FlipSnack: Turn a PDF into an embeddable Flash Flip Book

What it is: FlipSnack lets students turn PDF documents into embeddable Flipbooks quickly and easily.  Students upload a PDF (or multiple PDFs) to be included in the book and FlipSnack instantly transforms it into an interactive flippable book.  In order to login to FlipSnack, students will need an email address (this can be a temporary email such as Tempinbox or Mailinator).  Students can also login using a Twitter account, Facebook connect, Google connect or MySpace connect.  FlipSnack has some neat options available that other pdf to embeddable book services like Issuu do not have.  Students can choose a template for their Flip including classic, hardcover, coil bound and interactive.  Student also have the ability to customize the background, size and buttons included in their embed.  Students can share their FlipSnack with a unique url, on social media sites and email, or embed it in another website.  The free version lets students embed the finished FlipSnack on a website or blog with a FlipSnack watermark.

How to integrate FlipSnack into the classroom: FlipSnack is a neat way for students (and teachers) to share pdf documents online.  Students can save their work as a PDF and upload into an interactive book that can be embedded on a blog, wiki or website.

Use your classroom computers as a student created library.  Students can upload original stories to a class FlipSnack account to create a library of student work.  During silent reading time, give students the opportunity to enjoy their peers as authors.  This is perfect for an elementary classroom that may not have the email addresses for each student to sign up for a separate account.

Create custom books for your students by combining PDF documents into one customized text-book.  These can be embedded on a class blog, website, or wiki for students to access from anywhere they have internet access.

Upload school handbooks, resources etc. to the classroom and school website for easy access by students and parents.

One of the features I enjoy about FlipSnack is the ability to view statistics for the flip books.  Find out how many views a Flip has had by day, month or all time.

Tips: I often use Issuu to share and embed PDFs.  It has been my go-to favorite for personal use.  I hesitated to use Issuu with students because of the collection of ALL user publications on the home page of the website.  Sometimes these were inappropriate for elementary students.  I like that FlipSnack doesn’t share user-created publications with little eyes.

Take a look at the FlipSnack I created for my new school, Anastasis Academy, embedded below:

 

Please leave a comment and let us know how you are using FlipSnack in your classroom!

Books Should Be Free: Free Audio Books from the Public Domain

What it is: Books Should Be Free is a fantastic collection of audio books that students can download and listen to for free from the public domain.  Books are easily searchable by genre, keyword, title or author.  Books can be downloaded as MP3 files, iPod or iTunes format.  Each book includes a description of the book, full text from Project Gutenberg, a Wikipedia link, and the audio download.  Students can play a snippet of the audio before deciding to download.  The collection is pretty impressive, including my favorite classics.

How to integrate Books Should Be Free into the classroom: Not every child has an extensive collection of books at home, or parents who model a love of reading.  Books Should Be Free expands every classroom and home library by giving students access to some of the most loved books of all time.  Students can download both the audio and accompanying text for a read along or simply listen to the audio file.  Audio books help students build comprehension, fluency and help students develop a love for story.  Books Should Be Free is a great way to start a Reading Buddies program at your school with some MP3 players or iPods that can go home with students loaded up with good books.

Tips: Looking for some more ebooks to expand your classroom library?  Check these out!

Please leave a comment and share how you are using  Books Should Be Free in your classroom!

Using Angry Birds to teach math, history and science

This post has been generously sponsored by iTutorMaths – GCSE Maths Tutors in the UK

Yesterday instead of dutifully writing a blog post, I was having fun building catapults with kids.  I was playing with a transdisciplinary lesson using Angry Birds as my inspiration.  Yes, you read correctly-Angry Birds.

It doesn’t seem to matter what age group or demographic that I talk to, kids (and adults) everywhere are fans of Angry Birds. As I was playing around with Angry Birds (yep I’m a fan too), I started thinking about all of the learning that could be happening.  I have watched a two year old tell an older sister that “you have to pull down to go up higher”.  I have watched as kids master this game through trial and error.  Being the teacher that I am, I started dreaming up a transdisciplinary lesson with Angry Birds as the base.

