Showing posts with label Problem Solving. Show all posts
Showing posts with label Problem Solving. Show all posts

Thursday, April 24, 2014

Milk Cap Magic Squares


Ready for some fun? Grab a copy of Ben Franklin and His Magic Squares to read aloud. Stop reading after it says, "Now Ben wondered if he could make the numbers [1-9, in a square] add up to 15..."

Give each student a set of 9 milk caps (I don't EVER throw them away!) to number, 1-9.



Challenge them to make a 3 x 3 array in which every row, column, and diagonal totals 15.


If they think they've found the answer, have them scurry off to write it down! (And hide it from everyone else!)

Stop periodically to talk about strategies. Today we discussed ideas like:

1. Not having all of the biggest numbers--or the smallest numbers--in the same row, column, or diagonal.

2. Setting some of the combinations in #1 and then working around those numbers.

3. Only moving a few caps at a time, especially if you're getting close.

You can also give the online version a try!




Friday, December 6, 2013

Online Holiday Math Activity Calendar


Don't miss this year's online holiday math calendar from the NRICH site. Each day from now til Dec. 24 features a problem-solving opportunity.

Primary Calendar (British Stages 1-2*)
Secondary Calendar (British Stages 3-4)

Stage 1 is equivalent to Grades 1-2 in the U.S.; Stage 2 is U.S. 3rd-4th. The Secondary Calendar is designed for grades 5 & up.

Sunday, November 10, 2013

A Ha! Brainteaser Kit...Problem Solving Perseverance!

It's no secret that I'm a fan of ThinkFun games and activities. So I was pretty excited to receive the A Ha! Brainteaser Kit for review. 

Description
The kit contains 8 colorful, plastic brainteasers designed to exercise problem-solving muscles. Each brainteaser comes with four cards; the first describes the objective and the next three provide clues on how to solve the problem.  

Uses: Individual & Classroom
The kit arrived right before my 11yo son and I left for our weekly allergy shots. We opened it in the office and alternated puzzles. My son started with "Starburst," handing it to me after a ten-minute attempt. I tried. Kept trying. Thought to myself...come on...this is designed for Grades 2-8...YOU...CAN...DO...THIS. Then, seriously, this phrase started going through my head (think Nagini to Harry Potter):
CCSS.Math.Practice.MP1 Make sssssense of problemsssss and persssssevere in ssssssolving them.
And like the little engine that could (or the middle age math teacher putting Ssssstandardsssss into Practiccccce), I DID IT! And, no, I didn't look at all the clues. Well, maybe one clue.

Starburst Puzzle with Cards
See! I did it!
Next, I introduced the kit to my 5th grade math class as a transition activity. The result? Kids frequently pick them up. Since all of our current Math Stations require partners, it's been nice for times when I have an odd number of students. Early finishers also challenge themselves with the kits.

Tips:
I've encouraged students to delay use of the hint cards (especially hints 2 & 3) as long as possible. When students work in pairs, they can discuss their problem solving strategies, thereby providing one another with hints of their own. Although I haven't done this yet, I may put out 2-3 kits on a rotating basis to use for transitions/Math Stations/early finishers and ONLY include the objective card.

Other Thoughts:
While the kit suggests use in Grades 2-8, I think it's most appropriate for gifted students in the lower grades. My 7yo first grader asked to participate along with me and my 11yo son. After about 30 minutes on a single puzzle, I began congratulating myself on my 7yos amazing attention span. Then he burst out crying. He was SO UPSET that he couldn't figure it out. (Bit of a perfectionist?) I put that puzzle away, but he immediately wanted to try another, so I guess it wasn't too traumatizing.

Conclusions:
I love this kit. I will use it with my own kids as well as my students.

Disclaimer: I was provided a free kit by ThinkFun for the purpose of review. This did not influence my opinion. Although I do appreciate the freebie!  If you order from Amazon, all commissions go toward foster care through Grace and Hope at no additional cost to you. THANK YOU!


