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{"id":909454,"type":0,"block_id":"albertoballeza_1365609755","theme_id":29,"user_id":312040,"path":"Investigating-Solubility-Lab-albertoballeza_1365609755","title":"Investigating Solubility Lab","pubtitle":"Investigating Solubility Lab","tags":"","public":true,"publicAccess":true,"private_link_enabled":0,"thumb":"https://s3-eu-west-1.amazonaws.com/infogram-thumbs-200/albertoballeza_1365609755.jpg","width":550,"copyright":null,"properties":{"publishType":0,"transparent":false,"rtl":false,"export_settings":{"showGrid":true,"showValues":true},"whitelabel":false,"embed_button":"enabled","title_link":"infogram","custom_logo":"infogram","custom_link_url":"","embed_button_text":"Share","decimal_separator":".,"},"elements":[{"type":"particle","particle_id":12526519,"object_id":"63bd95a0-ea18-11e4-a037-7b5f270fdca9","particle_type":"maintitle","picture":null,"text":"Investigating Solubility Lab","content_type":"","title":null,"shrink":null},{"type":"particle","particle_id":873484,"object_id":"albertoballeza_1365609755","particle_type":"quote","picture":null,"text":"Task 1:Temperature And Solubility Of Solids","content_type":"","title":" ","shrink":null},{"type":"particle","particle_id":873758,"object_id":"albertoballeza1365611032","particle_type":"bodytitle","picture":null,"text":"Purpose","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":873764,"object_id":"albertoballeza1365611054","particle_type":"bodytext","picture":null,"text":"We were investigating the relationship between temperature and rate of dissolving.","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":873802,"object_id":"albertoballeza1365611195","particle_type":"bodytitle","picture":null,"text":"Materials","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":873814,"object_id":"albertoballeza1365611217","particle_type":"bodytext","picture":null,"text":"Goggles, Magnesium Sulfate, 250 mL of water, 2 beakers, Ice, Gloves, Apron, Thermometer, Hot Plates, Tongs","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":873870,"object_id":"albertoballeza1365611448","particle_type":"bodytitle","picture":null,"text":"Safety","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":873899,"object_id":"albertoballeza1365611554","particle_type":"bodytext","picture":null,"text":"-Wear goggles at all times.\n-Dispoce of substances in sink. Flush with water.","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":886002,"object_id":"albertoballeza1365697673","particle_type":"image","picture":"http://s3-eu-west-1.amazonaws.com/infogram-particles-700/albertoballeza1365697673.jpg"},{"type":"particle","particle_id":873925,"object_id":"albertoballeza1365611638","particle_type":"bodytitle","picture":null,"text":"Procedure","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":873930,"object_id":"albertoballeza1365611657","particle_type":"bodytext","picture":null,"text":"1. Record the temperature of the hot water in the date table.\n2.Add spoons of magnesium sulfate to hot water one by one until no amount of stirring will make it dissolve. (Scoop out the approximately the same amount each time)\n3. Record the number of spoons added in your data table.\n4. Repeat procedure with cold water.","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":874074,"object_id":"albertoballeza1365612130","particle_type":"bodytitle","picture":null,"text":"Data","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":874080,"object_id":"albertoballeza1365612148","particle_type":"bodytext","picture":null,"text":"Name of the solvent is Magnesium Sulfate\nName of the solute is water.","content_type":"","title":"","shrink":null},{"type":"chart","chart_id":1401296,"object_id":"albertoballeza_1365696704","chart_type_nr":20,"data":[[["","Solvent Temp.","Solute # Of Spoons"],["Hot","0.2","3"],["Cold","70","17"]]],"custom":{"xlabel":"Temperature","ylabel":"Solute # Of Spoons","height":"376"},"colors":["#ff414d","#cc3635","#286b7b","#f2b036","#b02c20","#307d99","#f28a35","#852b33","#41a3c6","#ea594e","#60284f","#53cae8","#ffe670","#da6f6e","#4c7b86","#ffca68","#ba5c53","#498ca4","#ffa760","#844a4f","#5aacc9","#ff9088","#6f4a64","#8cd7ea"],"dimensions":[],"modifier":0,"sheetnames":[],"sheets_settings":[]},{"type":"particle","particle_id":885984,"object_id":"albertoballeza1365697613","particle_type":"image","picture":"http://s3-eu-west-1.amazonaws.com/infogram-particles-700/albertoballeza1365697613.jpg"},{"type":"particle","particle_id":918421,"object_id":"albertoballeza1366043073","particle_type":"image","picture":"http://s3-eu-west-1.amazonaws.com/infogram-particles-700/albertoballeza1366043073.jpg"},{"type":"particle","particle_id":885811,"object_id":"albertoballeza1365696995","particle_type":"bodytitle","picture":null,"text":"Analysis","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":885825,"object_id":"albertoballeza1365697041","particle_type":"bodytext","picture":null,"text":"The trial with higher solubility was with hot water.