Bond with James

Saturday, September 19, 2015

Let's Bond with One Another!

Interested in another activity for your ionic bonding unit? Well, check out the 2 minute video below concerning an activity I found during my second year in education. 
FYI - the video links will not work if you're viewing on a mobile device or tablet. 
The original activity is titled Bond with a Classmate and was created by Gail Sanders.  You can find the FREE monatomic templates shown in the video and a worksheet at the source site here. This site also has a lot of great items that helped me out when I first started teaching - especially, when I had no help or curriculum; so I hope you find the items there to be useful as well. :)

While the templates were great, I found that they were missing the polyatomic ions and the multivalent, transition metal ions.  Therefore, I was inspired to extend the activity for high school level students and created additional ions to use with my students. These templates are also FREE and can be found by clicking here
As mentioned in the video, this activity serves as a great instructional tool that allows your students the opportunity to get up and move around (or even take them outside as shown in the pictures in the video).  

I would love to hear if you've tried this activity before (or if you were inspired to try it checking out the site and my video).  As always, thank you for taking time out of your day for stopping by. 

Saturday, September 12, 2015

Ionic Nomenclature Dice Activity

Here is a short video (3:25 minutes) where I discuss an ionic dice activity that I've used since 2008.  Additionally, I could not find the dice used in the video on the company site; however, I have posted a few links below the video for you to visit in case you're interested. 

I forgot to mention that the dice had monatomic and multivalent ions (Pb, Cr, etc.) and polyatomic ions.  Additionally, the cation and anion dice combination also varied between students. This helped cut down potential cheating, especially if students knew that they would get called on one-by-one to roll the dice for me for a quick check. 

Blank White Acrylic Dice Cubes 

Do you think your students would enjoy doing something like this to help them learn ionic nomenclature and formula writing? Feel free to share your response in the Comments section

Looking for additional resources to enhance your Ionic Compound/Bonding Unit? Check out the following resource - especially if you are doing interactive notebooks. 


Monday, September 7, 2015

You're so dense!

Many of the demos here are not new. However, if you're new to profession or teaching chemistry, perhaps these may help you.  

One engagement trick I learned early in my career was using duck tape, a brick (or piece of wood), and a piece of Styrofoam with similar dimensions.  If done properly, you may have students compare the objects and discuss their observations (e.g. why does one feel heavier if both objects have the same volume).   




I was surprised that none of the nearby stores such as Hobby Lobby or Michaels had Styrofoam and so I went with wet foam. For the record, I hated the wet foam. While it was easy to cut, it came apart easily. Additionally, the duck tape did not adhere to the surface of the foam.  I had to wrap long pieces of tape around the foam and stick pieces of tape to one another.  I recommend going with Styrofoam or cutting a piece of wood to match the dimensions of the brick.  Wood might be a better substitute for either the Styrofoam or wet foam because it is less difficult to puncture the wood than the other two pieces. After several successful years of keeping my Styrofoam piece safe, I finally had a student take a pencil to it.  I was not happy - although, all the pieces are cheap and easy to set up. 
This next part includes several videos of demos or activities you may do with your students.  Due to the fact that several of my students have seen some of these, I actually have these set up as stations in the lab area.  Students would rotate from station to station and would have an opportunity to take notes, observe, and explain what they thought was happening.  Depending on class size, the entire station activity would take no more than 10 - 20 minutes. 
Feel free to use any of these density videos with your students - whether to show in class, have absent students view, or to embed on your personal site. 

Density: Coke and Diet Coke
Most students in my area have seen this by the time they get to high school. This demo is cheap and easy to set up. If you don't have a small tank, use a large beaker or other clear container.  One year I even brought in a cooler with several different drinks. I asked students if they had ever used a cooler and noticed the drinks in it  (i.e., why are some floating and others at the bottom). 


Density: Ice in Alcohol and Water
This is cheap and easy - all you need is a clear container, ice, alcohol, and water. 



Density: Ice in Vegetable Oil
If you decide to do this one, I suggest using a smaller piece of ice and allowing some time for the process to take place. If the students are rotating from station to station, then it's not a big deal. However, have something for the students to do if you are not considering a station rotation. 



Density: Eggs in Tap Water, Salt Water, and Tap/Salt Water
There are two versions of this video (normal and slow-mo).  I recommend setting this up for the students to observe as one of your stations. Try using smaller volume beakers or containers so that you are not wasting salt. Additionally, I once tried using 1000mL beakers with no success on the tap/salt water combination - perhaps I was not patient enough. Also, make sure you have fresh eggs as rotten eggs will float in tap water. 