Saturday, September 7, 2013

Staying Alive...with Real Life Math Stories

I like to "collect" math stories. From real life. Over the years I've amassed some good ones (including the one about the clerk who needed a calculator to compute 20-12!) but this last week one struck me...or perhaps "stuck" me.

I've started allergy shots again...something I've done repeatedly over my lifetime. I've never experienced anything more than a little localized reaction and since I've been on shots since May, I didn't really expect much at a recent injection.

But you need some numbers:
With each new bottle of serum, I start with a tiny amount, .1ml, and then move up to .2, then .3...each time going up by .1 until I reach .5 and then begin a new bottle with a stronger concentration. Last week, I received my second injection from the newest bottle, or .2ml. Tiny amount, right? Much less than those biggies at .4 or .5. Insignificant, really.

Hardly. Within 45 minutes of my shot I was in full allergy attack: sneezing, coughing, itchy throat, runny nose, and the scariest...wheezing, with air passages closing. To make a scary story short, I followed protocol and recovered.

But here's the math part...

I saw the allergy nurse this week and reflected on how odd the experience was. It was such a tiny amount: only .2ml. Ah, she said...that's what she used to think, too. Until someone pointed out that something significant happens during the .2ml shot. Can you figure it out? Again, I always get injections in this order:

.1ml
.2ml
.3ml
.4ml
.5ml

What's significant about the  .2 injection? Mathematical minds want to know... Leave your comments below.

P.S. This is a reminder to collect "real life" stories like this to share with kids. Make it real! (But perhaps not THIS real!) :)

P.P.S. School starts up for me this week. Big Math Monday Blog Hop announcement on Monday!

Thursday, May 30, 2013

Google Eyes Problem Solving

Picked up this package of Google Eyes at the dollar store. Do you see the math problem-solving potential?


Look at the big arrow. I bought this package of eyes intending to use them for people eyes in an art project. If I'm using them for people, what problem will I encounter if the package holds 125 eyes? How many people can I make?

Look at the small arrow. It shows that the package contains:

15 pc (2.4cm), 50 pc (1.2cm), 60pc (1cm)

If I use same-sized eyes for each person, how many people can I make with each size? Will I have any leftovers to create a "one-eyed monster?" If so, which size eye will my monster have?

This morning over the breakfast table, this package led to a discussion about odd and even numbers. I love looking for math problems in the environment!

Tuesday, December 4, 2012

Friday, May 18, 2012

Bedtime Math

Have you seen Bedtime Math? A friend just alerted me to this site where a problem is posted every day for kids to do at bedtime. You'll find 3 levels: preschool, K-2nd, and 2nd-up. Homeschoolers could add a math moment to their bedtime routines. Classroom teachers might want to alert parents who could develop this "math habit" with their kids all summer...or you could use it now as a "wake-up" routine at school.  Check it out! :)

Saturday, December 3, 2011

Math Advent Calendars - new ones!

The NRICH site has two new math calendars for this Advent season. You'll find a primary and secondary version containing math activities to do each day until Christmas Eve. Enjoy!

Sunday, November 20, 2011

Game Review: Chocolate Fix (great for early math finishers!)

Trying to think of a good gift for your child? A child's classroom? Chocolate Fix might just fit the bill...or fix your gift list! :) My 9yo received this for his birthday and it's been used and loved by him, his teen brother, and my husband. The 8 and up designation makes sense; I think it would be a bit difficult for younger kids.

A perfect blend of fun and logical deduction, a single player must manipulate 9 chocolate game pieces according to the clues given on puzzle cards to come up with the correct arrangement of chocolates. If you play Sudoku, you'll recognize similarities. (For more details, the ThinkFun site --click on "how to play"--features a visual sequence showing how the game is played). Forty puzzle cards are included in a little spiral-bound flip-it book and are ranked by difficulty: beginner, intermediate, advanced, and expert. The set is stored in a drawstring bag for easy traveling.

