<snapdata remixID="9085590"><project name="Aaron and Emil Lab 3 2.0" 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,iVBORw0KGgoAAAANSUhEUgAAAeAAAAFoCAYAAACPNyggAAAgAElEQVR4Xu3dC5Rc9XXn+9+u6paEoLtaqIExdi4BBBgsjLETG8+9jhV3V7OYAaPEMFxbArxIcseQ8ROMMbEhAWIwj/g1Ac/EYYEAezzgBAxzuXR1O3J87/Xj2jyMkAMICLMCDqYl+lRLQlJX1b7rVFWrH3qg7q7uc/6nv7VWViyp6vz3/uxj/7qqz6m/iQcCCCCAAAIIzLuAzfuKLIgAAggggAACIoA5CRBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxBAAAEEEEhAgABOAJ0lEUAAAQQQIIA5BxAIUMA7i2slHSd5TdILVh5YF2AblIzAghYggBf0+Gk+NAEvfOBYWf77cp00qXb3jbLaBy36wXOh9US9CCxUAQJ4oU6evoMU8M7iBpnettfi3Z6ycv/KIBujaAQWoAABvACHTsthCnhn7wUyu3NC9RVJbZPfCet8K5fuDrNDqkZgYQkQwAtr3nQbkIB3rlohW3SO5J2N3/fqPZJ+6w1aeFFuP5Rpg7z6snK1DTb8D08E1DalIrBgBAjgBTNqGg1FwDtWdSu36FNyv1SmJbOu2/0eVexy2156edbH4gAIINAyAQK4ZZQcCIHZCfghfYcrX/u0ZBdLKszuaHu8epukv1Z1x8229UevtvjYHA4BBGYgQADPAI2XINBKAT+45wi12aWSPiZZx5Rjv6D4Hazsack3KWd/u8cV0GMvcG1UvvYx1Sy+EOtkKdcn+bGTj+fDcvuK8v41e20gamUfHAsBBKYnQABPz4tnI9BSAS/03Sr5xyRN+e+i/1LSNRYNfG/igvXbkDz/wB5XQps2yqt73IbkhWKPpC9JeveUwrdIdrui/s+ZFN9LzAMBBOZZgACeZ3CWQ2D3G9bO4lUy/cUUkcdktWtsePD+/UnVr4iWjpYsJ+nZN7ry2bt6z64HsduU+4d1l5VL8bF4IIDAPAsQwPMMznIIxALe1Xut3L4wQeN51eyTNtL/0FwJefwuu6PnAuVycegfNWGdWywqXTZX63JcBBDYuwABzJmBwDwLeKH3esmumLDsI4qW/KHpwe3zUYrrjMUqVG+X/CPj6/kNFg18fj7WZw0EEGgIEMCcCQjMo4AXijdLii+4aj78fkWVD5vW75jHMlR/N9zZd4fMxz9+Nr/Ohge+OJ91sBYCC1mAAF7I06f3eRNwKafO4h0ynT8hfL+r6OULTBt3zVshExZynZtX4bX4Cuvzxn8e0NVWLl2TRD2sicBCEyCAF9rE6TcRAS/03ST5+O9Z3dapXLjIdG81kYLG3n/rpEUqHPldyVaP12G3WdR/SZJ1sTYCC0GAAF4IU6bHRAV8WW9BNXte0qGNQvzbigbWmuJPgpN/uFYtUaE9vur69N25XKm9ybYNvpJ8dVSAQHYFCODszpbOUiLgk283elFR2wmmh3empLzGjwQ6a6kKO56UdEzzh4SbLBq4PE01UgsCWRMggLM2UfpJlYAf8r7DlF/8jGRd9cJqtY/ayODEHY1SU6939J2pnD/YDOARVXMrbGv/b1JTIIUgkDEBAjhjA6WddAl4ofhlSY13kuYbNTywMi0fPe9NygvFRyWd2gxhbk1K1+lENRkTIIAzNlDaSY+ALy0eqXY9I+ngZgCvtuGBB9JT4Z6VeFfPannu75v/Eqk2usJG1g+luWZqQyBUAQI41MlRd+oFvLP3bpmtaRb6M4tK8X6+qX94ofcJyd7eKNT+0qL+id/Ylfr6KRCBUAQI4FAmRZ1BCXjX758ib3t8QtG9FpUGQ2jCC70fkuy+eq2uHdLoyVZevymE2qkRgZAECOCQpkWtwQh4Z88aWe7u5rvI5yzqXxFM8XHuForxbVNHN+v/vEX9N4RUP7UiEIIAARzClKgxOAEv9H1W8hsbhfttFg0E9cUW3tl7rWz3ZhHXW1S6MrghUDACKRcggFM+IMoLU8A7++4c/55lv8SigdtC6sQ7i2tluqtZ830Wlc4NqX5qRSAEAQI4hClRY3ACXuj9hWTvrBeeq/2evTb4o5Ca8M7e02T242bNj1tUat6aFFIX1IpAugUI4HTPh+oCFGhucjAi2UGNT6Bzy638yJaQWvGOnuXK5cZuP9pmUemQkOqnVgRCECCAQ5gSNQYl4B09xyuXe7pZ9EsWld4SVAPNYr1QjAN4ef2Pu6pvsdd/8FKIfVAzAmkVIIDTOhnqClbAO/vWyLx5BbT6LSqNbXIQVE9eKMYfQZ9WL9q0yoZLPwyqAYpFIOUCBHDKB0R54Ql4V++18uYVxO7fsPLAJ8LrQvLO4l0yrW0G8GU2XLolxD6oGYG0ChDAaZ0MdQUr4F3FS+W6ud6A624rl84PsRnv7P26zD7eCGC/zoYHvhhiH9SMQFoFCOC0Toa6ghXwruL75VrfbOAnFpXeG2IzXig+Iqmv8YOErbVy/z0h9kHNCKRVgABO62SoK1gBP+gDb9ai/L80G9hsUak7xGa8UIx7eHO99lrtBBsZjDeW4IEAAi0SIIBbBMlhEJgo4IXi1t27INVq3TYyuDkkIe88/VBZrVmzv65oWYfp3mpIPVArAmkXIIDTPiHqC1LAC8XHJL2j8fGtv9fKAz8JqRFf1vM+1XL/2KjZH7Vo4F0h1U+tCIQgQACHMCVqDE7AC8V7JZ3TyC+db+XS2G1JQfTihd6LJbu1Ub+ts3L/hUEUTpEIBCRAAAc0LEoNR8ALxS9J+nzzHfB1Vg7rCmIv9N4q2cUNcbvcov6bwtGnUgTCECCAw5gTVQYm4IW+KyS/vln2CxaVjgmpBS/0bZL82MYPELW1Vh7kCuiQBkitQQgQwEGMiSJDE/DOVSuk9idlWtKo3c+xaOB7IfThhWKPpIHdtVrlHTb8D0+EUDs1IhCSAAEc0rSoNSgBL/RdJ/mfNQP4lxYNnBJCA14o/lTSuxs/N/g9Vh5ofBsWDwQQaKkAAdxSTg6GwLiAd6zqVq59k6RC/W+t9gc2PHh/mo28q/dsuY3VuE2jOt62l15Oc83UhkCoAgRwqJOj7iAEvNB7vWRXNIt9zKJSY4/gFD483nKhq3eD3E5qlnejRaXPpbBUSkIgEwIEcCbGSBNpFfBD+g5XvrZJso56jTU7y0b6H0pjvd7Rc6FyuTsatfmwqjuPt60/ejWNtVITAlkQIICzMEV6SLWAF3pvlOyzzSKfV7TkZNOD29NUtOuMxSpU4j2Mj2rkr662cumaNNVILQhkTYAAztpE6Sd1An5wzxFqy/26vqtu4/GIotHVpvU70lBs/aPnQt/dkn+kWc8W5fwYe20gSkN91IBAVgUI4KxOlr5SJeCFvlslb36xRf0t5v2KXj7PtHFXkoW6zs2rM7pd5heM12E3W9Q/9o49yfJYG4FMCxDAmR4vzaVJwDuLV8n0F+M1+XcVLVuT1CYHrpMWqXDkOsnO212T6y6VSx81qZYmO2pBIIsCBHAWp0pPqRXwrt5r5faF8cCzdSr3x4Hn81m0a9USFdq+I9nqCeveYlHpsvmsg7UQWMgCBPBCnj69JyIw5dak+FfD31aUv8j08M75KMh11lIVdvydpNMnvBu/waKBxndX80AAgXkRIIDnhZlFEJgs4IXizZIunfC3L6pWu1ojg+vm8t2wd/SdqZx/TdL4d1ObX2fDYW0WwfmEQBYECOAsTJEeDljAO4vx1yoeF+8wIOkFKw+sO+AXt/iJ3llcJ9P5kw5rvlHSlTY88MB+l8t3r5Hp+PpzXM+oOrTfzRK8q2e1PHeVpFMnHTfh240mzSOnF2w4uXm0eLwcDoE3FCCA35CIJ2RBwAsfOFaW/75cY9/y1GjL9ZSserZFP3huvvt0KadC35clv0jSoVPW/1k9iKPS4OS/P+w4tXkczidOef6vVLGzpVefnfj3Xuj9kKSrJHv7lOfHdx9906L+S+a77zp7CueRhANrLmwBAnhhz3/BdO+dxQ0yvW2vDZs22nBp7/82D0K+rLegqn1S5p+WrGvykvacVOuX9KRyvuHwrU/911e98ta9lXWEtf3qXw9aeZFkKyQ/QWZrJB09+bk+Iumbqvgttm3wlXlob69LpHkeSZmw7sITIIAX3swXXMfe2XuBzO6c0HhFUtskCNf5Vi7dnSSOH/K+w5RfEl+F/KeSDt5XLS/5qJ6qva6nazu1zPJaYYt1XG6xltvklqa8PpL8NlVzX7Gt/b9JtM9A5pGkEWsvDAECeGHMeUF1Wd+L1xadI3ln4/e9eo+k33oDhBfl9kOZNsirLytX25DUHri+tHik2vzG5jvY2c3OtUNmt6i266s2sn5odgeb2atDn8fMuuZVCLyxAAH8xkY8IxCBxvZ/iz4l90tlWjLrst3vUcUun/ft+BYd+jbV7IPvyR1y4YrcohOOtEVamVtS/78TbYkOstxeW9vmNT3rO7WptrP+/8te1UPV6PENvuNOjeq/S0Pzuq1gZuYx6xOJAyCwdwECmDMjeIHmjkPx70/jr3ps7L3busc2SX+t6o6b53xnoHz3v5cpvpp5nz3kJR1ri/W7+aV6qy3RsKr6eW17PXTjj6brl5WNf+f0VIV4s4X/qsrQX7WOZ88jZWYec4nEsRHYz39RwUEg9QKNTQ4svpf2Y7u3+xuv+gXF72BlT0u+STn72z2ugB57rmuj8rWPqWYrJZ0s5fokP3YygA/L7SvK+9fmYJOCRWpb/ueS7eWLMDz+ruh/lOl+jdYeVFv+/9rLFdBjpf5Klcq/VT7/QZn975L3SLZoj0G6vqVq/lPSK/EPFy17ZGgeLTPhQAjsT4B3wJwfQQo0Nzf42J4/RPovJV1j0cD3JjZWv+3F2x6Q+eSrnU0b5dUPTr0NyQvFHklfkvTuKUBbJLtdUf/nWvN9yfXbiv67pHeMr1N/K/t9uX1P1crD0vDw+L9N5zakzkOVX7xa5h+W9AHFtz2NP/Z629JMT4aZzSP/wB5Xpic+j5kK8DoEpi9AAE/fjFckLLDnpgb1gh6T1a6x4cH791de/Yro+q059V+kPvtGVz57V+/Z9SB2m3r/8F1WLk3YQWgGKO2HfVzuccgfMv5qK6ky+ifS8Iv7PeI0v4hDWva/qD1/g1xxGI89yjL7jEZf/dsZVL/7JZmZx2wQeC0CMxAggGeAxkuSE9hjMwPpedXskzbS/9BcVVXfL7ej5wLlcvFORo0N6xuPmW1esOjQk1TLxV9FecaEY22X9MW5/v2s2pdfLLcbJ4W+67+oqs9KQ/E9wtN6ZGIe0+qYJyPQOgECuHWWHGmOBfbcxCDe2H7JH5oejMNrzh+uMxarUL19wsb18TVP09zEoLtDbXpeUvd4wf6UKjpX2vyrOW+ivsDyE9Vm8bdpxbdojT2GlKu9X7u2xF+FeUCPbMzjgFrlSQjMiQABPCesHLTVAntuXhBvaF/5sGn9jlavtb/j1d8Nd/bdMWkD++lsZpDv/qZM/3HCGjercsgXpX+e1z6k7g7l9Vcy/fGEWh5WZejfHYhnZuZxIM3yHATmSIAAniNYDtsagfr3JXcW75i8aUG8kf3LF5g2xlcIz/vDdW5ehdfiK6wnbmR/tZVL1+y3mPbD/kju35rwnEvn/CPnN9Jp6/5M/FH67qeZfUKjr35jXy/L1DzeyIZ/R2COBQjgOQbm8LMT8ELfTZKPbxLv8Qb2hYtM91Znd+TZvdp10iIVjvzu5A3t7bZ9b25Qv3r555Lib+eK79b9lqpDfzK7Klr06rbumySNGW9Vxd45dVOHsZWyM48W2XEYBGYhQADPAo+Xzq1AfZOCmsW/L23uFBRvXN+/di73y51OR65VS1Roj6+6HtvY3lWpvWnPTQ6OOFht1f9vwv27z6qid83koqfp1Hfgz/3tJWob+blkY7doPa7KUPz1nZM+YcjOPA5chmciMJcCBPBc6nLsWQlMub3lRUVtJ5ge3jmrg7b4xa6zlqqw48nxDe79JosGLp+0TL77byb8rnWrKv7u+bvg6kAbrl+YFb9DX9p4hV+vyuYrJ746M/M4UBKeh8AcCxDAcwzM4Wcm0NgZaPEzu7fnq9U+aiODE3c0mtmB5+BV3tF3pnL+YDO4RlTNrdi949Aev2P1SzS6+bY5KGP2h5xaq+tMVYf+Rz2OszKP2StxBARaJkAAt4ySA7VSwAvFL0tqvJM036jhgZVp+eh5b316ofiopFObITx+a1Jb9z9JOqHRh76j0aGPtNKp5cdqO6xf8mLzuJEqQ/X9iTMzj5aDcUAEZi5AAM/cjlfOkUB9O752PbN7T1zz1TY8EN+3mtqHd/Wsluf+fndw1UZX2MiGRWrTS82/q6lSPVp67X+mtol6YV1HqS3/rGTt9T/maiu97V2vZWMeyWzHmO55U12SAgRwkvqsvVcB7+y9e8JeuD+zqBRfEJT6hxd6n5Ds7Y1C7S9t+6NDcn2lWfiAKkNj7yzT3Uvb8vsk+1CjSL/Sl576tkzMI+r/QrrhqW6hCRDAC23iKe/Xu37/FHnb4xPK7LWoNJjyshtRVej9kGT3Nf6gHSfv+NU/bajtaGyy4PZHqr56ewh9KN/9YZm+Hdf6ntzBT//koOMbH6E3HsHOQxo92crrNwUxA4pcEAIE8IIYczhNemfPGlnu7kbF9pxF/SvCqb7+u9L4tqmj45o/v+tl3TD6Spy+u1QZfZNU3hJGL11dasu/Em9luKZtme5e/NvNssOeR7zdo0X9N4QxA6pcCAIE8EKYckA9eqHvs5LHmwXEwXWbRQOXBFS+vLP3WpnVP+q8fvQVXbnr5fg/HvBXPKam17blJcl6P9t+hG5cdGSzrLDnEY/EotKkW6tS400hC1KAAF6QY09v097Zd+f49yz7JRYNpPOWnX0QemdxrUx3xf98X2VY5+58QXK/UNXN69KrvpfK2pf/qdz+852Lj9IFbc3vQVHY84hHYlHp3KDmQLGZFiCAMz3e8JrzQu8vpPirEOtX4P6evTb4o5C68M7e02T247jmx2uv69TX/8lVqRwqDQ+H1Ed9/+C2/Iu/OOgEvTPX/G6OwOcRj8SiUvNWsbCmQbXZFCCAsznXILtqbnIwItlBjU+gc8ut/EggvzeNCz782CPac9//16UnnxT/aZvXdMj2J+JGnlIlf7b0m+fCGEz9e6sfyEsnjiw9RQdZrl724duf/KdXR6sf3Nf3RKexN+/oWa5cbqhZ2zaLSoeksU5qWpgCBPDCnHsqu/aOnuOVyz3dLO4li0pvSWWh+yqqbfmG+PuUh5aerOXWVn/WW7Zv0Es+Gv/HjaoMjX3XcrrbauuO9wQ+8XhbrKeX1n+WqPcQ9yLpV6oMNf4ykIcXinEAL6+Xu6v6Fnv9B2P3ZgfSAWVmVYAAzupkA+zLO/vWyLx5BbT6LSqNbXKQ/m7yyy+QWf2rMn+85Hidlj+4XvOqHc/qh9Wtjfrdz1d181h/6ewp371GpnqNE6+A7q+WdfqO5ht411pVh+5JZwN7VuWFYvwrgdPq/2JaZcOlH4ZSO3VmW4AAzvZ8g+rOu3qvlTeuIJb7N6w88IlgGmjrvlrSn8f13rX4KK1tXrh02a6XdMvob8bauEaVofh56X20df+FpKviAq9tf5O+sOjf1Gv9xuir+sSufwmnjwnC3lm8S6a1zQC+zIZL4/sfp3cSVLYABAjgBTDkUFr0ruKlct3cCGDdbeXS+aHUrgnB9fVFb9HH2w+rl37drn/VF0d/PdbGn6syFAdceh8T+ri0/XDdvOjN9VrvrmzR+TtfDDSAe78us483Ativs+GBL6Z3AFS2kAQI4IU07ZT36l3F98u1vlnmTywqvTflJY+Xl1++Vmb1248eWXKs+vKd9X9bu/OfdU/ltcbzQrgdacJH0O/PH6L1S46rl/6T6ja9d0f89dz1H45C+wj6EUl9jdptrZX7g/n4PJjzn0JnJEAAz4iNF82FgB/0gTdrUX7sc87NFpW652KdOTtmW/dTkk76l6Ur9ebmXgYnbN+oZzzewji+Enrzyjlbu5UHbl6EFfcQ9xI/NntF3dvjbY+DvAgrPqcab+VrtRNsZLD5k0Qr0TgWAtMXIICnb8Yr5lDAC8X4iqXGFUy1WreNDG6ew+VafOjDjz28Pff9V5q3Ib3uNXVsf0LV+hXQuQ+GdhtSfCX01qWn6ODmbUj/ZvuTv3pltHp2ULchdZ5+qKzWPIf8dUXLOkz3Vls8eA6HwIwECOAZsfGiuRLwQvExSc0NDPy9Vh74yVytNRfH9WU971Mt94/xsR+tbde7Xn9aqlSPSv82hFM14u+Dbtvy2EFvtXfkGrdly8Oeh+SPWjTwrrmYO8dEYCYCBPBM1HjNnAl4oXivpHMa/4Ov861cSvdtO1MkvNB7sWS3xn+9rrJFF8YXLpn/J41u/us5Q5uLAzdvq7p38dE6p62rGcBhz0Nu66zcf+FccHFMBGYiQADPRI3XzJmAF4pfijcSar7jus7KYV2x6oXeWyW7OK7/8l0v66bGbkgDqmwOYy/gscm2df+fks740qIj9fn2I8beAQc9D8kut6j/pjk7eTkwAtMUIICnCcbT51bAC31XSH59c5UXLCodM7crtvboXujbJPmx8VHX7nxR91Tib9KMtyOsHhHO90F3Hqq29l/H2xFe0X6Ert+9G5KCnoe8ttbKg1wB3dpTnqPNQoAAngUeL229gHeuWiG1PynTkubbrnMsGvhe61dq/RG9UOyRNDB25NNef+bpn9a2NTazd31E1aHvtH7VOThi/rCLZP638ZFX5pY8/uSSE9+ahXnIKu+w4X+Iv5ybBwKpECCAUzEGipgo4IW+6yT/s2YA/9KigVNCEPJC8aeS3t0IXL/Htj/2lGTxR+rxX3xPlc2N322n/dHWXZLUWy/T9Glf+s7uTMyjPND4NiweCKREgABOySAoY1zAO1Z1K9e+SVKhEQK1P7DhwfvTbORdvWfLbazGbRrV8Vb5xTLVcvUdDCQfVaV6nDS8++uk0tlPfRvCF+LNIOv1VfRm71i5KxPz2F56OZ3mVLVQBQjghTr5lPfthd7rJbuiWeZjFpUaewSn8OHx+8Su3g1yG9sl6EaLSp+rl9rWHe8D3PhBQlZS5dXGNzKl9dHe/W25Ptws72lVht5a//EhK/NIqzt1LUgBAnhBjj39TfshfYcrX9skWUe92pqdZSP9D6Wxcu/ouVC53B2N2nxY1Z3H29YfvVr/Y77738s0se5LVRn6qzT2ofblF8sbt1A1H7trzcw8UglPUQtVgABeqJMPoG8v9N4o2WebpT6vaMnJpge3p6l01xmLVajEexgf1chfXW3l0jWTamxb/iXJGrdWSdtV8d+RNv8qTX1Iy09Um/1MUmPDete3VB36k4k1ZmYe6YKnmgUsQAAv4OGnvXU/uOcIteXirYTGztNHFI2uNq3fkYba6x89F/rulvwjzXq2KOfH2GsD0ZT6FqmtO75Aq/ENX/Xvhe74HemfU9GH1N2hNv1CUmPnhfr3Ped/V2GF7fUAABS3SURBVHpl26QAzs480nD6UAMCu/+HDQoEUinghb5bJa9/sUUzvO5X9PJ5po27kizYdW5endHtMr9gvA672aL+sXfsU8o77Di1+aO732FKN6sytI/nznNn+e6/kemPm6uWVbHf2df3PWdnHvNszHII7EWAd8CcFqkX8M7iVTJN2EfXv6to2ZqkvlTfddIiFY5cJ9l54z8X6C6VSx81qbZP0PbDPi73r0/49+R/H9zW/RlJ4xvUm/2xRl+t3wO8r0dm5pH6M58Csy5AAGd9whnpz7t6r5XbF8YDz9ap3B8Hns9ni65VS1Ro+45kqyese4tFpcsOqI7mVzxOCO5vqarPSEMjB/T6lj3pt5eobeu1ksbrdv0XVYc+diBLZGYeB9Isz0FgjgQI4DmC5bCtF5hyK0z8q+FvK8pfZHo43nB3zh+us5aqsOPvJJ0+vpjfYNHA2AVWb1zDokNPUi33Q0kT9zp+VhU/e/4uzIovuNK9kr1tQsFDquiY6fwgkIl5vPHEeAYCcyZAAM8ZLQeeCwEvFG+WdOmEY7+oWu1qjQyum8t3w97Rd6Zy/jUpDqnmw/w6G57JZhHdHcrrJpn+44Q+tsr8co1uvm0u3HYfs/GRc/zOd+mEdR5WrnaZdm3ZON21szGP6XbN8xFojQAB3BpHjjKPAt5ZXCfT+ZOWNI/D40obHniglaV4V89qee4qSadOOu7ebjea7sLth/2R3ON7gjvHQ13f0Wj1ijfaP/iJg//XT52UP2h5Tqo+5TvKbx/5v9/g3uKuo9TW/jeST9yVaavMrtToq9+YbukTn5+ZecwGgdciMAMBAngGaLwkWQGPvyax0PdlyS+SdOiUauJ7Wa+0qDQ4myq90PshSVdJ9vYpx4nvPvqmRf2XzOb446+tXx0d/9Bw4oTjxRdy/UBu31F15/1SOd5Sqf74/tJ3vfPftnU8tNza3zRx/aFa5dc/rpbP/OD2X8RXWjcfXV3Kt50h87iXD0rWPuE1j6ti/2FfVztPp7dszWM6nfNcBGYnQADPzo9XJyjgy3oLqtonZf5pyZq7xo8VZM9JtX5JTyrnG1Rte8rKj+wOsolle0fPcpkdJ9kKyU+Q2RpJR09uzeOLpL6pit9i2wbjTX5b+DjiYOWrX51wK9CEY/suyQbl/t9UrX7/1Y5TN3bn2iaF79iTN3vl193lx09Te+4sueKLxH4v3lJwz0L9elU2/7mklt7KlZ15tHC0HAqB/QgQwJwewQv4Ie87TPkl8dW8fyrp4P009JKkp+T+tGTLZFrR/PKJ5ft5TST5barmvmJb+38zp1iN38/+H5IaWxhOeVzQdqjfufio3f+drcjVNuVW/vN3vqi763sQ7/URybVG1aH/MZd9ZGYec4nEsRGY8A1DYCAQvIAvLR6pNr+x+Q52dv24dsjsFtV2fdVG1g/N7mDTfXX3kWrXf1hpSy48M194R6fldZwt1nvyS/Vbe3tDO+HwL/ou/bC6VRtqO/Sy79Km2q6nf1rbeqdy/n3t2vLUdCuZzfOzM4/ZKPBaBPYtwDtgzo7MCXjX75+iWm6lLH+kXCtltZWN37HaQftoNv7KxWclxVsgPitZWb7rPiuvj/8874/GdoyLPiX3S2VaMusC3O9RxS63hLbjC30es/bnAAjsQ4AA5tRYEAL1r47s2HKsLP+7ytXeKlm8TeDPtbO6yV7/QfzRdOKP5o5D8e+z46/ebG5h2LKy4h8y/lrVHTfv3qmpZYee/oFCmMf0u+IVCExPgACenhfPRqDlAo1NJyy+t/lju7dfHF/lBcXvYGVPS75ps6p/t9z2cRFWrfLr5W2581Sz+B3/yVKuT/JjJxfsw3L7ivL+tb1sGtHy3jggAgjsW4AA5uxAIEGB5uYG8dc/Tvnvov9S0jUWDXxvYnnxbUjvzXc+NPVK6PgK6P+3MvU2JMkLxR5JX5L07iltbpHsdkX9n9vv91cnaMPSCGRdgADO+oTpL7UCe25qUC/1MVntGhsevH9/hf+y43/7zNtsSWdNym+svr75lG3/z1f393zv6j27HsRuJ016nusuK5cm7OiUWi4KQyBzAgRw5kZKQyEI7LGZgfS8avZJG+l/aK7qr+9f3NFzgXK5eGepoyasc+CbScxVcRwXgQUoQAAvwKHTcrICe25ioEcULflD04Pb56My1xmLVajeLvlHxteb5qYS81EoayCQcQECOOMDpr10Cey5eYHfr6jyYdP6HfNZaf3dcGffHTIf//h5xptLzGflrIVAdgQI4OzMkk5SLFD/vuTO4h2TN5Hw7yp6+QLTxpZ+JeSBMtRvBSq8Fl9hfd7u17Rik4kDLYDnIbDABQjgBX4C0P78CHih7ybJ46/LbDzc1qlcuMh0b3V+Ktj7Kq6TFqlw5Hcli787uvmw21q32USS3bE2AukWIIDTPR+qy4BAfZOCmj0/vnOTfVtR/9q53L94OmyuVUtUaI+vuj597McDVWpvav2mE9OpiucikH0BAjj7M6bDhAWm3G70oqK2E0wP70y4rEnLu85aqsKOJyUd03yLfpNFA5enqUZqQSBrAgRw1iZKP6kSaOwMtPiZ3dsl1moftZHBO1NV5Njb3o6+M5XzB5sBPKJqbsWc7wCVRghqQmCeBAjgeYJmmYUp4IXilyU13kmab9TwwMq0fPS8t4l4ofiopFObIXyDRQOfX5iTo2sE5l6AAJ57Y1ZYoAL17fja9czuPYrNV9vwwANp5vCuntXy3N83a4xUG10x/9sxplmI2hBonQAB3DpLjoTAJAHv7L17wt7EP7Oo9J4QiLzQ+4Rkb2/Uan9pUf8XQqibGhEITYAADm1i1BuEQH0PXG97fEKxvRaVBkMo3gu9H5Lsvnqtrh3S6MlJ7Y0cghc1IjBTAQJ4pnK8DoH9CHhnzxpZ7u7mu8jnLOpfERKYF4rxbVNHN+v/vEX9N4RUP7UiEIIAARzClKgxOAEv9H1W8hsbhfttFg1cElIT3tl7rczGPnq+3qLSlSHVT60IhCBAAIcwJWoMTsA7++4c/55lv8SigdtCasI7i2tluqtZ830Wlc4NqX5qRSAEAQI4hClRY3ACXuj9hWTvrBeeq/2evTb4o5Ca8M7e02T242bNj1tUat6aFFIX1IpAugUI4HTPh+oCFGhucjAi2UGNT6Bzy638yJaQWvGOnuXK5YaaNW+zqHRISPVTKwIhCBDAIUyJGoMS8I6e45XLPd0s+iWLSm8JqoFmsV4oxgG8vP7HXdW32Os/eCnEPqgZgbQKEMBpnQx1BSvgnX1rZN68Alr9FpXGNjkIqicvFOOPoE+rF21aZcOlHwbVAMUikHIBAjjlA6K88AS8q/daefMKYvdvWHngE+F1IXln8S6Z1jYD+DIbLt0SYh/UjEBaBQjgtE6GuoIV8K7ipXLdXG/AdbeVS+eH2Ix39n5dZh9vBLBfZ8MDXwyxD2pGIK0CBHBaJ0NdwQp4V/H9cq1vNvATi0rvDbEZLxQfkdTX+EHC1lq5/54Q+6BmBNIqQACndTLUFayAH/SBN2tR/l+aDWy2qNQdYjNeKMY9vLlee612go0MxhtL8EAAgRYJEMAtguQwCEwU8EJx6+5dkGq1bhsZ3BySkHeefqis1qzZX1e0rMN0bzWkHqgVgbQLEMBpnxD1BSngheJjkt7R+PjW32vlgZ+E1Igv63mfarl/bNTsj1o08K6Q6qdWBEIQIIBDmBI1BifgheK9ks5p5JfOt3Jp7LakIHrxQu/Fkt3aqN/WWbn/wiAKp0gEAhIggAMaFqWGI+CF4pckfb75Dvg6K4d1BbEXem+V7OKGuF1uUf9N4ehTKQJhCBDAYcyJKgMT8ELfFZJf3yz7BYtKx4TUghf6Nkl+bOMHiNpaKw9yBXRIA6TWIAQI4CDGRJGhCXjnqhVS+5MyLWnU7udYNPC9EPrwQrFH0sDuWq3yDhv+hydCqJ0aEQhJgAAOaVrUGpSAF/quk/zPmgH8S4sGTgmhAS8Ufyrp3Y2fG/weKw80vg2LBwIItFSAAG4pJwdDYFzAO1Z1K9e+SVKh/rdW+wMbHrw/zUbe1Xu23MZq3KZRHW/bSy+nuWZqQyBUAQI41MlRdxACXui9XrIrmsU+ZlGpsUdwCh8eb7nQ1btBbic1y7vRotLnUlgqJSGQCQECOBNjpIm0CvghfYcrX9skWUe9xpqdZSP9D6WxXu/ouVC53B2N2nxY1Z3H29YfvZrGWqkJgSwIEMBZmCI9pFrAC703SvbZZpHPK1pysunB7Wkq2nXGYhUq8R7GRzXyV1dbuXRNmmqkFgSyJkAAZ22i9JM6AT+45wi15X5d31W38XhE0ehq0/odaSi2/tFzoe9uyT/SrGeLcn6MvTYQpaE+akAgqwIEcFYnS1+pEvBC362SN7/Yov4W835FL59n2rgryUJd5+bVGd0u8wvG67CbLeofe8eeZHmsjUCmBQjgTI+X5tIk4J3Fq2T6i/Ga/LuKlq1JapMD10mLVDhynWTn7a7JdZfKpY+aVEuTHbUgkEUBAjiLU6Wn1Ap4V++1cvvCeODZOpX748Dz+SzatWqJCm3fkWz1hHVvsah02XzWwVoILGQBAnghT5/eExGYcmtS/KvhbyvKX2R6eOd8FOQ6a6kKO/5O0ukT3o3fYNFA47ureSCAwLwIEMDzwswiCEwW8ELxZkmXTvjbF1WrXa2RwXVz+W7YO/rOVK72NcnGv5va/DobDmuzCM4nBLIgQABnYYr0EKSAdxbXyXT+pOLNN0q60oYHHmhlU97Vs1qeu0rSqZOOy+1GrWTmWAhMS4AAnhYXT0agdQIu5VTo+7LkF0k6dMqRf1YP4qg0OJsVvdD7IUlXSfb2KceJ7z76pkX9l8zm+LwWAQRmLkAAz9yOVyLQEgFf1ltQ1T4p809L1jX5oPacVOuX9KRyvkHVtqes/MiWvS3sHT3LZXacZCskP0FmayQdPfm5PiLpm6r4LbZt8JWWNMBBEEBgRgIE8IzYeBECrRfwQ953mPJL4quQ/1TSwftZ4SVJT8n9acmWybRC0nGSlu/nNZHkt6ma+4pt7f9N66vniAggMF0BAni6YjwfgTkW8KXFI9XmNzbfwc5uNdcOmd2i2q6v2sj6odkdjFcjgEArBQjgVmpyLARaKOBdv3+KarmVsvyRcq2U1VZKOlGyg/axzDZJz0qKt0B8VrKyfNd9Vl4f/5kHAgikTIAATtlAKAeB/QnUvzqyY8uxsvzvKld7q2TDkn6undVN9voP4o+meSCAQCACBHAgg6JMBBBAAIFsCRDA2Zon3SCAAAIIBCJAAAcyKMpEAAEEEMiWAAGcrXnSDQIIIIBAIAIEcCCDokwEEEAAgWwJEMDZmifdIIAAAggEIkAABzIoykQAAQQQyJYAAZytedINAggggEAgAgRwIIOiTAQQQACBbAkQwNmaJ90ggAACCAQiQAAHMijKRAABBBDIlgABnK150g0CCCCAQCACBHAgg6JMBBBAAIFsCRDA2Zon3SCAAAIIBCJAAAcyKMpEAAEEEMiWAAGcrXnSDQIIIIBAIAIEcCCDokwEEEAAgWwJEMDZmifdIIAAAggEIkAABzIoykQAAQQQyJYAAZytedINAggggEAgAgRwIIOiTAQQQACBbAkQwNmaJ90ggAACCAQiQAAHMijKRAABBBDIlgABnK150g0CCCCAQCACBHAgg6JMBBBAAIFsCRDA2Zon3SCAAAIIBCJAAAcyKMpEAAEEEMiWAAGcrXnSDQIIIIBAIAIEcCCDokwEEEAAgWwJEMDZmifdIIAAAggEIkAABzIoykQAAQQQyJYAAZytedINAggggEAgAgRwIIOiTAQQQACBbAkQwNmaJ90ggAACCAQiQAAHMijKRAABBBDIlgABnK150g0CCCCAQCACBHAgg6JMBBBAAIFsCRDA2Zon3SCAAAIIBCJAAAcyKMpEAAEEEMiWAAGcrXnSDQIIIIBAIAIEcCCDokwEEEAAgWwJEMDZmifdIIAAAggEIkAABzIoykQAAQQQyJYAAZytedINAggggEAgAgRwIIOiTAQQQACBbAkQwNmaJ90ggAACCAQiQAAHMijKRAABBBDIlgABnK150g0CCCCAQCACBHAgg6JMBBBAAIFsCRDA2Zon3SCAAAIIBCJAAAcyKMpEAAEEEMiWAAGcrXnSDQIIIIBAIAIEcCCDokwEEEAAgWwJEMDZmifdIIAAAggEIkAABzIoykQAAQQQyJYAAZytedINAggggEAgAgRwIIOiTAQQQACBbAkQwNmaJ90ggAACCAQiQAAHMijKRAABBBDIlgABnK150g0CCCCAQCACBHAgg6JMBBBAAIFsCRDA2Zon3SCAAAIIBCJAAAcyKMpEAAEEEMiWAAGcrXnSDQIIIIBAIAIEcCCDokwEEEAAgWwJEMDZmifdIIAAAggEIkAABzIoykQAAQQQyJYAAZytedINAggggEAgAgRwIIOiTAQQQACBbAkQwNmaJ90ggAACCAQiQAAHMijKRAABBBDIlgABnK150g0CCCCAQCACBHAgg6JMBBBAAIFsCRDA2Zon3SCAAAIIBCJAAAcyKMpEAAEEEMiWAAGcrXnSDQIIIIBAIAIEcCCDokwEEEAAgWwJEMDZmifdIIAAAggEIkAABzIoykQAAQQQyJYAAZytedINAggggEAgAgRwIIOiTAQQQACBbAkQwNmaJ90ggAACCAQiQAAHMijKRAABBBDIlgABnK150g0CCCCAQCACBHAgg6JMBBBAAIFsCRDA2Zon3SCAAAIIBCJAAAcyKMpEAAEEEMiWAAGcrXnSDQIIIIBAIAIEcCCDokwEEEAAgWwJEMDZmifdIIAAAggEIkAABzIoykQAAQQQyJYAAZytedINAggggEAgAgRwIIOiTAQQQACBbAkQwNmaJ90ggAACCAQiQAAHMijKRAABBBDIlgABnK150g0CCCCAQCACBHAgg6JMBBBAAIFsCRDA2Zon3SCAAAIIBCJAAAcyKMpEAAEEEMiWAAGcrXnSDQIIIIBAIAIEcCCDokwEEEAAgWwJEMDZmifdIIAAAggEIkAABzIoykQAAQQQyJbA/w/RLQs7QFaTUgAAAABJRU5ErkJggg==</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="Sprite" idx="1" x="-2.690618224597756" y="-26.326866070657047" heading="342.75" scale="1" volume="100" pan="0" rotation="1" draggable="true" hidden="true" costume="0" color="255,15,69,1" 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"><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></block><block s="setColor"><color>145,26,68,1</color></block><custom-block s="polygon sides: %n radius: %n x: %n y: %n"><l>5</l><l>50</l><l>20</l><l>20</l></custom-block></script><script x="13" y="164"><block s="clear"></block><block s="setColor"><color>145,26,68,1</color></block><custom-block s="electron x: %n y: %n"><l>20</l><l>10</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><script x="485" y="18"><block s="clear"></block></script><script x="19" 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="22" y="650.9999999999999"><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="87.99999999999997"><block s="clear"></block><block s="setColor"><color>117,0,75,1</color></block><custom-block s="circle radius: %n x: %n y: %n"><l>30</l><l>1</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="22" y="430.0000000000001"><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="435.9999999999999"><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="437.9999999999999"><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="434.9999999999999"><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>40</l><l>20</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="240" 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="290" y="218.4666666666664"><block s="clear"></block><custom-block s="hydrogen x: %n y: %n"><l>46</l><l>27</l><comment w="80" collapsed="true">make sure the radius is 25.