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<title>DP Chemistry: Polarity of molecules</title>
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science </a></li><li><a href="../19519/metals-and-icp-spectroscopy-1.html">Metals and ICP spectroscopy</a></li><li><a href="../19541/catalysts--1.html">Catalysts </a></li><li><a href="../19580/liquid-crystals-1.html">Liquid crystals</a></li><li><a href="../19665/polymers--1.html">Polymers </a></li><li><a href="../19672/nanotechnology-1.html">Nanotechnology</a></li><li><a href="../19843/environmental-impact-plastics-1.html">Environmental impact - plastics</a></li><li><a href="../19858/superconducting-metals-x-ray-crystallography--1.html">Superconducting metals & X-ray crystallography </a></li><li><a href="../19666/condensation-polymers-1.html">Condensation polymers</a></li><li><a href="../19916/environmental-impact-heavy-metals-1.html">Environmental impact - heavy metals</a></li></ul></li><li><a href="../19284/option-b--1.html" class="father">Option B </a><ul class="level-2"><li><a href="../19290/introduction-to-biochemistry--1.html">Introduction to biochemistry </a></li><li><a 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nuclear fission reactions</a></li><li><a href="../19429/solar-energy-1.html">Solar energy</a></li><li><a href="../19437/environmental-impact-global-warming-1.html">Environmental impact - global warming</a></li><li><a href="../19453/electrochemistry-rechargeable-batteries-fuel-cells-1.html">Electrochemistry, rechargeable batteries & fuel cells</a></li><li><a href="../19458/nuclear-fusion-fission-hl--1.html">Nuclear fusion & fission (HL) </a></li><li><a href="../19470/photovoltaic-cells-and-dsscs-1.html">Photovoltaic cells and DSSCs</a></li></ul></li><li><a href="../19078/option-d-1.html" class="father">Option D</a><ul class="level-2"><li><a href="../19079/pharmaceutical-products-drug-action--1.html">Pharmaceutical products & drug action </a></li><li><a href="../19158/aspirin-penicillin--1.html">Aspirin & penicillin </a></li><li><a href="../19174/opiates-1.html">Opiates</a></li><li><a href="../19184/ph-regulation-of-the-stomach-1.html">pH regulation of the stomach</a></li><li><a href="../19194/antiviral-medications--1.html">Antiviral medications </a></li><li><a href="../19211/environmental-impact-of-some-medications-1.html">Environmental impact of some medications</a></li><li><a href="../19254/taxol-a-chiral-auxiliary-case-study-1.html">Taxol - a chiral auxiliary case study</a></li><li><a href="../19258/nuclear-medicine--1.html">Nuclear medicine </a></li><li><a href="../19273/drug-detection-analysis--1.html">Drug detection & analysis </a></li></ul></li></ul></li><li class="selected"><a href="../16592/practical-scheme-of-work-ia--1.html">Practical scheme of work & IA </a><ul class="level-1"><li><a href="../16682/internal-assessment-1.html" class="father">Internal Assessment</a><ul class="level-2"><li><a href="../18892/scaffolding-the-investigation-1.html">'Scaffolding' the investigation</a></li><li><a href="../18896/timing-organisation--1.html">Timing & organisation </a></li><li><a href="../18905/choosing-the-research-question-1.html">Choosing the research question</a></li><li><a href="../18946/personal-engagement-1.html">Personal engagement</a></li><li><a href="../18950/exploration-1.html">Exploration</a></li><li><a href="../18957/analysis-1.html">Analysis</a></li><li><a href="../18965/evaluation-1.html">Evaluation</a></li><li><a href="../18966/communication-1.html">Communication</a></li><li><a href="../19882/internal-standardization-of-the-ia-1.html">Internal standardization of the IA</a></li><li><a href="../19901/submitting-the-samples-for-moderation-2.html">Submitting the samples for moderation</a></li><li><a href="../33754/ten-suggestions-for-ias-using-secondary-data-1.html">Ten suggestions for IAs using secondary data</a></li><li><a