For the tap/salt water combination container, pour the salt water in first and see if the egg will float.  If it does, then pour in the tap water; or take the egg out and then pour the tap water in so that you can place the egg in later. You could add a drop of food coloring after the egg is placed and gently swirl (the very top only) to help students distinguish between the two layers - the dye will diffuse through the tap water. 

Another station you can create is the density column demo. From bottom to top: Karo syrup, dish washing liquid, water with food dye, vegetable oil, and alcohol with food dye.  You can add more liquids and even add solids to the mix. 























As mentioned earlier, all of the activities shown above would be part of a station set up and would last no more than 20 minutes.  I would then move into the concept of density and calculations as those are specific standards in my state (calculations in 8th grade and the concept of an intensive physical property at HS chemistry level). I've done this several ways.  One method involves the use of blocks. While the blocks don't fit in a 100mL graduated cylinder, students can practice measuring the volume of a cube.


To get in more density calculation practice, as well as show in the intensive property of a substance, I would assign each group - made up of 4 students - a different tube of density cylinders (refer to photo below). The student data and graphs were amazing every time I used these in class and the activity helped students with the concept that the density of a substance is an intensive property. I would caution the use of glass graduated cylinders and the steel and copper pieces.  

You may always rely on the use of water if you are not able to obtain the blocks, the classroom density assortment, or you if simply wish to get another lab in. Have students collect data on different volumes of water (20mL, 40mL, 60mL, 80mL, and 100mL).  I did this the year I moved to a new campus and we did not have the density cylinders at the time.  My students still obtain great data this way, however, they sometimes get bored using only the water. Furthermore, students do not get to practice the displacement method to calculating the density of an object.

The blocks and cylinders come in handy if you like doing lab practicals. You can assess students on their measuring skills, as well as their density calculations. For example, students might get 1 point for their accuracy (how close they were to the true value of the unknown substance), 1 point for showing their calculation, 1 point for significant figures, and maybe 1 point for lab safety.  I always explain to students that they will be taking part in a lab practical down the road and so it benefits them to participate and pay attention during all labs. 

As always, thanks for stopping by and reading. Please feel free to share, comment, and/or ask a question. Enjoy the rest of your day and have an excellent week! 
-Bond with James-


Sunday, August 30, 2015

Setting Up Your Interactive Notebooks

If you missed my early interactive notebook post in July, please click here: Interactive Notebooks - left or right?!   I decided to add a video to illustrate this a little better, however, I will still write a few things here that I forgot to talk about in the video and thought I had addressed in the earlier post (scroll past the video).
While I talked about left-side/right-side, here are photos from the notebook I showed in the video (from the 2010-2011 school year). At that point I did not know about left-side/right-side, however, I still created half-sheets or mini-booklets and had students create layers (as I discussed in the video). Besides the unit exams, every assignment was a half-sheet and students incorporated returned assignments into their notebook (bottom right photo).  I also cut plain white paper in half and have these in my room so students could add sheets if needed (top left photo). 
Here is an example of the half-sheet Word document I spoke of in the video (and from the pictures shown above). I am able to print 1 page per 2 students.  I will usually use the paper cutter in the workroom to prep these while I am waiting on the copy machine to finish. I paper cut several copies at a time. 
One thing that I forgot to mention was the inclusion of hall/restroom passes in the interactive notebook. As stated in the video, I color code the notebooks by class period. The index card, ribbon or rubber band, and restroom passes are the same color (yes - even the Popsicle sticks that I use to randomly select students to answer questions are the same color).  I color code based off an issue I had my first year with students taking notebooks from other periods. I have not had the problem since switching to a color coding format. 
I also failed to mention another strategy that I've seen to color code each period is the use of duck tape. A teacher at my school does this with her classes.  You can also be creative and fun with the duck tape you select (see photos).  FYI - the pictures at Office Max/Depot were taken in July and the deals may not be current. 

I wrote another INB blog post back in 2013 for potential left-side ideas based on a PD session that I used with my now current campus and colleagues (For the Interactive Notebook: Strategies to Engage Students in Writing). The post also references a Choice Menu that I found offered by Jennifer Szymanski on Teachers Pay Teachers (it's still currently free as of this post).

