old learning experiences to what we know now is how we will learn to become the best we can be and make our students the best they can be.
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