href="../37544/gaining-full-marks-for-a-databased-ia--1.html">Gaining full marks for a databased IA </a></li><li><a href="../19506/ia-example-marking-exercise--1.html">IA example & marking exercise </a></li><li><a href="../23929/genuine-examples-of-moderated-ia-reports-1.html">Genuine examples of moderated IA reports</a></li><li><a href="../25234/examples-of-teacher-marked-ia-reports--1.html">Examples of teacher-marked IA reports </a></li><li><a href="../37542/history-of-internal-assessment-1.html">History of Internal Assessment</a></li></ul></li><li><a href="../16598/mandatory-laboratory-components-1.html" class="father">Mandatory laboratory components</a><ul class="level-2"><li><a href="../16613/formula-of-magnesium-oxide--1.html">Formula of magnesium oxide </a></li><li><a href="../16612/determining-the-mr-of-an-unknown-gas-1.html">Determining the <i>M</i><sub>r</sub> of an unknown gas</a></li><li><a href="../16615/acid-base-titrations--1.html">Acid-base titrations </a></li><li><a href="../16616/a-green-acid-base-practical-1.html">A green acid-base practical</a></li><li><a href="../16617/analysis-of-aspirin-tablets-1.html">Analysis of aspirin tablets</a></li><li><a href="../16618/caco3-in-egg-shells-1.html">CaCO<sub>3</sub> in egg shells</a></li><li><a href="../16644/enthalpy-changes-1.html">Enthalpy changes</a></li><li><a href="../16631/reaction-rates-1.html">Reaction rates</a></li><li><a href="../16635/rate-dependent-factors-1.html">Rate-dependent factors</a></li><li><a href="../16636/determining-ea-for-a-reaction-1.html">Determining <i>E</i><sub>a</sub> for a reaction</a></li><li><a href="../16637/iodination-of-propanone-1.html">Iodination of propanone</a></li><li><a href="../18144/titrations-with-a-ph-meter-1.html">Titrations with a pH meter</a></li><li><a href="../18355/redox-titration-with-kmno4--1.html">Redox titration with KMnO<sub>4</sub> </a></li><li><a href="../16640/voltaic-cells-1.html">Voltaic cells</a></li><li><a href="../16659/3-d-molecular-modelling--1.html">3-D molecular modelling </a></li></ul></li><li class="selected"><a href="../17168/other-good-practicals-1.html" class="father">Other good practicals</a><ul class="level-2"><li><a href="../17196/common-chemical-reactions-1.html">Common chemical reactions</a></li><li><a href="../227/elements-oxides-of-the-third-period--1.html">Elements & oxides of the third period </a></li><li><a href="../17239/the-halogens-1.html">The halogens</a></li><li><a href="../17162/boiling-points-of-mixtures-1.html">Boiling points of mixtures</a></li><li class="selected"><a href="polarity-of-molecules-1.html">Polarity of molecules</a></li><li><a href="../18083/le-chateliers-principle--1.html">Le Chatelier's principle </a></li><li><a href="../19582/determining-kc-for-an-esterification-reaction-1.html">Determining <i>K</i><sub>c</sub> for an esterification reaction</a></li><li><a href="../18164/redox-reactions-of-vanadium--1.html">Redox reactions of vanadium </a></li><li><a href="../18351/chlorine-in-swimming-pools--1.html">Chlorine in swimming pools </a></li><li><a href="../18178/analysis-of-cuii-ions-in-solution--1.html">Analysis of Cu(II) ions in solution </a></li><li><a href="../18179/percentage-of-copper-in-brass-1.html">Percentage of copper in brass</a></li><li><a href="../18356/electrolytic-cells--1.html">Electrolytic cells </a></li><li><a href="../18598/reactions-of-organic-compounds-1.html">Reactions of organic compounds</a></li><li><a href="../18752/hydrolysis-of-halogenoalkanes-1.html">Hydrolysis of halogenoalkanes</a></li><li><a href="../18784/preparation-of-13-dinitrobenzene--1.html">Preparation of 1,3-dinitrobenzene </a></li><li><a href="../19022/determination-of-an-organic-structure-1.html">Determination of an organic structure</a></li><li><a href="../19887/preparation-of-nylon-66-1.html">Preparation of nylon 6,6</a></li><li><a href="../19343/determination-of-vitamin-c-content--1.html">Determination