I happened to be writing an inquiry lesson that has students look at inventions throughout time and thought: the catapult-that is an invention that has technology and concepts that are used even today.  This is one of those inspirational moments that comes when you are drifting off to sleep and has you frantically searching for paper and pen to record as fast as the ideas come.  So what did I do? I got myself out of bed and went to work sketching out a super awesome plan.

Here is the embedded learning that I came up with:

  • Primary Math: positional math language (above, below, left, right, bottom, biggest, smallest), measurement (distance), angles, shapes
  • Intermediate Math: parabolas, velocity, angels, trajectory, acceleration, quadratic formulas
  • Science: simple machines (lever), mechanics, force, energy, velocity/speed
  • History: history of the catapult, changes made to catapult technology throughout history, modern-day inventions that use this technology
  • Music: Tie in with history, what music was popular in the middle ages when catapults were invented (give students a feel for the culture of the time).
  • Art: Tie in with history, what era of art was happening during the middle ages when catapults were invented (give students a feel for the culture of the time).
  • Language Arts: reflection writing, reading text for information (non-fiction books and websites)
  • Learning: application of Angry Birds on students as learners, application of building a catapult on students as learners (I can’t claim this one it was all @stumpteacher with this blog post).

I set up 3 stations of learning and exploration.   In the first station students found Angry Birds on the iPads (now also available on the Internet in Chrome here), guiding questions, sticky notes and books on the history of catapults and simple machines.  Guiding questions were on chart paper and invited kids to join in the question asking by jotting down their own “wonders” on sticky notes and adding them to the chart questions.  At this station students “tested” Angry Birds and were asked to consider energy, force, acceleration, speed, angle and distance as they played.  Kids had fun with this, I anticipated that they would stick strictly to the  iPad and Angry birds but all of the kids looked through the books at some point.  There was a lot of talk about strategy, what they noticed about angle and how far to pull back on the different levels to get the bird to reach the target.

At Station 2 students found random materials that they could use to build their own catapult.  We included small blocks of wood, duct tape, string, rubber bands, paper clips, plastic cups, smaller dixie cups, paint stir sticks, popsicle sticks, plastic silverware,  markers, empty toilet paper rolls, clothes pins and of course the marshmallow to launch.  Students colored their marshmallow with sharpies to look like an Angry Bird (if doing this with kindergarten, be sure to mention that as soon as the marshmallow is colored, it is no longer food…we had a couple who were begging to eat the colored mallow!).  Next, students went to work constructing their catapults.  We offered no instructions and just let them go to town.  There was a lot of trial and error but all of the kids (kindergarten through eighth grade) made working catapults.  Students tested their catapult and experimented with speed, distance, accuracy, fulcrum, angle and force.  After launching the marshmallow bird they measured for distance and recorded.

As students tested we asked them:

  • What makes the catapult more accurate?
  • What makes the bird go the furthest?
  • Does mass affect the results?
  • How do objects move?
  • How do we calculate motion?
  • What is acceleration?
  • What is speed?
  • What are some forces that act on objects in motion?
  • How did the catapult set the marshmallow in motion?
  • Which challenge did your catapult meet best, accuracy or distance?
  • What helped the catapult?
  • What kind of energy did your catapult use?
  • What kind of force?
  • What are other kinds of levers?
  • What are simple machines?
  • What happens when the arm of a lever is shortened or the load is moved?
  • What happens to the force needed to make the load move?
  • What happens when you move the fulcrum?
  • What is the relationship between force and distance?
  • What happens when you adjust the angle?

Students had a fantastic time learning through trial and error and working together to reach our pig targets.  The collaboration among students was neat to watch, students would give each other ideas for fine-tuning the catapults to improve results.

In the third station, students had the opportunity to reflect on what they learned.  We asked them to reflect literally and figuratively.  Literally what did you learn about how a simple machine works, parabolas, measurement, etc.  What did you learn about catapults and how the technology is used today?  Then we asked them to think about the activity figuratively, what can Angry Birds teach them about life? What can it teach them about the learning process?