I grabbed the photo from the ThinkFun website as our game edition (last year's) didn't come with the shape and color placeholders. This is an excellent addition as it would make it much easier to keep track of what is known vs. what is unknown. 

I love the problem solving inherent in the game. This would make a wonderful Math Station/"early finisher" activity for a single student at school or Math Workbox in homeschool. Look at this article on using it to teach geometry.

Over the next few days, I'll be highlighting some of our favorite math games and books. Holiday shopping begin! :)

Disclaimer: I bought my own game and have no affiliation with ThinkFun. If you order from Amazon, all commissions go toward foster care through Grace and Hope at no additional cost to you. THANK YOU! 

Sunday, October 30, 2011

My Life in Numbers II...Real Life Problem Solving

Earlier this week, I posted about a fabulous idea Courtney shared at A Middle School Survival Guide having students make Math Journal or Notebook covers telling math ideas about themselves. I've found that these covers become a fabulous jumping-off point for PROBLEM SOLVING.

After students finish their covers, have them generate several problems on 3x5" notecards that use the information they created. For example, on my cover, I posted the following:


I went ahead and wrote my problem on the cover itself, but would have students write on cards. My question, "How many hours do I sleep each night? Each week?" could then be posed to other students. In the classroom, I could put my cover under the document camera and ask students to answer the question posed on my card(s). They could then share a variety of strategies for solving the problem. In a homeschool setting, children could write problems for siblings or parents to solve. Problems could be written at a wide variety of levels, making them grade and age appropriate.


At the Northwest Math Conference I went to a workshop entitled, "Taking the Numb Out of Numbers" by Don Fraser (Ontario, Canada). He began by telling the group of 30 of us, "Did you know that in a group of 23 or 24 there is a 50% chance that at least two people in the group will have the same birthday?" He then gave us a graph showing us the probability of sharing the same birthday in groups of varying sizes. In a group our size--30 people--the likelihood was 70%. We graphed the days/months for birthdays in the room. Interestingly enough, none of us shared the same birthday...we were in the 30%. After looking at the data, Don asked us to come up with problem solving questions--real life questions--based on the information we'd collected. It was amazing to see how many questions we could generate, at all different levels of mathematical knowledge and proficiency.

Don encouraged us to begin each day by reading a "story" and having kids make up a question/word problem. Going back to the math notebook covers, imagine the possibilities if you put ONE child's notebook cover up each day and asked kids to generate questions from the "stories" found there. The problem solving possibilities are endless!

Thursday, July 21, 2011

Poison Number Game (Great for Road Trips!)

Over at The Teaching Nest, Lauren posted a great game that requires kids to strategize how to take 1 to 2 Unifix cubes away at a time (from a stack of 10) in order to avoid being the person stuck with the last cube...the "poison" cube.

My kids play a similar game, often while riding on long car trips. It's also a great classroom game. Here's how it goes:

Players: 2 or more

Object: Go around the group, counting to 20 by saying either one or two numbers. Avoid being the one to say "20" as 20 is the "poison" number.

So a group of 3 kids might say:

Sue: 1
Bob: 2-3
Joe: 4
Sue 5-6
Bob: 7
Joe: 8-9
Sue: 10-11
Bob: 12
Joe: 13-14
Sue: 15
Bob: 16-17
Joe: 18
Sue: 19
Bob: I'm stuck with 20!

The more you play, the better you get at strategizing how to avoid 20.

Tuesday, July 12, 2011

Where is the SMath?

Where is the SMath is an incredible site to help kids of all ages consider science and math in the everyday world. With each post you'll find a photo and are invited to consider where the science/math (hence, SMath) is in that picture. Readers can see contributions from other students as they attempt to figure out the photo. For example, a recent photo shows a pile of Lego guys. Questions invite you to think about:

How many lego guys do you think there are in this box.  Explain your thinking.

How are the lego guys different and alike?

What are the attributes that make them that way?

This would be a great site to begin your day with students...whether you are in a regular classroom or teaching at home.