of vitamin C content </a></li><li><a href="../19342/hydrolysis-of-starch--1.html">Hydrolysis of starch </a></li><li><a href="../19159/preparation-purification-of-aspirin--1.html">Preparation & purification of aspirin </a></li></ul></li><li><a href="../18851/ict-in-practical-work-1.html" class="father">ICT in practical work</a><ul class="level-2"><li><a href="../18852/data-logging--1.html">Data logging </a></li><li><a href="../18853/software-for-graph-plotting--1.html">Software for graph plotting </a></li><li><a href="../18854/spreadsheets-for-data-processing--1.html">Spreadsheets for data processing </a></li><li><a href="../18855/databases-1.html">Databases</a></li><li><a href="../18856/computer-modelling-simulations--1.html">Computer modelling & simulations </a></li></ul></li><li><a href="../16594/group-4-project-1.html" class="father">Group 4 Project</a><ul class="level-2"><li><a href="../16595/practicalities-1.html">Practicalities</a></li><li><a href="../16596/reflective-statement--2.html">Reflective statement </a></li></ul></li><li><a href="../16666/a-new-laboratory-1.html">A new laboratory?</a></li></ul></li><li><a href="../16284/exams-1.html">Exams</a><ul class="level-1"><li><a href="../16286/essential-facts-1.html" class="father">Essential Facts</a><ul class="level-2"><li><a href="../16287/objectives-command-terms-1.html">Objectives & command terms</a></li><li><a href="../16288/grade-descriptors-1.html">Grade descriptors</a></li><li><a href="../16289/grade-boundaries-1.html">Grade boundaries</a></li></ul></li><li><a href="../16302/paper-1-multiple-choice-1.html" class="father">Paper 1 (Multiple Choice)</a><ul class="level-2"><li><a href="../16303/advice-to-students-paper-1-1.html">Advice to students (Paper 1)</a></li><li><a href="../31515/practice-paper-1-exams-1.html">Practice Paper 1 exams</a></li></ul></li><li><a href="../16305/paper-2-1.html" class="father">Paper 2</a><ul class="level-2"><li><a href="../16306/advice-to-students-paper-2-1.html">Advice to students (Paper 2)</a></li><li><a href="../16307/areas-of-difficulty-1.html">Areas of difficulty</a></li></ul></li><li><a href="../16313/paper-3--1.html" class="father">Paper 3 </a><ul class="level-2"><li><a href="../16314/advice-to-students-paper-3-1.html">Advice to students (Paper 3)</a></li><li><a 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href="../3147/ib-core-1.html">IB Core</a><ul class="level-1"><li><a href="../3149/learner-profile-1.html">Learner Profile</a></li><li><a href="../21735/extended-essays--1.html" class="father">Extended Essays </a><ul class="level-2"><li><a href="../21736/overview--1.html">Overview </a></li><li><a href="../21780/responsibilities-1.html">Responsibilities</a></li><li><a href="../21790/resources-1.html">Resources</a></li><li><a href="../21800/research-1.html">Research</a></li><li><a href="../21804/writing-the-essay-1.html">Writing the essay</a></li><li><a href="../21810/assessment-1.html">Assessment</a></li><li><a href="../22434/summary-of-advice--1.html">Summary of advice </a></li><li><a href="../25272/faqs--1.html">FAQs </a></li></ul></li><li><a href="../307/theory-of-knowledge-tok-1.html" class="father">Theory of Knowledge (TOK)</a><ul class="level-2"><li><a href="../41171/the-12-tok-concepts-1.html">The 12 TOK concepts</a></li><li><a href="../3507/why-tok-chemistry-1.html">Why TOK & Chemistry?