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Liquid, Solid, or Gas?

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For an interdisciplinary approach to literature, dive into our Winter Earlybird Literature Discovery Guide that features an eclectic mix of wonderfully told stories. It begins with Snowballs by Lois Ehlert, where your child will discover the wonders of the water cycle and how snow comes into being.

Did you know that you can watch the water cycle water cycle in a ziplock bag? For best results, make sure you hang it in a sunny window. We'd love to hear what you discover.

To extend the fun, read All the Water in the World by George Ella Lyon

 

-Sara

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Why Ask?

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I say, "Dissection."
And they say, "Yuk."
 
There are many reasonable reasons to object. 
But there are also many reasonable reasons to overcome. 
 
We should first stop to consider that dissection of a frog, for example, provides a way for our students to experience the complexity of life, the ecology of biological systems, and organs that are similar to our own. Frogs are an important part of the food chain, being consumed on a regular basis by snakes, birds, and even human beings. We teach about it: Hawk eats the snake that ate the frog that ate the grasshopper that ate the grass. And so it goes, day after day in the wild. Still, I always begin dissection reminding students that we are considering something that once lived. This gravity helps to elevate the work at hand but also to exercise empathy. Ultimately dissection is not for the faint of heart. 
 
In my mind the overarching reason to dissect is to learn to ask a question. Simple questions like, "How does this work?" delightfully lead us to complexities.  
 
To make the most of dissection, have sketch paper on hand where students can take notes as they work through the process. Here is where the asking begins. Encourage students to jot down questions as they go.
 
Once the project is complete, they can re-create the details of dissection in their Observation Journal and they can begin looking for answers. This culminating activity will help them to commit the information to memory while simultaneously discovering the WOW inherent to the intricacies of life. 
 
And if you are simply unable to dissect, use the World Wide Web like Marlo did and conduct a virtual dissection. 
 
I'll leave you with this from Jonas Salk who developed one of the first successful polio vaccinations: "What people generally think of as the moment of discovery is really the discovery of the question." 
 
 
-Kim
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Happy Birthday Antonie van Leeuwenhoek!

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It began with a hefty dose of imagination, a glass pearl, and some strands of fabric.

Antonie van Leeuwenhoek, the very first microbiologist never intended to be the world’s first microbiologist. He was actually a tradesman who had never studied science!

From the time he was 16, he apprenticed in a linen-draper’s shop. Soon he became a merchant because he worked diligently. He developed a fascination for the small world that our eyes alone cannot see while working with fabric, using pearls of glass to observe the fine weave of linen.

He developed more than 200 microscopes during his lifetime and made many important discoveries including the first observations of bacteria which he called “animalcules” in 1674, “animals so small, in my sight, that I judged that even if 100 of these very wee animals lay stretched out one against another, they could not reach the length of a grain of coarse sand”.

During his lifetime, he made many discoveries and observations that he carefully documented and illustrated. He died a very old man who accomplished his important work, a work that inspired generations to follow in his footsteps..

So what better way to celebrate the birthday of this man of science (October, 24, 1632) than to create a close observation of something from the micro-world? You can begin with a microscope or, because we live in the 21st century, a Google image!

This amazing drawing of cocci (bacteria that can lead to diseases such as strep throat) was done by former apprentice Marlo. What makes this observation incredible is the detail she included. So did she complete this in 15 minutes? No way! Do you think it took over an hour? One sitting? Two sittings? The answer is unknown. But I can say with certainty that Marlo dedicated sincere concentration to this accomplishment. The reward is, well, obvious!

Anyone can create an observational drawing, think Dory’s song: “Just keep swimming!”

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Collecting Echinoderms

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If you are adventuring through our brand new unit, Taxonomy of Living Things: The Five Kingdoms of Life, meander with me for a moment…

Echinoderm? Whoever said, "It's all in a name," sure got it right. Echinoderms got their name because they are spiny-skinned marine animals. They possess radial symmetry, and many possess 5 arms (or multiples of 5). Sounds oh so scientific, but we've all seen these animals- sea stars, urchins, and sand dollars. 

 
Why not begin an echinoderm collection like we did to get a closer look?  
 
It's easy to collect real echinoderms if you live near the ocean. But if not, you can purchase the skeletons of these familiar creatures easily enough online. 
 
With a collection you can observe intricate details and similarities between species. You can also observe dissimilarity. You can record your observations with drawings and notes in an observation journal. So have a look see, you'll be glad you did. And after you do, explore the poetic possibilities here. 
 
 
-Kim
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Discover Research: Elemental Journal

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Get to know the elements!

Chemistry is much more than complicated theories and experiments in the lab. Chemistry is the foundation of literally everything we know. But for our children, chemistry is at best a daunting subject, at worst downright boring. Mention the word chemistry and they will run! 

Honestly, chemistry is no more daunting than any other subject to be mastered. And chemistry is certainly NOT boring! Developing an imaginative view of chemistry is the key to unlocking its wonders.

This discovery journal will guide students on a wonderful voyage through the mysteries of the periodic table. Over the course of a year students curiosity will be piqued as they will research and catalog their findings of 42 of the 144 known elements. Elemental Journal is an interesting and broad introduction into the fascinating realm of chemistry.