Saturday, February 19, 2011

Coupon! Math in the Moment

I love the way Dan Meyer does such a wonderful job of recognizing math problems in the moment. So I tried to catch a moment myself today. During lunch when I was looking through the local grocery ads, ds8 saw a coupon for candy bars, 5 for $2. He remarked, "That's not a good deal! You can get a candy bar for like $.68!" I asked him how much one candy bar would cost if they are 5 for $2 with the coupon. He didn't know. We've only done a tiny bit of basic division, and certainly not division with money, but I decided that he was probably up to this task. So I cut out the ad and told him to use pictures, words, and/or numbers to figure out how much one candy bar would cost.

I knew this would cause a bit of disequilibrium. But I also knew that the right amount of disquilibrium = a great environment for new learning. After thinking a bit, he wrote out a long problem of 10+10 until he'd written 20 tens. He then made 5 boxes and drew curved lines connecting a 10 to each box. In the middle of this he stopped and said, "I know! They cost $.40!" I asked how he knew. He said that there are 20 tens in $2. And 20 divided by 5 equals 40. (Since he seemed to be on the right track and was obviously thinking in decimals, I didn't interrupt.) Then, after a while, he grinned and said, "We should get 4 candy bars for $1.60. Then [brother] and I can each have two so it's fair."


When do you successfully use math in the moment?

Thursday, February 17, 2011

Head Strings: Measuring with String & Tile

We continued our lessons on measurement. The boys enjoyed Inch by Inch, in which an inchworm measures a variety of birds (a flamingo's neck, a toucan's beak, a heron's leg...) only to be told by a nightingale, "Measure my song or I'll eat you for breakfast." The inchworm "measures," moving farther and farther away as the bird sings, eventually inching out of sight.

We then continued a little measurement of our own...

Following the free Math Learning Center lesson**, "Head Strings," I measured the circumference of my head with a piece of yard, lay it on the floor, put 5 colored tiles next to it,  and asked my son to estimate how many tiles would be needed for the total length. He guessed 25 by looking at the first group of tile and explaining it would probably take 5 of those to finish the string. I put tile along about half the string and asked if he wanted to revise his estimate. With 11 tile now along the string, he changed his estimate to 22. He measured the string with tile, finding that it took 23.

 I removed the tile and placed a book next to the string, asking him to use what he knew about the string to estimate the length of the book. He estimated and measured, coming within one tile. I gave him a copy of "Head String Record Sheet," (free pdf) and let him estimate and measure various objects around the house using his own head string and tile. Lastly, we'll be considering how many tile are needed to measure the length of a ruler and reflect on what that says about the size of each tile. (Tile are 1" square.)

My 4yo measured for a bit and then made a train and house with his felt shapes.

**To access the free lesson, including blackline pdfs, go here and download "D2 Measurement: Length in U.S. Customary Units."

Wednesday, February 16, 2011

How Big is a Giant's Foot?

Following our lesson on "How Big is a Foot?" we decided to consider slightly BIGGER feet...

We began by reading Jim and the Beanstalk, a slightly different version of the traditional Jack tale. Both boys enjoyed hearing about how Jim helped the giant by measuring him for new glasses, new teeth (!) and a new wig. We then continued with a little giant measuring of our own.

Using Math Learning Center's free lesson, "Measuring Length in Giant Feet," I constructed a giant foot and asked my son to compare the length of my foot from yesterday's lesson to the new giant foot. He determined that about 3 of my feet equaled one giant foot and told me that the giant foot was then about a yard long. (To access the free lesson, including blackline pdfs, go here and download "D2 Measurement: Length in U.S. Customary Units.") He lay a yardstick on the giant foot to confirm. He estimated, then measured, various things around our house (including his brothers!) in giant feet and recorded it on the record sheet (included in the lessons). Before I set him loose to measure, I asked him, "What kinds of things would be hard to measure with the giant's foot?" He replied, "Anything very small." So he looked for large things to measure.