</a></li><li><a href="../3505/a-modern-paradigm-1.html">A modern paradigm</a></li></ul></li></ul></li><li><a href="../17783/fast-track-to-tests-questions-1.html">Fast track to tests & questions</a><ul class="level-1"><li><a href="../17784/sl-multiple-choice-tests-on-individual-topics-1.html">SL Multiple choice tests on individual topics</a></li><li><a href="../24351/sl-multiple-choice-quizzes-on-sub-topics-1.html">SL Multiple choice 'quizzes' on sub-topics</a></li><li><a href="../31519/sl-practice-paper-1-exams-1.html">SL Practice Paper 1 exams</a></li><li><a href="../17786/sl-questions-on-each-sub-topic-1.html">SL Questions on each sub-topic</a></li><li><a href="../20431/sl-paper-3-section-a-questions-1.html">SL Paper 3 Section A questions</a></li><li><a href="../17792/sl-questions-on-the-options-1.html">SL Questions on the options</a></li><li><a href="../24897/sl-quizzes-on-option-sub-topics--1.html">SL Quizzes on option sub-topics </a></li><li><a href="../17785/hl-multiple-choice-tests-on-individual-topics-1.html">HL Multiple choice tests on individual topics</a></li><li><a href="../24352/hl-multiple-choice-quizzes-on-sub-topics-1.html">HL Multiple choice 'quizzes' on sub-topics</a></li><li><a href="../31520/hl-practice-paper-1-exams--1.html">HL Practice Paper 1 exams </a></li><li><a href="../17787/hl-questions-on-each-sub-topic--1.html">HL Questions on each sub-topic </a></li><li><a href="../20428/hl-paper-3-section-a-questions-1.html">HL Paper 3 Section A questions</a></li><li><a href="../17793/hl-questions-on-the-options-1.html">HL Questions on the options</a></li><li><a href="../24973/hl-quizzes-on-option-sub-topics-1.html">HL Quizzes on option sub-topics</a></li><li><a href="../41573/printable-versions-of-written-tasks--1.html">Printable versions of written tasks </a></li></ul></li><li><a href="../41465/complete-course-for-students--2.html">Complete course for students </a><ul class="level-1"><li><a 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</div><section id="main-content"><div class="blueBg"><h1><img alt="" height="22" src="../../../img/tib-icons/standard-level-32-1.png" title="" width="22"> <img alt="" height="22" src="../../../img/tib-icons/higher-level-32-1.png" title="" width="22"> Introduction</h1><p><img alt="" src="../../../ib/chemistry/images/2014%20practicals/Microwave-oven.jpg" style="width: 440px; height: 263px; float: right;">The traditional practical way to show whether the molecules of a substance are polar was to put the liquid in a <span data-scayt-word="burette" data-wsc-lang="en_US">burette</span> and use a charged rod to see if it would deflect the liquid as it ran out of the <span data-scayt-word="burette" data-wsc-lang="en_US">burette</span>.</p><p>A much neater way is to use an ordinary household microwave oven. The first microwave oven was invented by Percy Spencer during the Second World War. Microwave ovens work by creating oscillating electromagnetic radiation in the microwave region. Polar molecules heat up as they are constantly trying to re-arrange their polarity to line up with the oscillating field. Non-polar molecules are unaffected by the microwave radiation and so no temperature change occurs. This fact can be <span data-scayt-word="utilised" data-wsc-lang="en_US">utilised</span> easily in the lab and can be extended to look at the amount of polarity possessed by a substance. The experiment can be demonstrated by the teacher but is better done by students themselves.</p><hr class="hidden"></div><hr class="hidden"><div class="greenBg"><h1>Teacher’s notes</h1><p>Any microwave oven will do but it is probably best to experiment beforehand with your particular oven to determine the time to heat about 10 cm<sup>3</sup> of water in a beaker by about 40 <sup>o</sup>C as the power output of the microwave oven can vary. The best non-polar liquid to use is <span data-scayt-word="tetrachloromethane" data-wsc-lang="en_US">tetrachloromethane</span> but this is not available in many schools and if you do use it then the experiment should be performed in a fume cupboard. Other non-polar liquids (or nearly non-polar liquids) that could be used are for example, cyclohexane or <span data-scayt-word="methylbenzene" data-wsc-lang="en_US">methylbenzene</span>. Unlike <span data-scayt-word="tetrachloromethane" data-wsc-lang="en_US">tetrachloromethane</span> these are flammable so care should be taken. I have