 

Older students looked at the math and science behind Angry Birds, using screen shots to determine if a bird would make it to the pigs based on parabolas.

Younger students labeled their catapult diagram with the language they learned about simple machines, force, and motion.  Students also labeled the Angry Birds diagram.

To wrap up we discussed the middle ages as a class and went through some of the texts together.  We read the history of the catapult and talked about why it was a necessary invention.  We connected all of this with how the technology is currently being used on air craft carriers (the boys really got into that discussion).

Who knew you could learn so much from a game of Angry Birds?

Here are some of the resources that we used during this lesson:

Projectile Motion simulation

Angry Birds Pig Target

Catapult guide for students

Myth Busters YouTube clip of tree catapult

The Physics of Angry Birds

Angry Birds Geogebra

33 Space Websites to Celebrate the Launch of Endeavour

Did your students get to see the shuttle launch this morning?  What a great way to start a Monday!  Seeing a launch never gets old for me, there is always a sense of wonder and anticipation during count down and launch.  To celebrate the launch of Endeavour, I thought I would share some of my favorite space websites.  In no particular order:

1. We Choose the Moon– An interactive that drops students right into history where they get to witness, and take part in, the Apollo 11 launch and mission.

2. NASA Clickable Spacesuit– An interactive for students to learn about the parts of a spacesuit.

3. Planet Quest: Alien Safari– An interactive exploration adventure that encourages students to find bizarre and extreme organisms that live on Earth.

4. Eyes on Earth 3D- Lets students track missions as they are happening with the satellites that are collecting information about Earth from space.

5. Moon Zoo– Gives students the chance to study the lunar surface while contributing to real science.

6. NASA @ Home and City- Students explore 3D environments where they discover common household and city items that have roots in space exploration.

7. Solar System Scope- A 3D real-time look at celestial positions with planets and constellations in the night sky.

8. NASA’s 50th Anniversary Flash Feature– Best. Website. Ever. An incredible interactive timeline that highlights each decade in the United States space program from 1950 to 2000.

9. European Space Agency– Kid-friendly information about the universe, life in space, lift off, useful space, earth, and more.

10. NASA’s Be a Martian– Students virtually explore and learn about the human-robotic partnership that makes virtual exploration of Mars possible.

11. NASA Space Place– Fun online games, animations, projects, and fun facts about Earth, space and technology.

12. NASA Interactive Timeline–  A multimedia timeline that begins in 500BC and follows the search for extrasolar planets to modern discoveries.

13. Moon in Google Earth–  Take tours of landing sites narrated by Apollo astronauts, view 3D models of landed spacecraft, zoom into 360* photos of astronaut footprints and watch rate footage of the Apollo missions.

14. NASA Images– Find amazing images of the universe, solar system, earth, aeronautics and astronauts.

15. Google Sky– Students get up close and personal with the solar system, constellations, the Hubble Telescope, backyard astronomy, Chandra X-ray Showcase, GALEX Ultraviolet Showcase and the Spitzer infrared Showcase.

16. Buzz Lightyear in Orbit– Teaches students about the next space mission with Atlantis.

17. Station Spacewalk Game– Play the role of an astronaut and repair the ISS.

18. NASA 101– Learn about what NASA does.

19. NASA Anatomy: How Space Technology Improves Human Health- Students learn about how NASA impacts daily life and health.

20. Apollo 11 Launch– Step into the moonshoes of Buzz Aldrin and Neil Armstrong while discovering the lunar landing.

21. Spooky Space Sounds– Listen to real sounds from space.

22. Hubble Celebrates 20 years– View imagery from the Hubble Telescope and learn about history of the Hubble.

23. Galaxy Zoo- Explore the universe and really help scientists.

24. Climate Time Machine– Take an interactive tour through Earth’s climate history.

25. NASA Edge– Students look behind the scenes at NASA with entertaining and informative videos.

26. NASA 360*– Learn about NASA’s past, present and future and how NASA has improved life on earth with these videos.

27. NASA e-clips– Learn about innovative applications of science, technology, , engineering and math through short NASA videos.