As big brother was measuring with the giant foot, little brother (4) pulled out paper, traced his flip-flop, cut it out, and began doing measurements of his own. All his idea! So they measured a few things with the small feet as well, considering how different the results could be with different sized feet.

We ended with a reading of a 2-sided book with two points-of-view, Jack and the Beanstalk and the Beanstalk Incident. One side tells the story from the goose's p.o.v. (favoring the giant!) while the other side tells Jack's story in the traditional way.

Monday, November 29, 2010

365 Penguins...and Problem Solving

I first read 365 Penguins while preparing for my math and literature class. (*See note at bottom of post about the related Advent Calendar.)

I love it for it's problem solving possibilities. Since it also starts on New Year's Day, it's timely...

Summary: When a box containing a penguin arrives anonymously on New Year's Day, a family of four is puzzled, but as they continue to receive one penguin each day their problems--and food budget, and storage issues--are multiplied.

While I do not think problem solving should be exploited every time you see a number in a book (an inherent danger with linking lit and math) the scenarios in this book are too good to pass up. Here are just a few of the possibilities. Quotes are from the book. The ensuing problems are mine.

  • “At the end of January, there were thirty-one penguins in the house.”
Problem Solve: If penguins continue arriving at this rate, how many penguins will there be in another week? Two weeks? At the end of February?

  • The family organizes the penguins in triangular stacks to discover that “Four times fifteen equals sixty!”
Problem Solve: What other equal groups could you put the penguins in? (Exploring factors of 60.)

  • On the following page, yet another penguin arrives, making it sixty “Plus one!"
Problem Solve: Can you put the 61 penguins into equal groups? Why or why not? (Exploring prime and odd/even numbers)

  • The penguins must be fed. "Each penguin ate 2.5 pounds of fish per day. A pound costs 3 dollars..."
Problem Solve: By this time, there are 100 penguins. How much does it cost to feed them? How much more will it cost in a month if they continue arriving at this rate? How much will food cost for a year? 

  • Penguins must be organized. Again! The family makes space for 12 boxes of 12 penguins. 
Problem Solve: How many total penguins will fit?

  • Penguins are organized into a cube of 6 x 6 x 6 penguins for storage.

Problem Solve: Now how many penguins?

On December 31st, the 365 guests gather. Uncle Victor arrives to take them away. Life begins to return to normal. Until the doorbell rings with ANOTHER DELIVERY! (I'll let you read the book to find out what happens! It's funny.)

This would make a great living book for math workboxes! It's also going to solve one of my Christmas problems...what to give my 8yo? Shhhhh...he's getting one for Christmas. ;)

*Also consider the 24 Penguins Before Christmas: A 365 Penguins Advent Calendar.

Tuesday, October 5, 2010

Frigits Marble Roll (Gift Idea #3)

We bought the Frigits Deluxe marble roll last Christmas. It's been a hit at our house with ages 3* and up...way up. (*This assumes the 3yo does NOT put things in his/her mouth. That would NOT be true of the child I caught in my son's preschool class this morning. I asked him what the lump was in his mouth and he guiltily spit out a marble. True story.)

I bought the marble roll thinking it would be a good exploratory learning tool prior to beginning our math lessons on "measurement with marbles." While it was great for that, it's also been used by numerous visitors (ages 3-adult), my teens, and...heheh...yes, even myself!

The set is magnetized and designed to stick to a refrigerator. My biggest worry prior to purchase was that the magnets wouldn't be strong enough to really stick well on the fridge. It's been a non-issue...the magnets are VERY strong and no part has ever fallen off. Some parts are more "little kid" (preschool) user friendly than others; to use the entire kit really takes some thought or cause/effect construction skills. My 8yo can use all the parts effectively but it takes some effort...effort he is willing to put in because the result is quite fun. We did not buy the Frigits Extension - Launcher or the Frigits Extension - Corners, but my son says "we should buy a bigger fridge so we can get them."