Okay, I don't think I left anything out. If I did, I'll make sure to send an update through my Facebook page. There still may be great deals on notebooks in case your students have to buy them (my school requires a comp book for all classes). As mentioned earlier, these pictures were taken at the end of July and the deals on the composition books may not be in place now.  Many of these stores will sometimes begin selling the notebooks cheap or in bundles after school starts for most districts (e.g. 5 spiral notebooks for $4)
As always, thank you for taking time out of your day to stop on by. Have a great rest of your day and an excellent week! :)





Tuesday, August 25, 2015

Uncertainty in Measurements

As promised, I am going to continue with my accuracy and precision lesson. If you missed my last post, you can read about it here.  

I usually will introduce the concept of uncertainty in measurements and significant figures with another small activity / discussion. In the past I created two rulers on large chart paper (similar to the Significant Figures Task Cards illustration shown below). 
Disregard the questions in the graphic. I only use or draw pictures of the rulers. I would not ask anything about sig. figs. at this point since I have not introduced that concept yet.

One ruler at a time, I would allow time for groups to discuss the precision of the instrument and come up with a measurement to share out with the class. I would write on the board the measurement provided by each group. Then I would do the same of the second ruler.  
  I would engage the class in a friendly debate about whether they believed their measurement was right. This is where students would verbally explain to me that the first number in the measurement had to be a one (1) because the object falls in between the one and the two.  I would then ask the groups how they came up with the second number as I noticed some variability between their measurements. Inevitability I would have one to a few students tell me that they guessed the second number.  At this point I would nod my head or say that was an interesting tactic before moving on to the next ruler.

Again, I would give groups time to discuss and provide me with their measurements as before. Students would confidently explain that the first number in the measurement (above) was a one because the object fell between a 1 and a 2.  Then the second number had to be 1.4 because the measurement fell in between 1.4 in. and 1.5 in. Finally, I would hear students debating about the final number. This is where I would talk about significant figures, the known digits plus the one estimated digit, in a reported measurement. 

At this point, I would move to a lab activity that involved several stations containing different instruments.  
Each station had 4 pieces of the same equipment, however, each piece was set at a different measurement.  I originally used food coloring to make it easier to see, however, it became a method to assign each student, in a group of 4, a particular color.  
For example: Student 1 = yellow, Student 2 = red,  Student 3 = blue, and Student 4 = green. Students would only measure the apparatus that contained their food coloring dye.
If there were certain instruments that did not measure liquids, like a triple beam balance, I would use color paper or Post-It notes (I know the Post-It notes in the pictures don't match here because I had run out of the color I needed and was too lazy/cheap to run to the store to get more). ;)
Students would then rotate from station to station measuring the instrument based on their assigned food coloring / Post-It note color. Once all the students were finished, I had them find three or four other students that had the same color assignment as they had in order to gather and compare their measurements. There were times where groups were larger than 4 but I only recommend that if you know your students can work quietly in large groups (this varied from year to year and from class to class).
I represented the true value for the lab activity. At the end of the activity were some reflection questions for the students to answer.  This activity allowed for students to learn to collect data and make measurements with accuracy and precision; as well as begin to learn how to express quantities using appropriate significant figures [Texas standards].
Another reason why I do this activity is because I want all students to have the opportunity to practice using and reading the lab equipment. Therefore, I would also pull this equipment out a few days later and have the students complete a lab practical. It makes it more difficult for them to cheat, especially if I utilize more than four pieces of the same equipment type (e.g. 6-8 graduated cylinders or triple beam balances, etc.). I will admit that the first time I did this it was a lot of prep (mainly because I was just grabbing equipment and didn't have a clear vision for setting it up). It now only takes me roughly 30 minutes to set up, with the burettes and ring stands taking the most time. Clean up is relatively simple as well. 

Sometimes I would leave all the equipment out and write my measurement on the bottom of each Post-It note  (for each instrument).  If students finished early or wanted extra practice prior to the practical, they could go to the lab and practice by checking their measurements against mine (they would lift the Post-It note up to reveal the answers). Students did not receive a grade for this; however, most students would practice because they wanted to do well on the practical. 
Okay...that was a lot and I'm hoping I didn't leave anything out. I think this is a great lab activity to do at the beginning of the year because you can easily identify students that come with/without measuring skills.  Some may be proficient at using all the equipment, some may be proficient using a few, and others may need help using all the pieces.  

I also think this is something you can continually pull out as a warm-up. Yes, I would sometimes use this as a warm-up to at least have students practice until I felt that 90-100% of my students could measure with accuracy and precision - reading to the correct number of significant figures.