done the experiment several times with cyclohexane and not experienced any problems but it is not clear that there is absolutely no risk. Be very careful with the ethanol experiment. Students probably will think that as ethanol is less polar than water it will not heat up as much. In fact it will rapidly boil as the specific heat capacity of ethanol is much lower (2.44 J K<sup>-1</sup> g<sup>-1</sup>) than the specific heat capacity of water (4.18 J K<sup>-1</sup> g<sup>-1</sup>). If you have some different alcohols such as <span data-scayt-word="propan-1-ol" data-wsc-lang="en_US">propan-1-ol</span> and <span data-scayt-word="butan-1ol" data-wsc-lang="en_US">butan-1ol</span> then students can experiment to see how much the temperature increases and try to relate this to the expected polarity and specific heat changes.</p><hr class="hidden"></div><hr class="hidden"><div class="box"><h2><img alt="smiley" class="ico" height="16" src="../../../img/tib-icons/standard-level-16-1.png" title="smiley" width="16"> <img alt="laugh" class="ico" height="16" src="../../../img/tib-icons/higher-level-16-1.png" title="laugh" width="16"> Student worksheet</h2><hr class="hidden"><p style="text-align: center;"><strong>POLARITY</strong><strong> OF </strong><strong>MOLECULES</strong></p><hr class="hidden"><p>This experiment uses an ordinary household microwave oven to explore the polarity of several different substances. A microwave oven works by producing a rapidly oscillating field of electromagnetic radiation in the microwave region. Polar molecules continually try to align themselves with the field with the result that they are rapidly rotating. This kinetic energy results in the temperature of the substance increasing.</p><hr class="hidden"><p><strong>SAFETY:</strong></p><p>Although microwaves are dangerous the oven only works when the door is closed. Some of the substances you use are flammable so keep them away from sparks and naked flames. Certain substances are poisonous and should only be used in a fume cupboard. Take advice from your teacher on this.</p><hr class="hidden"><p><strong>ENVIRONMENTAL CARE:</strong></p><p>Since no reactions are carried out, substances can be returned to their original bottle at no cost to the environment. This means that you must be careful that they are not contaminated in any way before they are put back into the original bottle. If in doubt then place them in the ‘waste organic’ container.</p><hr class="hidden"><p><strong>PROCEDURE:</strong></p><p><strong>1.</strong> Place 10.0 cm<sup>3</sup> of water into a 100 cm<sup>3</sup> open beaker. Record the temperature of the water. Put the beaker in the <span data-scayt-word="centre" data-wsc-lang="en_US">centre</span> of the rotating plate in the microwave oven <strong>without the thermometer</strong>. Switch the oven on for a short time (e.g. 10 seconds). Take the temperature of the water as soon as you have removed it from the microwave oven. Experiment with the time to find out how long it requires to raise the temperature by about 40 <sup>o</sup>C.</p><p><strong>2.</strong> Place 10.0 cm<sup>3</sup><sup> </sup>of the non-polar liquid you have been provided with in a 100 cm<sup>3</sup> beaker. Switch the oven on for exactly the same amount of time that you determined in <strong>1.</strong> Record the temperature after you have removed the beaker and its contents from the oven.</p><p><strong>3.</strong> Repeat <strong>2.</strong> with 10.0 cm<sup>3</sup> of ethanol. <strong>Be very careful as you may be surprised by what happens.</strong></p><p><strong>4.</strong> Repeat with 10.0 cm<sup>3</sup> of other alcohols that you have been provided with. Try to predict what will happen before you do each experiment.</p><hr class="hidden"><p><strong>QUESTIONS:</strong></p><p><strong>1. </strong>Explain why the temperature of water rises rapidly after only a short burst of microwaves whereas there is no change in temperature when the non-polar substance undergoes the same treatment.