28. TEDx NASA– Inspiring talks from TEDx NASA.

29. NASA @ Twitter– Students can follow NASA on Twitter to get up-to-date information on space exploration and discovery.

30. Your Age on Other Worlds– Students can find out how old they would be on other planets.

31. iWas Wondering Astro Game– A scavenger hunt in outer space.

32. Study Jams Solar System– Students view a video and slide show about the solar system.

33. Pipo Club– Travel through the Universe with Pipo.

 

BBC Build a Catapult: the science and math behind the catapult


What it is: Any time students can dig in and discover learning for themselves, I consider it a success.  Recently I ran across the BBC’s DIY build a catapult.  The site lets students explore the history behind the catapult, learn how to build one step by step and then discover principles of velocity, acceleration, force, distance and math.  With the popularity of games like Angry Birds, I think a lesson in the science and math behind the catapult is in order.  I like the step-by-step nature of this site and the way that kids are guided through a series of directions.

How to integrate BBC Build a Catapult into the classroom: Begin with a time of inquiry where students can inquire into how catapults work, what they can launch, what they have been used for in the past and the science and math behind the catapult.  This site will help answer a lot of their questions and even prompt some additional questions.  Students can follow the step-by-step directions for constructing their own catapult.  Give students the opportunity to test their catapults, using the science and math concepts behind the catapult to predict where object will land based on angles and mass.  The science section of the site does a fantastic job of illustrating vertical velocity, horizontal velocity, the circumference of a circle, acceleration, force and mass.  These can be hard to understand concepts on paper (or in textbooks) but when students can see the concept illustrated and apply it, they will begin to build a framework of understanding.

After students understand the concepts of building a catapult, ask them to try building a catapult out of different types of supplies, do some energy sources work better than others?  Ask students to think about objects in our modern-day lives that use the principles or science used in a catapult.

Students can access this site from classroom computers as a learning/building center or go through the steps as a class using a projector-connected computer or interactive whiteboard.

I really appreciated the step-by-step directions for students to follow.  This is such a necessary life skill, and one that I don’t see practiced enough.  If students know how to read, understand and follow directions, the whole world opens for them and Google becomes useful!

Tips: At the bottom of the site are printable versions of the directions for building a catapult.

Please leave a comment and share how you are using  BBC DIY Catapult in your classroom!

The Secret Annex

What it is: The Secret Annex lets students travel back in time to Anne Frank’s hiding place.  Students can explore Anne’s house in a super cool 3D interactive environment.  The Secret Annex gives students an authentic feel for the place where Anne wrote her diary while listening to stories of everyone who lived in the hiding place.  In addition to the 3D hiding place, students can review historical archive material about the war and view unique TV broadcasts where memories are shared.

How to integrate The Secret Annex into the classroom: The Secret Annex is about the closest students can come to traveling through time and experiencing the hiding place.  The site is incredible in its attention to detail.  Each room can be explored with narration describing the room.  The Secret Annex is an excellent addition to any classroom studying World War II, reading the Diary of Anne Frank or studying Nazi Germany.

Explore the Secret Annex as a class using an interactive whiteboard or projector-connected computer for a virtual field trip.  After exploring as a class, allow students to dig deeper into the site learning about all of the guests of the hiding place on classroom computers or in a computer lab setting.

If you are reading the Diary of Anne Frank as a class, use the Secret Annex as a support tool and visual aid so students can picture where Anne composed her diary.  The site does a fantastic job of capturing the feelings of fear, hope, anxiety and relief.

Ask students to imagine that they were hiding in the hideaway.  Use The Secret Annex as a writing prompt for students to explore the feelings, attitudes and observations in diary or journal form.

Tips: Be sure to visit the “This Site” page where you will find more historical information about Anne Frank, a timeline of Anne’s life, student guides to help students who are learning about World War II and teaching materials from the Anne Frank House.

Thank you to Ryan for sending me to this site, I truly have the best readers!

Please leave a comment and share how you are using  The Secret Annex in your classroom!