As always, I would love to hear if you have any strategies pertaining to these topics that work in your class. 

Thanks for stopping by! 

Tuesday, August 18, 2015

Accuracy & Precision with Wacky Rulers

The concept of measurement in science, especially in chemistry or physics, is an important skill students need to acquire early on in the school year.  I am going to share a simple engagement strategy in regard to accuracy and precision that I have used in the past with my students. This is also a great activity to implement the first week of school if students are not able to conduct labs without a signed safety contract. 

My former mentor and instructional coach used to let me borrow a set of non-traditional rulers - which I nicknamed bumble bee rulers because they had an alternating yellow and black box pattern on both sides of the ruler (I will refer to them as wacky rulers from here on). 
Unfortunately, my coach could not remember where she got the rulers from and retired from the profession; however, I created my own version of the ruler and call them wacky rulers.

I would give each student a ruler and a picture as soon as they entered the class. My directions were simple - measure the object and write your answer on a Post-It note. Some students would look at me weird and some would ask me what units they were supposed to use. Others would try to figure out which end of the ruler to use.
I created this version just to mess with the students but it does come in handy when comparing different measuring instruments and talking about accuracy and precision. 

Each student would then place their Post-It note on chart paper or the board (or you can have them write directly on the chart paper or board). I would get a variety of measurements (e.g. 4 squares, 3 blue squares and 2 black squares, 5 boxes, 5.1 boxes, etc.) 

Next, I would have the students measure the object again with a metric ruler and create another poster with the metric ruler measurements. 

At this point, I would have two class sets of measurements - one from the wacky ruler and another from the metric ruler. I would give students an opportunity to discuss in pairs, or a group of 4, which ruler they believed was the best instrument for measuring.  I would also give students time to discuss their thoughts about the varying measurements with the wacky ruler; as well as how the measurements differed between the two rulers.  

This is also a great opportunity to explain that a measurement consists of a number and a unit. Additionally, it also is a great time to introduce and discuss accuracy and precision by utilizing the class measurements. You could have students copy the actual measurements in their interactive notebooks and write a brief reflection summarizing the activity. I really like using the wacky ruler data when speaking about the precision of our measurements since, from my experience, the data usually is all over the place. ;)  For the sake of explaining accuracy, I will tell students that my measurement is the true/accepted value. My students usually understand the difference between accuracy and precision from this point forward.  

I should note that this is usually a 10-15 minute activity / discussion at the start of class (warm-up and engagement).  I also incorporate significant figures, however, I will be writing another post on that later as I incorporate an accuracy, precision, and sig fig lab activity in the same lesson (and sometimes use it as a lab practical).  You may have also seen my collaborative posters floating around Pinterest or other sites. That is another collaborative activity I integrate into this particular measurement unit. 

If you want a copy of the wacky rulers, you may download it for FREE here. I have included the image of the shark seen in this post and a slightly editable 10 slide PowerPoint file.

Please share if you have any ideas similar or different from this; or if you try this and your experience with it. As always, thanks for reading! :)



Sunday, August 9, 2015

Super Secondary Science Giveaway

I have teamed up with a few of my secondary science colleagues to participate in a Super Secondary Science Giveaway.

Who, what, where, and when? 
Technically anyone may participate, however, the resources found on our pages are geared for secondary science.  You may participate by following the directions on the Rafflecopter (scroll down). Once you're down with that, then scroll down some more to visit the participating secondary blog pages. It's that simple! Each of us have different prizes.

The winner of my giveaway will have the opportunity to choose between:
(1) Chemistry for Interactive Notebooks
There are two versions of this product - one for high school and one for middle school, however, you may only choose one version. Check out the video for a small preview [FYI: there is music].

        

 (2) Task Cards 7-in-1 Bundle
This product covers the following topics: atomic structure, ionic bonding, covalent bonding, matter, the periodic table, significant figures, and scientific notation.   

(3) Cells & Viruses: Differentiated Activities for the Biology / Life Science Classroom
This bundle comes with 8 activities: task cards, tarsia puzzles, mix-n'-match, I have...Who has..., literacy activities, vocabulary jigsaw, and graphic organizers for the interactive notebook/lapbook.
 

Once you're done with the rafflecopter - don't leave! Make sure to scroll to down to visit the other secondary science seller pages to participate in more giveaways! Have fun and best of luck!

a Rafflecopter giveaway



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