In order to keep the play interesting, I get this out for up to a month at a time and then take it down for a while. It continues to be a sought-after toy!

See more math "Gift and Game" ideas here.

Disclaimer: I bought my own set. Love it. Make nothing from my review unless you purchase one through Amazon, in which case a few cents commissions (at no cost to you) goes to Grace and Hope to provide foster care in China (see link in banner at top).

P.S. This would make a great math/science workbox activity! :)

Tuesday, September 21, 2010

The Children's Mathematics Calendar 2011 (Gift Idea #1)

In anticipation of the upcoming holidays (yes, sigh, I did see Christmas decor displayed at the store already!), I'll be posting gift ideas...math games and activities that feel like way too much fun to contain real learning! (Heh heh...what the kiddos don't know won't hurt 'em...and might just educate 'em!)

I've had my eye on the first one for several months: The Children's Mathematics Calendar 2011. The creator, Theoni Pappas, is also the author of several well-known math books for children, including titles such as The Adventures of Penrose the Mathematical Cat, Fractals, Googols, and Other Mathematical Tales, Math Talk: Mathematical Ideas in Poems for Two Voices...all titles that I own and use in my math/literature class.

The math calendar contains a new problem each day. Although I haven't seen the 2011 calendar, I own an older one and enjoy the format. According to the Amazon product description, "This calendar includes stories that make math ideas come to life, problems with new twists, and ways to share math exercises with parents and friends. Much more than just a reminder of the date (though it does that too), this calendar stimulates curiosity and imagination and helps children develop a positive attitude about mathematics."

If you are looking for more difficult mathematics, check The Mathematics Calendar 2011, also by Pappas. (I read that the children's version is suitable for grades 3-8.)

I will be compiling a list of gift ideas on my Math Gifts and Games page, linked from the menu on the top of the homepage.

Friday, April 30, 2010

Children's Math Book Reviews

With a sick student (or two) we've been doing a lot of reading. What incredible affirmation as to the power of math combined with literature! Little Student made connection after connection. So on our "no school" day, we learned a TON. (Or is that 2000 lbs?) Here are our top picks:

My opinion about The Wishing Club; a Story About Fractions by Donna Jo Napoli, totally changed. When I read it alone, I wasn't terribly excited. When I read it to my student, his enthusiasm was catching. In the book, siblings, ages 8, 8, (twins), 4, and 2, wish on a star. Over several nights they discover that their wishes are granted in fractions, determined by their ages: 8yos get 1/8, 4yo gets 1/4, 2yo gets 1/2. My student quickly understood the concept of fractions, exclaiming after the second page (which shows four 1/4ths make 1), "then one penny is 1/5th of a nickel!" In the story, the siblings put their wishes together to make one whole wish and get the wish that all of them want. [Concept: fractions]

My current student and I have not talked much about probability. The book, A Very Improbable Story, by Edward Einhorn, proved to be very effective when introducing the topic. Ethan, the main character, wakes up to find a cat, "Odds," attached to his head. An improbable event, indeed! He can only remove the cat if he is able to win in a game of probability. Several games are played and the odds of winning are thoroughly discussed in each scenario. By the end of the book, my student talked about the odds of Ethan winning or not winning the games. He also got a good laugh at the question at the book's end...what's the probability that you will open the book to a page with a picture? (Odds: 32 in 32 or 100% chance.) [Concept: probability]

In Equal Shmequal by Virginia Kroll, some animals witness children playing a game of tug-o-war and set out to play their own game. It quickly becomes obvious, however, that they have a problem making the sides "equal" with five animals competing. But even when the sides have equal numbers, the groups still aren't fair because the weights aren't equal. They set about figuring out how the animals' weight can be evenly distributed by balancing on a park teeter-totter. But when the bear is distracted by honey, they learn that equal effort is also important. Super cute. [Concept: equality]



The Candy Corn Contest by Patricia Reilly Giff is part of "The Kids of Polk Street School" series, chapter books for young readers. This book has a reading level (R.L.) of 1.9 (first grade, ninth month). I read it aloud to my sick 7yo. The story captivated him and he would read ahead over my shoulder and then hide his eyes because he was nervous about the events.