</p><p><strong>2.</strong> Suggest a reason why ice is slow to heat up in a microwave oven.</p><p><strong>3.</strong> Compare the polarity of ethanol with that of water. Would you expect ethanol to heat up more, or less, or the same as water under the same conditions? Suggest a reason for the result you obtained with ethanol.</p><p><strong>4.</strong> If you are able to repeat the experiment with other alcohols try to explain the results you achieved.</p><hr class="hidden"></div><hr class="hidden"><p>This worksheet can also be downloaded from:</p><p><a href="/media/ib/chemistry/files/2014%20practicals/Polarity-of-molecules.pdf" target="_blank" title="Worksheets"><img class="ico" src="../../../img/icons/exercise-1.png"> <img alt="" height="16" src="../../../img/tib-icons/standard-level-24-1.png" title="" width="16"> <img alt="" height="16" src="../../../img/tib-icons/higher-level-24-1.png" title="" width="16"> Polarity of molecules</a></p><hr class="hidden"></section></article><section id="media-extras"><div class="page-actions no-print navbar inline hidden-desktop"><div class="navbar-inner"><ul class="nav"><li><a class="presentation" href="#" onclick="return false;"><i class="fa fa-desktop"></i></a></li><li><a class="print-section-blog" href="#" onclick="return false;"><i class="fa fa-print"></i></a></li><li><a class="page-bookmarker" data-ticket="IB Docs (2) Team" data-pid="17170" href="#" onclick="return false;"><i class="fa fa-star"></i></a></li><li><a class="personal-notes" href="#" onclick="return false;"><i class="fa fa-file-text"></i></a></li><li><a class="" data-toggle="modal" href="#modal-feedback" onclick="return false;"><i class="fa fa-envelope-o"></i></a></li><li class="dropdown"><a class="dropdown-toggle" data-toggle="dropdown" data-target="#" href="#"><i class="fa fa-share-alt"></i></a><ul class="dropdown-menu" role="menu"><li><a class="" target="_blank" title="Share on Twitter" href="https://twitter.com/share?text=%22Polarity+of+molecules%22+-+via+%40InThinker+%23chemistry%0A&url=https%3A%2F%2Fwww.thinkib.net%2Fchemistry%2Fpage%2F17170%2Fpolarity-of-molecules"><i class="fa fa-twitter-square"></i><span>Twitter</span></a></li><li><a class="" target="_blank" title="Share on Facebook" href="https://www.facebook.com/sharer.php?u=https%3A%2F%2Fwww.thinkib.net%2Fchemistry%2Fpage%2F17170%2Fpolarity-of-molecules&t=Polarity+of+molecules"><i class="fa fa-facebook-square"></i><span>Facebook</span></a></li><li><a class="" href="http://www.linkedin.com/shareArticle?mini=true&url=https%3A%2F%2Fwww.thinkib.net%2Fchemistry%2Fpage%2F17170%2Fpolarity-of-molecules"><i class="fa fa-linkedin-square"></i><span>LinkedIn</span></a></li><li><a class="" href="https://plus.google.com/share?url=https%3A%2F%2Fwww.thinkib.net%2Fchemistry%2Fpage%2F17170%2Fpolarity-of-molecules"><i class="fa fa-google-plus-square"></i><span>Google +</span></a></li><li><a class="" href="mailto:?subject=Polarity of molecules&body=The traditional practical way to show whether the molecules of a substance are polar was to put the liquid in a burette and use a charged rod to see if it would deflect the liquid as it ran out of the burette.A much neater...%0Ahttps%3A%2F%2Fwww.thinkib.net%2Fchemistry%2Fpage%2F17170%2Fpolarity-of-molecules"><i class="fa fa-envelope"></i><span>Email</span></a></li></ul></li><li><a class="" href="chemistry/teaching-materials"><i class="fa fa-puzzle-piece colored"></i></a></li></ul></div></div><div style="border-top: solid 1px #eee;border-bottom: solid 1px #eee;padding: 4px 0 4px 0;line-height: 1em;color: #666;font-size: .8em"><small><em>All materials on this website are for the exclusive use of teachers and students at subscribing schools for the period of their subscription. 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