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name="Stage" width="480" height="360" costume="1" color="255,255,255,1" tempo="60" threadsafe="false" volume="100" pan="0" lines="round" ternary="false" codify="false" inheritance="true" sublistIDs="false" scheduled="false" 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id="2"><item><costume name="mauve" center-x="240" center-y="180" 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y="555"><block s="clear"></block><custom-block s="carbon monoxide x: %n y: %n"><l>0</l><l>0</l></custom-block></script><script x="215" y="555"><block s="clear"></block><custom-block s="carbon dioxide x: %n y: %n"><l>0</l><l>0</l></custom-block></script><script x="22" y="651"><block s="clear"></block><custom-block s="methane x: %n y: %n"><l>0</l><l>0</l><comment w="90" collapsed="true">extra credit</comment></custom-block></script><script x="263" y="436"><block s="clear"></block><custom-block s="o3 x: %n y: %n"><l>0</l><l>0</l></custom-block></script><script x="533" y="438"><block s="clear"></block><custom-block s="hydrogen peroxide x: %n y: %n"><l>0</l><l>0</l></custom-block></script><script x="395" y="435"><block s="clear"></block><custom-block s="water x: %n y: %n"><l>0</l><l>0</l></custom-block></script><script x="18" y="296"><block s="clear"></block><custom-block s="oxygen x: %n y: %n"><l>0</l><l>0</l><comment w="80" collapsed="true">definition given.  you will create similar definitions for hydrogen and carbon based on the definition of oxygen.</comment></custom-block></script><script x="263" y="297"><block s="clear"></block><custom-block s="hydrogen x: %n y: %n"><l>0</l><l>0</l><comment w="80" collapsed="true">make sure the radius is 25.</comment></custom-block></script><script x="506" y="299"><block s="clear"></block><custom-block s="carbon x: %n y: %n"><l>0</l><l>0</l></custom-block></script><script x="72" y="372"><block s="clear"></block><custom-block s="o2 x: %n y: %n"><l>0</l><l>0</l><comment w="90" collapsed="true">definition given.  you will create definitions for all the other molecules in a manner similar to this.</comment></custom-block></script><script x="376" y="102"><block s="receiveKey"><l><option>v</option></l></block><block s="clear"></block><block s="setColor"><color>145,26,68,1</color></block><custom-block s="circle radius: %n x: %n y: %n"><l>58</l><l>140</l><l>100</l><comment w="80" collapsed="true">circle definition is almost, but not quite circle looking.  change the definition to make it look more like a circle</comment></custom-block></script><script x="13" y="130"><block s="receiveKey"><l><option>space</option></l></block><block s="clear"></block><block s="setColor"><color>145,26,68,1</color></block><custom-block s="electron x: %n y: %n"><l>0</l><l>0</l><comment w="80" collapsed="true">electron looks like a triangle at first.  fix the definition of circle and electrons will look like dots instead of triangles</comment></custom-block></script></scripts></sprite></sprites></stage><hidden></hidden><headers></headers><code></code><blocks><block-definition s="polygon sides: %&apos;sides&apos; radius: %&apos;radius&apos; x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input><input type="%n"></input><input type="%n"></input></inputs><script><block s="up"></block><block s="gotoXY"><block var="x"/><block var="y"/></block><block s="forward"><block var="radius"/></block><block s="turn"><block s="reportSum"><l>90</l><block s="reportQuotient"><block s="reportQuotient"><l>360</l><block var="sides"/></block><l>2</l></block></block></block><block s="down"></block><block s="doRepeat"><block var="sides"/><script><block s="forward"><block s="reportProduct"><block s="reportProduct"><block s="reportMonadic"><l><option>sin</option></l><block s="reportQuotient"><block s="reportQuotient"><l>360</l><block var="sides"/></block><l>2</l></block></block><block var="radius"/></block><l>2</l></block></block><block s="turn"><block s="reportQuotient"><l>360</l><block var="sides"/></block></block></script></block><block s="up"></block></script></block-definition><block-definition s="circle radius: %&apos;radius&apos; x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input><input type="%n"></input></inputs><script><custom-block s="polygon sides: %n radius: %n x: %n y: %n"><l>21</l><block var="radius"/><block var="x"/><block var="y"/></custom-block></script></block-definition><block-definition s="carbon x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><block s="up"></block><block s="setSize"><l>3</l></block><block