\nFor a solid, as temperature increases, the solubility generally doesn't dissolve.\nFor a solid, as temperature decreases, the solubility generally dissolves faster.","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":886082,"object_id":"albertoballeza1365697949","particle_type":"quote","picture":null,"text":"Task 2: Temperature, Pressure, And Solubility Of Gases","content_type":"","title":" ","shrink":null},{"type":"particle","particle_id":886101,"object_id":"albertoballeza1365698006","particle_type":"bodytitle","picture":null,"text":"Purpose","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":886105,"object_id":"albertoballeza1365698020","particle_type":"bodytext","picture":null,"text":"To determine the effect of temperature and pressure on the solubility of carbon dioxide in water.","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":886131,"object_id":"albertoballeza1365698067","particle_type":"bodytitle","picture":null,"text":"Materials","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":886134,"object_id":"albertoballeza1365698082","particle_type":"bodytext","picture":null,"text":"Goggles, 250 mL of water, Diet Coke, 2 beakers, Ice, Gloves, Apron, Thermometer, Hot Plates, Tongs, and Test Tubes","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":886170,"object_id":"albertoballeza1365698181","particle_type":"bodytitle","picture":null,"text":"Safety","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":886173,"object_id":"albertoballeza1365698190","particle_type":"bodytext","picture":null,"text":"-Wear goggles at all times.\n-Dispose of substances in sink. Flush with water.","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":886190,"object_id":"albertoballeza1365698239","particle_type":"bodytitle","picture":null,"text":"Procedure","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":886195,"object_id":"albertoballeza1365698255","particle_type":"bodytext","picture":null,"text":"1. Heat 100 mL of water in a 250 mL beaker on a hot plate.\n2. Cool 100 mL of water in a 250 mL beaker using ice.\n3. Slowly open a bottle of soda. Record your observation below:\nAll the pressure inside the can was released as it was opened.\n4. Fill 2 test tubes halfway with soda. Place one in heated water, and one in cooled water.\nRecord your observations in the data table below. ","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":918189,"object_id":"albertoballeza1366041947","particle_type":"bodytitle","picture":null,"text":"Data","content_type":"","title":"","shrink":null},{"type":"chart","chart_id":1433745,"object_id":"albertoballeza_1366042070","chart_type_nr":23,"data":[[["90 C","All the gas inside the coke raised to the top as soon as the coke was placed in hot water.","",""],["0.1 C","It stayed the same, nothing happened to the coke besides getting colder.",""]]],"custom":{},"colors":[],"dimensions":[],"modifier":0,"sheetnames":[],"sheets_settings":[]},{"type":"particle","particle_id":918240,"object_id":"albertoballeza1366042217","particle_type":"bodytitle","picture":null,"text":"Analysis","content_type":"","title":"","shrink":null},{"type":"particle","particle_id":918246,"object_id":"albertoballeza1366042235","particle_type":"bodytext","picture":null,"text":"1. As the bottle was opened, what happened to the pressure inside? It was released.\n2. As the bottle opened, did more gas dissolve or did more gas leave? More gas left as the bottle was opened.\n3. Did the bottle have a greater solubility before or after it was opened? After.\n4. Complete this sentence: As pressure increases, solubility decreases.\n5.Which test tube had the most gas dissolved inside by the end? The one in hot water.\n6. As temperature increases, the solubility of gas decreases.\n7. Fish breathe using oxygen dissolved in water. At high altitudes, the air pressure is low. Would the fish get more oxygen or less oxygen? Why? Less oxygen because the hot air rises to the top.","content_type":"","title":"","shrink":null}],"theme":{"createdAt":"2016-04-22T04:54:07.000Z","updatedAt":"2016-12-28T10:33:06.000Z","logoImages":[""],"charts":{"wordcloud":{"labels":{"fontWeight":"700","fontFamily":"Arial"}},"treemap":{"labels":{"value":{"fontFamily":"PT Sans Narrow"},"name":{"fontWeight":"700","fontFamily":"PT Sans Narrow"}}},"table":{"cellBackground":"#ffffff","headerBackground":"#eeeeee","cellColor":"#444444","headerColor":"#444444","shapeFill":"307d99"}},"color":{"bg":"#ffffff","text":"#000000","chart":{"bg":"transparent","text":"#767676"},"element":{"bg":"transparent","text":"#000000"}},"colorPresets":[],"localFonts":[],"font":{"common":{"fontFamily":"PT Sans Narrow","fontWeight":"400","fontStyle":"normal","fontSize":"16","textAlign":"initial"},"legend":{"fontSize":"16","fontWeight":"400"},"label":{"fontSize":16,"fontWeight":400}},"fontPresets":[],"fontFamilies":["PT Sans Narrow","PT Sans","Open 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