<snapdata remixID="9084763"><project name="Coding with Molecules Elie Bodner (Lab 3.2)" app="Snap! 5.1, http://snap.berkeley.edu" version="1"><notes></notes><thumbnail>data:image/png;base64,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</thumbnail><stage 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" id="1"><pentrails>data:image/png;base64,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</pentrails><costumes><list id="2"><item><costume name="mauve" center-x="240" center-y="180" image="data:image/png;base64,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" id="3"/></item></list></costumes><sounds><list struct="atomic" id="4"></list></sounds><variables></variables><blocks></blocks><scripts></scripts><sprites><sprite name="Coding with Molecules" idx="1" x="152.89018281481276" y="24.195734311957267" heading="197.35055679913353" scale="1" volume="100" pan="0" rotation="1" draggable="true" hidden="true" costume="0" color="255,255,255,1" pen="tip" id="9"><costumes><list struct="atomic" id="10"></list></costumes><sounds><list struct="atomic" id="11"></list></sounds><blocks></blocks><variables></variables><scripts><script x="10" y="10"><block s="clear"></block><block s="setColor"><color>145,26,68,1</color></block><custom-block s="polygon sides: %n radius: %n x: %n y: %n"><l>50</l><l>50</l><l>0</l><l>0</l><comment w="80" collapsed="true">you are given polygon, this is a demonstration of how it works.  feel free to change the numbers and see what difference it makes.</comment></custom-block></script><script x="13" y="163.99999999999994"><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="89" 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><script x="484.9999999999999" y="18"><block s="clear"></block></script><script x="19" y="554.9999999999999"><block s="clear"></block><custom-block s="carbon monoxide 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="75" y="88"><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>50</l><l>0</l><l>0</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="22" y="430.0000000000002"><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="263" y="436.0000000000002"><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="438.0000000000002"><block s="clear"></block><custom-block s="hydrogen peroxide x: %n y: %n"><l>0</l><l>0</l></custom-block></script><script x="395.0000000000001" y="435.0000000000002"><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="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="233" y="251"><block s="clear"></block><custom-block s="hydrogen x: %n y: %n"><l>0</l><l>0</l><comment w="80" collapsed="false">make sure the radius is 25.</comment></custom-block></script><script x="286" y="606"><block s="clear"></block><custom-block s="butanol x: %n y: %n"><l></l><l></l></custom-block></script><script x="271" y="540.9999999999999"><block s="clear"></block><custom-block s="carbon dioxide x: %n y: %n"><l>0</l><l>0</l></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>100</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="setColor"><color>5,2,0,1</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><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><block s="setColor"><color>255,255,245,0.9215686274509803</color></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="setColor"><color>255,41,73,1</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><block s="setColor"><color>255,255,255,1</color></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>-75</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>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="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="reportDifference"><block var="x"/><l>25</l></block><block var="y"/></custom-block><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>25</l></block><block var="y"/><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></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="reportDifference"><block var="x"/><l>50</l></block><block var="y"/><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><custom-block s="carbon x: %n y: %n"><block var="x"/><block var="y"/></custom-block><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>50</l></block><block var="y"/><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></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 var="x"/><block var="y"/></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l>50</l></block><block var="y"/></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportDifference"><block var="x"/><l>50</l></block><block var="y"/></custom-block><custom-block s="hydrogen x: %n y: %n"><block var="x"/><block s="reportSum"><block var="y"/><l>50</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block var="x"/><block s="reportDifference"><block var="y"/><l>50</l></block></custom-block></script></block-definition><block-definition s="butanol 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="reportDifference"><block var="x"/><l>100</l></block><block var="y"/></custom-block><custom-block s="carbon x: %n y: %n"><block s="reportDifference"><block var="x"/><l>50</l></block><block var="y"/></custom-block><custom-block s="carbon x: %n y: %n"><block var="x"/><block var="y"/></custom-block><custom-block s="carbon x: %n y: %n"><block s="reportSum"><block var="x"/><l>50</l></block><block var="y"/></custom-block><custom-block s="oxygen x: %n y: %n"><block s="reportSum"><block var="x"/><l>100</l></block><block var="y"/></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportDifference"><block var="x"/><l>150</l></block><block var="y"/></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportDifference"><block var="x"/><l>100</l></block><block s="reportSum"><block var="y"/><l>50</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportDifference"><block var="x"/><l>100</l></block><block s="reportDifference"><block var="y"/><l>50</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportDifference"><block var="x"/><l>50</l></block><block s="reportSum"><block var="y"/><l>50</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportDifference"><block var="x"/><l>50</l></block><block s="reportDifference"><block var="y"/><l>50</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block var="x"/><block s="reportSum"><block var="y"/><l>50</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block var="x"/><block s="reportDifference"><block var="y"/><l>50</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>50</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l>50</l></block><block s="reportDifference"><block var="y"/><l>50</l></block></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l>150</l></block><block var="y"/></custom-block></script></block-definition></blocks><variables></variables></project><media name="Coding with Molecules Elie Bodner (Lab 3.2)" app="Snap! 5.1, http://snap.berkeley.edu" version="1"></media></snapdata>