Eyes on the Earth 3D

What it is: I’m still on my NASA/space kick, this time with Eyes on the Earth 3D from NASA.  This is a neat website that lets students track missions as they are happening with the satellites that are collecting information about the Earth from space.  Students can learn about the earth by choosing a mission to follow, zoom in and out of the globe, view satellite paths, view city and location labels on the map, replace the sun with an “artificial light” and see the view from Earth’s surface.  As students click on the satellite, they will be able to view and discover more information about the mission.  Students can choose to view the 3D Earth in real-time or speed up/slow down the Earth with a time control.  Students can choose to learn more at any time by viewing the official mission home page linked at the bottom of each page.

How to integrate Eyes on the Earth 3D into the classroom: This is a way for students to assume the role of NASA scientist to learn more about the Earth and collect data.  Students can view real data about sea levels, the Arctic sea ice minimum, carbon dioxide readings, global temperature and the ozone hole.  Students can study each mission to gain a better understanding of  what NASA scientists do and study.  If you teach younger students, the 3D globe is a great way to help students understand continents, oceans and earth rotation.

One of the features that I enjoy about Eyes on the Earth 3D is the ability to view the Earth from the satellite view or the satellite from the Earth view.  This will help young students better visualize and understand how satellites work and orbit the Earth.

If your students are studying satellites or NASA missions, assign each student a different mission to study in-depth.  Students can present what they have learned to the class as an oral presentation using the Eyes on the Earth 3D site as a visual.

Tips: Missions can be viewed by what their focus is: atmosphere, oceans or land.  If you are studying any of these, the missions would be a nice tie in.  Students can read or hear about all of this data but I think it is just as important to understand where it all came from and how it was collected.

Please leave a comment and share how you are using  Eyes on the Earth 3D in your classroom!

 

Moon Zoo: Contributing to science with lunar mapping

What it is: The Endeavour Shuttle launch has been delayed but don’t let that keep your students from exploring space, there are some incredible interactive sites that will make your students feel like they get to suit up as astronauts.  Moon Zoo gives students the chance to study the lunar surface while contributing to real science.  Students can get an up close and personal view of the moon viewing images from NASA’s Lunar Reconnaissance Orbiter.  Moon Zoo’s mission is to provide detailed crater counts for as much of the moon’s surface as possible.  Your students can take part in actually helping to count and map out craters and features of the lunar surface.  Students can identify craters with boulders around the rim to help map the regolith across the surface of the moon.  To take part in Moon Zoo, students are shown an image of the lunar surface, the first task is identifying craters in the surface.  Students can click on the “Crater” button and click the center of each crater they see.  Next, students adjust the ellipse to stretch and move their marks so that they are the same size as the crater.  Students search for boulders around the craters, if there are any boulders students can note that by selecting “blocky crater” and marking the most appropriate description.  When finished, students can submit their work to the Moon Zoo database.

How to integrate Moon Zoo into the classroom: I love that Moon Zoo actually lets your students take part in science.  They are contributing to actual lunar research in real and meaningful ways while learning about the moon.  Moon Zoo would be a great activity to complete as a whole class in the elementary classroom.  Tell your students that they are going to be astronauts and complete a “launch” to the moon.  If you have time, students can create official astronaut badges to wear for the big launch.  Using a projector-connected computer or an interactive whiteboard, launch one of the shuttles here.  When you “land” on the moon, let students explore the surface together by hunting for craters in Moon Zoo.  Help students mark craters, look for boulders and map the lunar surface.  Each student should have a chance to make a discovery.  While students wait for their turn, they can track the crater/boulder count on a table to create a graph.  Categories can be small, medium, and large craters found and number of boulders.

Older students can sign up for their own Moon Zoo account, each studying and identifying craters on their own images.  Older students can dig into the science behind mapping craters and learn about how craters can be used to date the moon.

Want to involve your students in more contributing science?  Check out Galaxy Zoo (the hunt for supernovas), Galaxy Zoo Hubble, Planet Hunters, or the Milky Way Project.  This is such a neat way for students to contribute to the scientific community while learning more about space and the universe.

Tips: Registration for Moon Zoo does require an email address.  If your students don’t have an email address of their own, they can use a mailinator or tempinbox address.

