Planets Cards!

Do you need a Solar System? I’ve got one for you.

Bear with me, deep linking to the following website doesn’t work, so follow these quick instructions to acquire your own Solar System:

  1. Go to Pacific Science Center’s website: http://www.pacificsciencecenter.org/
  2. Click on “Store” in the middle of the right-hand column.
  3. Click on “Gifts” in the left column.
  4. Click on “Educational” in the middle pane.
  5. You’re there! See “Solar System Cards” in that list? I made those. There are 44 awesome objects in our Solar System – plus several blanks and a list of suggested activities.

Funny Story:

So a few years ago, shortly after receiving my teaching certificate, Pluto was “demoted.” (In fact, my very first AstroInfo was about the new definition of planet!) Although people have many, many feelings about this, and there’s an ongoing argument, I’m going to ignore that part of the story for the time being.

What this created was a difficulty for teachers. Do we still teach Pluto? Does “My Very Eager Mother Just Served Us Nine Pizzas” become “My Very Eager Mother Just Served Us Nachos”? Does “Mary’s Violet Eyes Made John Stay Up Nights, Period” become “Mary’s Violet Eyes Made John Stay Up Nights”? What if Pluto is reinstated next year? What if you live in Illinois?

Well, the first question is easy. You most definitely still teach about Pluto. It’s not like the demotion made it evaporate out of our Solar System or disappear into nothingness. In fact, now it is probably more important to teach Pluto, since it’s the best-known representative of several whole classes of objects (Kuiper Belt Objects, Plutinos, Dwarf Planets, and Trans-Neptunian Objects). As we discover more and more of these, kids (and adults) need to know at least where these new discoveries are taking place. Teaching about Pluto helps with that.

But if it’s not a planet, what is it? What do I call it? What if they change the name? How can I teach science, if science is changing all the time? Those first two questions you can look up on the internet. The second two suggest some thought.

How can I teach science, if science is changing all the time?

This is a great question, and it applies to more than just “The Pluto Debate,” but that’s where I started. And it turns out, I wasn’t the only educator working on this problem. Anna Hurst from the Astronomical Society of the Pacific, and John Ericson at the Lawrence Hall of Science were also focusing on giving teachers a new way to teach the Solar System in the wake of The Pluto Kerfuffle. We were not in correspondence. We were not discussing this with each other, we did not meet and work on this problem together. In fact, I don’t think I met either of them until long after this.

Yet we all came up with the same solution: a set of cards or slips of paper, each with information about a different object in our Solar System.  Teaching the Solar System was going to have to evolve from “facts about each of the nine planets” to something that was more closely related to a lot of what planetologists actually do: classify, categorize, and identify. This mean that the new way of teaching the Solar System needed to involve dozens of objects, not just eight or nine, because there are actually dozens, hundreds, thousands of objects in our Solar System!

Besides the inherent flexibility and educational merit of this new activity, it also gives you a positive and fun way to teach about what happened to Pluto. You can allow your students to make their own definitions for planet, and see which objects fit (or don’t fit) their definition.

Anyway, I find it fascinating that the three of us came up with the same activity independently. I’m sure that many other teachers around the world also must have thought of this idea too, and so I claim no copyright or patent on the activity, but if you don’t have time to make your own set of 30-50 cards, you can (finally) just purchase a set from us – and support both my job and my planetarium while you’re at it!

If you’re interested in  John and Anna’s versions:

Lawrence Hall of Science Gread Explorations in Math and Science (since I can’t remember exactly which module has this activity, I’ll send you to the general link. If you know where it is, let me know!)

Astronomical Society of the Pacific’s The Universe in the Classroom, Issue #70 Hubble Observations of Pluto and Ceres. Scroll all the way down to “Activity 1: Sorting the Solar System” and the cards are there.

There is also a printable (draft) version of my cards, but I recommend ordering a nice set from above, since all the attributions for the photographs are correct, and multiple people have proofread them. The drafts will get you through the activity just fine, but the cards are a bit better.

A List of Dwarf Planets

Updated September 18, 2008

Haumea:

Diameter: 1,320-1,550 km
Orbit Radius: 35.161-51.525 AU
Moons: Hi’iaka and Namaka
Composition: almost all rock
Discovered: 2003 Mike Brown, Chad Trujillo, and David Rabinowitz or Francisco José Aceituno Castro, Pablo Santos-Sanz, and Jose-Luis Ortiz
Resource: http://www.planetary.org/blog/article/00001649/, http://web.gps.caltech.edu/~mbrown/2003EL61/
Other Classifications: Plutoids, Trans-Neptunian Object, Kuiper Belt Object

Make-make:

Diameter: 1,600 km
Orbit Radius: 38.666-52.809 AU
Moons: ?
Composition: ?
Discovered: 2005 Mike Brown, Chad Trujillo, and David Rabinowitz
Resource: http://www.planetary.org/blog/article/00001553,
http://www.mikebrownsplanets.com/2008/06/whats-in-name.html
Other Classifications: Plutoids, Trans-Neptunian Object, Kuiper Belt Object

Eris:

Diameter: 2400 km
Orbit Radius: 38.17- 97.61 AU
Moon: Dysnomia
Composition: roughly half rock, half ice
Discovered: 2003-2005 Mike Brown, Chad Trujillo, and David Rabinowitz
Resource: http://www.planetary.org/explore/topics/trans_neptunian_objects/eris.html
http://web.gps.caltech.edu/~mbrown/planetlila/
Other Classifications: Plutoids, Trans-Neptunian Object, Kuiper Belt Object

Ceres:

Diameter: 950 km
Orbit Radius: 2.98 AU
Moons: none
Composition: rock with 17-27% water ice
Discovered: 1801 by Guiseppe Piazzi
Resource: http://www.planetary.org/explore/topics/asteroids_and_comets/ceres.html
Other Classifications: Asteroid

Pluto:

Diameter: 2,306 km
Orbit Radius: 30.164- 48.494 AU
Moons: Charon, Nix, Hydra
Composition: probably a mixture of 70% rock and 30% water ice
Discovered: 1930 by Clyde Tombaugh
Resource: http://www.nineplanets.org/pluto.html
Other Classifications: Plutoids, Trans-Neptunian Object, Kuiper Belt Object

Want More?

Planetary Names List of Dwarf Planets
Planetary Society List of Notable Trans-Neptunian Objects

Where’d I Get My Info?

Thanks to Mike Brown, Emily Lakdawalla, and Bill Arnett

Thanks Mike Brown!

Yii! My blog stats just skyrocketed (for me anyway) – and most of the incoming clicks are from Mike Brown’s blog (Mike Brown of multiplicitous dwarf planet discovery fame).

Wow. The net is so interconnected. (That being the point)

Thanks all. Maybe someday you’ll start commenting. Or maybe not. See you!

A New (Dwarf) Planet!

Makemake. A new name to add to your list.

Makemake (pronounced “maki-maki” “MAH-kay MAH-kay”) is the newest dwarf planet. It was discovered in 2005, but just gained its new official status (and name) in mid-July.

Kuiper Belt Objects
Artist’s conception of the largest known Kuiper Belt Objects and their moons.
Credit: A. Feild (Space Telescope Science Institute) edited by Alice

“Makemake is the creator of humanity and god of fertility in the mythology of the South Pacific island of Rapa Nui, known to most speakers of English as Easter Island” says Emily Lakdawalla. Oddly enough, in the interim between discovery and official naming, Mike Brown and his cohort have been calling this solar system object “Easterbunny.”

Want More?

Emily’s got a great article over at The Planetary Society
Mike Brown’s Commentary (He’s the one who named it)

Where’d I Get My Info?

USGS’s official site