Purchase now through October 1 for back-to-school and use the code FALL RESEARCH for a 10% discount! 

 

-Kim

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Dive into Research and Discover Diversity

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There are two types of things in the world: Living and Non-living!

Everything you can imagine is either…

 

We are pleased to announce a brand new addition to our selection of Research Discovery Guides: Taxonomy of Living Things: The Five Kingdoms.

All living things can be ordered according to their common biology. Classification allows scientists to explore levels of similarity, dissimilarity, and interconnectedness of cells, systems, and structures. The first level of classification is the Kingdoms. There are five: Protista, Monera, Fungi, Plantae, and Animalia. Over the course of 7 weeks, as students explore the diversity of the animal kingdom, they will gather knowledge that will connect to many corners of the field of biology.

During weeks 1 – 3 of this 8-week unit, our scaffolding will guide students independently through reading, gathering information, and thinking activities. Then, during weeks 4 through 8, students will engage in the deeper research of delving into the specifics of each kingdom. They research specific species, making an independent and observational entry as they acquire vital research writing skills.    

Purchase now through October 1 for back-to-school and use the code FALL RESEARCH for a 10% discount! 

 

-Kim

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Ideas of the Original Variety

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I've had the privilege of exploring his architectural scaffolding—Kingdom, Phylum, Class, Order, Family, Genus, Species—with my apprentices during Science Discovery. 

There are four types of sentences: Statement, Question, Exclamation, and Command. Teachers are famous for jotting that last type—command—in swarms on their chalkboards.

But imagine your science teacher marching into class and scribbling this on the chalkboard:

Devise a system for naming and classifying ALL living things. 

Imagine the buggy eyes, the tilted heads, the groans, the tears.

Never happen.

Now imagine a time way before the technological advances that our computer age has to offer. Way, way back before our Declaration of Independence was conceived in the minds of Thomas Jefferson and Benjamin Franklin there was a young man named Carolus Linnaeus. Born on May 23, 1707, in Råshult, Sweden, his father, a lover of all things botanical, introduced him to the joy of observational science. Young Carolus was encouraged to imagine possibility as he tended his very own garden over time. He looked back fondly on that garden as a place that "inflamed my soul with an unquenchable love of plants."

As Linnaeus continued to observe nature, he developed a passion for order.  Over the course of his life, Linnaeus accomplished a great many things—research, publication of scientific papers, a medical practice. Greatest of all, he devised a binomial system for naming and classifying all living things… without the prompting of a teacher's command!

Way before computers, Linnaeus was an information architect.

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It's taken the better part of the year to appropriate the great lessons we chip away at on a daily basis—value silence, process is a slow and steady pacing, your-ideas-matter, work works—but now, like a spring bloom, I marvel at the fragrance of their progress. In a few short weeks, you too will be able to flip through the Science Discovery Journals to experience the wonder of this important work.

So much of education is couched in the promise that technology will ensure success. But so much of what we really desire for our children cannot develop without the passion to care about an academic work at hand and the longitude to explore. Challenging children to engage in the work of idea-making and providing the time to Discover just what it takes to bring shape to that idea, time and time again, leads to Critical Creative Thinking. Truth is, technology is a tremendous asset of our age, but the art of learning is a low-tech endeavor.

Ideas of the original variety begin with a spark of curiosity, not a command, and rarely a click.

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Caterpillars in Micropolis

“We frequently see, at the ends of pine branches, voluminous bags of white silk intermixed with leaves. These bags are, generally, puffed out at the top and narrow at the bottom, pear-shaped. They are sometimes as large as a person’s head. They are nests where live together a kind of very velvety caterpillars with red hairs. A family of caterpillars, coming from the eggs laid by one butterfly, construct a silk lodging in common. All take part in the work, all spin and weave in the general interest. The interior of the nest is divided by thin silk partitions into a number of compartments. At the large end, sometimes elsewhere, is seen a wide funnel-shaped opening; it is the large door for entering and departing. Other doors, smaller, are distributed here and there. The caterpillars pass the winter in their nest, well sheltered from bad weather. In summer they take refuge there at night and during the great heat.”

Jean Henri Fabre on the Processionary Caterpillar

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So begins the march of the Processionary Caterpillar. While children’s author/illustrator Eric Carle might say, “Out pops a very hungry caterpillar,” in this particular case, out pops, single file, not one, but a large family of very hungry caterpillars.

When Fabre observed this caterpillar’s strong instinct to follow-the-leader, its steps locked to the caterpillar being followed, he decided to hypothesize and to test his big idea by setting up a simple experiment. In 1896, he coaxed caterpillars to march in a chain around a flowerpot. And there they circled for days. Round and round and round.

And what did he observe?

Not even food set inches from their proverbial noses distracted the caterpillars from their mindless following.

There was no leader.

And so the caterpillars earned their name.

Scientific observation involves much more than seeing. Providing opportunities for students to observe allows them to practice such skills as collecting, predicting, constructing, perceiving. The art of observation helps  students to risk and ultimately lead.