</comment></custom-block></script></scripts></sprite><sprite name="Sprite(2)" idx="2" x="-59" y="-141" heading="90" scale="1" volume="100" pan="0" rotation="1" draggable="true" costume="0" color="196.35,153.15300000000002,0,1" pen="tip" id="77"><costumes><list struct="atomic" id="78"></list></costumes><sounds><list struct="atomic" id="79"></list></sounds><blocks></blocks><variables></variables><scripts></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>20</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>0,4,20,1</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>255,15,69,1</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><comment w="80" collapsed="true">make sure the radius is 25.</comment></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><comment w="80" collapsed="true">make sure the radius is 25.</comment></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><comment w="80" collapsed="true">make sure the radius is 25.</comment></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><comment w="80" collapsed="true">make sure the radius is 25.</comment></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>0</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>50</l></block><block s="reportSum"><block var="y"/><l>0</l></block><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="reportSum"><block var="x"/><l>-50</l></block><block s="reportSum"><block var="y"/><l>0</l></block><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 s="reportSum"><block var="x"/><l>0</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>50</l></block><block s="reportSum"><block var="y"/><l>0</l></block><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 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><comment w="80" collapsed="true">make sure the radius is 25.</comment></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><comment w="80" collapsed="true">make sure the radius is 25.</comment></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l>0</l></block><block s="reportSum"><block var="y"/><l>50</l></block><comment w="80" collapsed="true">make sure the radius is 25.</comment></custom-block><custom-block s="hydrogen x: %n y: %n"><block s="reportSum"><block var="x"/><l>0</l></block><block s="reportSum"><block var="y"/><l>-50</l></block><comment w="80" collapsed="true">make sure the radius is 25.</comment></custom-block></script></block-definition></blocks><variables></variables></project><media name="Aaron and Emil Lab 3 2.0" app="Snap! 5.1, http://snap.berkeley.edu" version="1"></media></snapdata>