Please leave a comment and share how you are using  Moon Zoo in your classroom!

Tiki-Toki: Create gorgeous multimedia timelines

What it is: Tiki-Toki is an absolutely GORGEOUS multimedia timeline creator.  The results are truly a work of art-no joke!  Tiki-Toki is very easy to use, after registering for an account, students are guided step-by-step through creating an interactive timeline.  Students can add text, images (Flickr) and video (YouTube or Vimeo) to a timeline.  Images can be uploaded from a student computer or found through a search on Flickr.  Throughout the creation process, tool tips pop-up to guide students through creation.  Students can share saved timelines with a unique URL.

How to integrate Tiki-Toki into the classroom: Tiki-Toki is a fabulous new way for your students to create and share online.  Timelines are an obvious choice for history projects but can be used throughout the year for a variety of subjects and learning focuses.  Students can reflect on and share learning using a Tiki-Toki timeline.  Students can begin a timeline at the beginning of the year sharing videos, links, pictures and reflections each unit, week, month, or semester until the end of the school year.  This is a nice way to encourage students to reflect on learning while providing them with a record of what has been accomplished throughout the year.

Students can create timelines based on books or literature they are reading.  Young students can create a timeline with information about beginning, middle and end while older students can add supporting details, action, climax and concluding thoughts.  A timeline book report is a welcome change for your logical/analytical thinkers- seriously, offer it as an option!

Timelines can also be used as KWL charts (Know, Want to Know, Learned).  At the beginning of any learning, students can list the facts that they know about the topic. Next, they can brainstorm and write about what they want to know about a topic.  At the end of the unit or semester, students can detail what they have learned including any relevant videos or images.

In science, students can use Tiki-Toki to detail an experiment or scientific method process they go through in a lab.

Tiki-Toki is probably too advanced a tool for primary elementary to use independently, but it can be used with an interactive whiteboard or projector-connected computer to create a timeline as a class.  This is a good way to teach students about timelines while recording learning.

Create an account on Tiki-Toki and record a few pictures of your classroom along with a description of the learning that happened each day.  At the end of the week the timeline can be sent to parents and administration to share what you are working on in your classroom.  This is a fun change from the traditional newsletter and, because it is added to a little at a time, it will give you a break from the Thursday mad-dash-to-finish-Friday-newsletter thing you have going (oh, is that just me?). 😉

Tips: The basic Tiki-Toki account is completely free and contains enough features to keep kids creating with no problem.  The paid accounts include features like shared timeline creation which would also be useful in the classroom.  I’m hoping that Tiki-Toki catches on to the uses for education and comes up with an education version just for us!

A minimum age for use of Tiki-Toki is not specified in the terms of service.  If you work with students who do not have an email address to share, consider using a tempinbox account or mailinator.

A BIG THANK YOU to @anderscj for mentioning Tiki-Toki on Twitter, I have a new favorite timeline creator!

Please leave a comment and share how you are using Tiki-Toki  in your classroom!

SnipSnip.It: Share the best parts of online video

What it is: I don’t know about you, but I am constantly finding great videos online to share with my students.  The problem: I usually only want a small portion of the whole video.  I use SnipSnip.It to crop the video down to only the parts I want to share with students.  SnipSnip.It is easy to use, just copy and paste a YouTube url, choose the start and end point and click “snip”.  Easy! After snipping your video you can embed the shortened video on a website or blog or share the shortened video with a link.  The other benefit: all of the YouTube extras (a.k.a. distractions) are eliminated in the SnipSnip.It version.  Not. Too. Shabby.

How to integrate SnipSnip.It into the classroom: If you happen to be in a school or district that has not blocked YouTube, you are going to find SnipSnip.It very handy!  This is a great way to crop videos to share with students either by URL or embedding the shortened video into a class blog or website.  Even if your school doesn’t have access to YouTube, this may be a great way to try out the Fisch Flip and encourage your students to watch the snipped videos at home in preparation for class the next day.

Tips: This service is so easy that I have no fancy schmancy tips; I’ll just leave you with this: stay classy!

Please leave a comment and share how you are using SnipSnip.It in your classroom!