The main character, Richard, would like to guess the number of candy corns in the Thanksgiving class contest. Problem is, each guess is earned by reading a page in a book and Richard is not a good reader. Left alone with the candy jar, temptation becomes too much and he secretly eats several candies. Then what is he to do? He learns the teacher has written the number of candies on the bottom of the jar. Should he change the number? When the class ultimately shares the candies, the reader can think about division. [Concept: estimation, briefly division] Easy reader chapter book.

365 Penguins by Jean-Luc Fromental is an oversized picture book that provides many opportunities for problem solving. Each day, beginning January 1st, a single penguin is delivered to this family's home. After two months they have 31+28 penguins. Then they organize them into 4 groups of 15. But yikes! What about the food? They eat 2.5 lbs of fish/day at $3/lb. By the 100th penguin, it's getting expensive. They decide to arrange the penguins like eggs, in dozens. 12 boxes of 12 penguins. Later, they're stored in a cube shape = 6x6x6. By Dec. 31st, they have 365 guests. At last, Uncle Victor, the ecologist, arrives to transport the penguins. But, on January 1st, another BIG box arrives. Uh oh! [Concept: problem solving]

Thursday, April 1, 2010

Lessons with Mrs. Piggle Wiggle

I know I must have read it before now. I even saw a dramatic presentation a few years ago. But I can't remember ever enjoying Mrs. Piggle Wiggle like I did this time. My little student and I laughed and laughed, sometimes until tears rolled down my face. Perhaps it's because I "know" some of the children in the book?

Using a Graphic Organizer
In the book, parents seek help from Mrs. Piggle-Wiggle, a woman of immense knowledge when it comes to curing childhood problems. She is able to fix anything from selfishness to messiness to slow eating. Each chapter is dedicated to one child, his/her problem, and the cure to that problem. The book's structure makes it perfect for using a graphic organizer such as a chart.

We chose to set up the top/horizontal with some of the characteristics we wished to compare:

1. Who has a problem?
2. What is the problem?
3. How is the problem solved?
4. What is the result of fixing the problem?

On the left/vertical side, the student recorded chapter titles:
*Won't-Pick-Up-Toys Cure
*Answer Backer Cure
Etc...

[The photos do not show the complete chart.]



After reading and discussing each chapter, the student completed the chart. Sometimes this alerted me to elements of the story he hadn't completely comprehended and we could discuss it before he continued.

Vocabulary
The book is rich in vocabulary. If I had it to do again I would have started the vocabulary cards (mentioned here) during this book. We had a great time learning the word "impudent" and discussing ways we could use it in day-to-day life.

Problem Solving, Manipulatives
I plan to talk more about this in future posts, but I like to keep my eyes open for problem solving opportunities as we read. A great one presents itself in the chapter titled, "The Selfishness Cure."

Dick is a selfish boy. His mother asks him to divide a box of candy amongst his friends and reminds him not to forget to save some for the neighbor lady who loves candy. Dick proceeds to clout another child on the hand with a baseball bat when she tries to take some. Dicks mother then tells Mary O'Toole "to divide it up among all the children, even the little ones, and to take one or two sticks over to old Mrs. Burry because she [is] so fond of peppermint.

There [are] fifteen children, not counting Dick, and fifty sticks of candy so..."p. 53 (the book goes on to tell how much each child and Mrs. Burry receive...I stopped reading before the answer was revealed.)

After hearing the problem, my student used base 10 pieces to represent pieces of candy. (You could use any manipulative, although base 10 pieces allow students to use 10s and 1s if they would like.) He chose to use the remainder differently than the text. (Mrs. Burry was more fortunate in the story!)

If you find opportunities for problem solving within your reading, I'd love to hear about it!
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