s="setColor"><color>56,0,8,1</color></block><custom-block s="circle radius: %n x: %n y: %n"><l>25</l><block var="x"/><block var="y"/></custom-block><custom-block s="electron x: %n y: %n"><block s="reportSum"><block var="x"/><l>0</l></block><block s="reportSum"><block var="y"/><l>25</l></block></custom-block><custom-block s="electron x: %n y: %n"><block s="reportSum"><block var="x"/><l>0</l></block><block s="reportSum"><block var="y"/><l>-25</l></block></custom-block><custom-block s="electron x: %n y: %n"><block s="reportSum"><block var="x"/><l>-25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="electron x: %n y: %n"><block s="reportSum"><block var="x"/><l>25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block></script></block-definition><block-definition s="hydrogen x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><block s="up"></block><block s="setSize"><l>3</l></block><block s="setColor"><color>199,45,0,1</color></block><custom-block s="circle radius: %n x: %n y: %n"><l>25</l><block var="x"/><block var="y"/></custom-block><custom-block s="electron x: %n y: %n"><block s="reportSum"><block var="x"/><l>0</l></block><block s="reportSum"><block var="y"/><l>25</l></block></custom-block></script></block-definition><block-definition s="water x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l>-25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l>75</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block></script></block-definition><block-definition s="oxygen x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><block s="up"></block><block s="setSize"><l>3</l></block><block s="setColor"><color>255,255,245,1</color></block><custom-block s="circle radius: %n x: %n y: %n"><l>25</l><block var="x"/><block var="y"/></custom-block><custom-block s="electron x: %n y: %n"><block s="reportSum"><block var="x"/><l>0</l></block><block s="reportSum"><block var="y"/><l>25</l></block></custom-block><custom-block s="electron x: %n y: %n"><block s="reportSum"><block var="x"/><l>0</l></block><block s="reportSum"><block var="y"/><l>-25</l></block></custom-block></script></block-definition><block-definition s="electron x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><custom-block s="circle radius: %n x: %n y: %n"><l>3</l><block var="x"/><block var="y"/></custom-block></script></block-definition><block-definition s="hydrogen peroxide x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l>-25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>75</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l>125</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block></script></block-definition><block-definition s="o2 x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>-25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block></script></block-definition><block-definition s="o3 x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>-25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>75</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block></script></block-definition><block-definition s="carbon monoxide x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><custom-block s="carbon x: %n y: %n"><block s="reportSum"><block var="x"/><l>-25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block></script></block-definition><block-definition s="carbon dioxide x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>-25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="carbon x: %n y: %n"><block s="reportSum"><block var="x"/><l>25</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>75</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block></script></block-definition><block-definition s="methane x: %&apos;x&apos; y: %&apos;y&apos;" type="command" category="looks"><header></header><code></code><translations></translations><inputs><input type="%n"></input><input type="%n"></input></inputs><script><custom-block s="carbon x: %n y: %n"><block s="reportSum"><block var="x"/><l>0</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l>-50</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l>50</l></block><block s="reportSum"><block var="y"/><l>0</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l></l></block><block s="reportSum"><block var="y"/><l>-50</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l></l></block><block s="reportSum"><block var="y"/><l>50</l></block></custom-block></script></block-definition></blocks><variables></variables></project><media name="lab 3, molecules, function composition, starter pack" app="Snap! 5.1, http://snap.berkeley.edu" version="1"></media></snapdata>