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With visual programming blocks, you can snap together programs by compiling (combining) them in ways to create anything you can imagine.
 
With visual programming blocks, you can snap together programs by compiling (combining) them in ways to create anything you can imagine.
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(Additional galleries can be found at http://turtleartsite.appspot.com and http://turtleart.org)
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<gallery>
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File:TA-sample1.png
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File:TA-sample2.png
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File:TA-sample3.png
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File:TA-sample4.png
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File:TA-sample5.png
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File:TA-sample6.png
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</gallery>
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===maths===
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<gallery>
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File:TAclock1.png|A clock activity
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File:TAclock2.png
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File:TAclock3.png
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File:TAclock4.png
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File:TAgeometry.png|Calculating the hypotenuse and approximating the angle of a right triangle
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File:TAgeometry1.png|Stepping through the program is a nice way to visualize the process of approximation
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File:TAgeometry2.png|The final result of the approximation.
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File:Sine.png|And on-the-fly function definitions
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File:US currency.png|Currency (using plugin)
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</gallery>
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Tony Forster describes his "adventures" with on-the-fly definitions to create an [http://4.bp.blogspot.com/_fTmGyLerUL4/SY0URR-P7TI/AAAAAAAAAN4/XySQUPHmiME/s1600-h/clockface.jpg analog clock] in [http://tonyforster.blogspot.com/2009/02/using-insert-function-block-in.html his blog.]
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Try any of the [http://docs.python.org/library/time.html time] or [http://docs.python.org/library/math.html math] library functions, e.g.,
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localtime().tm_min
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sin(x) + sin(pi/2)
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===presentations===
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<gallery>
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File:Portfolio14.png
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File:Portfolio13.png
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</gallery>
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===games===
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Turtle Art can be used to write games, such as a simple falling block game:
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<gallery>
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File:WeGotGame.png
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File:Hot-cold.png
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File:Yes-no.png
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File:State-game.png
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File:Boston-game.png
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File:Continent-game.png
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File:Gardner-school.png
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File:Shapes-game.png
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</gallery>
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===sensors===
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Turtle Art supports sensor input:
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<gallery>
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File:Bike odometer.png|Using a Hall-effect sensor, you can build a bike odometer in Turtle Art
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</gallery>
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More ideas for sensors [[http://wiki.sugarlabs.org/go/Activities/TurtleArt/Using_Turtle_Art_Sensors]]
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[[http://wiki.sugarlabs.org/go/Activities/TurtleArt/Uso_de_TortugaArte_Sensores]]
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===student work===
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Students from Caacupé have been sending me examples of their work:
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<gallery>
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File:Mi bici.png|Eduado Fabian Ayala Vargas
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File:TmpNW2JGh.png|Johana Soeli Aquino
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File:Circulo colores.png|Ivan Silva
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File:Tmp4FAsHi.png|Rodrigo Nicolas Valdéz Bobadilla
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File:Captura pantalla de Actividad TortugArte.png|Juan Pablo Espinola Carballo
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File:Flora.png|Miguela
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</gallery>
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===Just for fun===
   
<gallery>
 
<gallery>
File:Galapagos.png|my elder cousin
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File:TA-appspot.png|http://turtleartsite.appspot.com
File:Hot-cold.png|[http://www.dailymotion.com/user/sugarlabs/video/x9dsjf_hotcold-game_creation (video)]
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File:TA-org.png|http://turtleart.org
File:State-game.png|[http://www.dailymotion.com/user/sugarlabs/video/x9xz9o_stategame_tech (video)]
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File:Pie1.png
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File:Pie2.png|[http://5toescuela3.blogspot.com/2009/07/actividades-para-sugar.html Using Turtle Art for pie charts]
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File:Keyboard.png|Q: How do I cast keyboard input to a string? A: Use chr().
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File:Explicit_approach.png
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File:Approximation_approach.png
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File:100_turtles.png
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File:RFID.png
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File:TurtleTrees.png
   
</gallery>
 
</gallery>
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=== Recent features ===
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{{:Activities/Turtle Art/Gallery}}
 
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<gallery>
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File:Coordinates.png|Cartesian and polar coordinate grids
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File:Collapsible.png|Collapsible stack
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File:Collapsed.png|Collapsed stack
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File:Python-expandable.png|Python function with one, two, or three variables
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File:Bullets-two.png|Expandable bullet list (two bullets)
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File:Bullets-four.png|Expandable bullet list (four bullets)
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File:Large-blocks.png|Enlarged blocks
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File:Small-blocks.png|Shrunken blocks
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File:100Turtles.png|100 Turtles
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File:TA-savesvg.svg|SVG output using the save SVG block
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File:TA-multivariable.png|Multi-variable Python blocks
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File:TAMaze.png|Turtle 'sees'
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</gallery>
 

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