Jean Henri Fabre’s acute backyard observations laid the foundation for entomology. His earnest observations and insights are collected in ten volumes entitled Souvenirs Entomologiques.

Micropolis, at St Léons, France, is a wonderful destination dedicated to etymology and Fabre’s contribution to this significant branch of science.

Ever marveling at the power of the neologism, I clicked around on the World Wide Web until I came across the Micropolis website. Unfortunately I don’t read, write, or speak French. Still I couldn’t help but poke around a bit as I pondered the word—Micropolis.

And then it struck me.

What a wonderful testament to Fabre. In a single word—Micropolis—the museum communicates the life of a man dedicated to unearthing the diversity of nature in his own backyard.

Da Vinci Summer 2014 is only weeks away. Join the fun as we conjure big ideas for observing the small worlds brimming with diversity that we take for granted, the simple spaces in our very own backyard. Let’s think small. After all, the Renaissance Man himself reminds us, “Simplicity is the ultimate sophistication.”

Kim

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“Tiny Magical Spheres of Wonder”

These curious little balls commonly known as water pearls (I prefer my name) are in a word…captivating.

Their usefulness in exploring science and math are obvious and you can find tons of great ideas all over the Internet for incoroprating these little gems into your learning adventures.

Or maybe simply playing with and marveling at them holds just as much educational value.

Sometimes poetry can be found in the most unexpected places.

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Seven Ways to the Wonders of Chemistry

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Ele4
Ele3
Ele2
Chemistry is much more than a table
of elements, complicated theories, and experiments in the lab. Chemistry is the
foundation of literally everything we know. But for our children, chemistry is
at best a daunting subject, at worst downright boring. Mention the word
chemistry and they will run! That’s
why this year I chose to introduce my elementary and middle school apprentices
to the subject before it was too late.

Honestly, chemistry is no
more daunting than any other subject to be mastered. And chemistry is certainly
NOT boring! Developing an imaginative view of chemistry is the key to unlocking
its wonders.

Here are some ideas to
get started.

1. Transcend the Textbook
There are all sorts of
wonderful books available to help simplify this expansive subject. Chemistry: Getting a
Big Reaction
, by Simon Basher, is a really good introduction for children.

In his book, The Periodic Kingdom, P.W Atkins transforms the periodic table to a
fictitious kingdom where we can explore the potential of its topography. This
is the perfect, albeit heady, way to move beyond the mundane and journey into
the wonderful territory of chemistry.

2. Go Digital
One of the best resources
available on the web is hosted by The University of Nottingham. Trust me, The Periodic Kingdom of Videos is AMAZING, crazy-haired scientist and all! Your apprentices will want to watch
every single video and once they do, they will never be bored by chemistry
again.

Element videos

3. Demonstrate Virtually
These ChemDemos from James Madison University help kids to visualize chemical concepts. (The Gummy Bear Sacrifice is particularly dramatic.)

4. Experiment
Experiencing the wonders
of chemistry is to experiment. But keep it simple. Focus on the concept of
chemical reactions. Teach the budding chemist to hypothesize.

You can purchase a
chemistry kits all over the Web:
Thames & Kosmos and Carolina both have tons of great resources.

Or purchase a book of
experiment recipes like, Janice Van Cleave's Chemistry for Every Kid: 101
Easy Experiments that Really Work
,
by
Janice Van Cleave

5. Play


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The Elements Puzzle: 1000 Pieces, by Theodore Gray
The Periodic Table of Elements Magnets, by Smart
Memory Art
Elementeo Chemistry Card Game, by Alchemist Empire,
Inc.

Periodic Table Playing Cards, by Les Entreprises SynHeme

6. Sing Along


They Might Be Giants – Meet the Elements from They Might Be Giants on Vimeo.


7. Research and Make!
This past week I assigned each of my 22 science
apprentices an element to research. Each would write a three-part paper. The
research paper would begin like all good research papers should, by
communicating the history and basic scientific characteristics of that element.
The paper would move on to discuss the element’s purpose and uses in the wide
world. But I saved the best for last. The third section of the research paper
would move on to a larger discussion of what the element teaches human kind
about human nature. I helped them to begin this consideration by asking, “If
you were an element, what element would you be and why?” The group smiled and
the conversation got lively. Ultimately, this is the challenge that my
apprentices liked best of all because this is the sector of their research
where they were invited to engage imagination. 

I provided each of my apprentices with a frame from
my local craft store—only $1.00 each—and gave them specific instructions to
stain the frame with a color that would best represent or compliment their
element (I, of course provided the watercolor). They were to put periodic table
information on the front of the frame and amazing facts on the back of the
frames. The frames would not only guide them in an oral presentation of their research,
but in the end become a larger than life game for our guild, “Scramble them up
and see how fast you can order them!” 

Here are some wonderful resources to have on hand
during the research:
The Elements: A Visual Exploration of Every Known Atom in the Universe
, and The Photographic Card Deck of The Elements: With Big Beautiful
Photographs of All 118 Elements in the Periodic Table
, by Theodore Gray, and The Periodic Table: Elements with Style! by Simon Basher.

PS – And just for a little more Periodic Table fun!

– Kim