{"id":127,"date":"2014-10-19T08:37:53","date_gmt":"2014-10-19T08:37:53","guid":{"rendered":"https:\/\/blogs.glowscotland.org.uk\/gc\/hyndsecphysu2hwrk\/?page_id=127"},"modified":"2021-02-20T12:58:34","modified_gmt":"2021-02-20T12:58:34","slug":"electricity-energy-exercise-13","status":"publish","type":"page","link":"https:\/\/blogs.glowscotland.org.uk\/gc\/hyndsecphysu2hwrk\/electricity-energy-exercise-13\/","title":{"rendered":"Electricity &amp; Energy Exercise 13"},"content":{"rendered":"<p>1. In an experiment, an open capillary tube with a mercury thread is placed in to a heat bath.<br \/>\nAs the temperature of the gas increases, the mercury thread moves up the capillary tube. The pressure of the gas remains constant because the capillary tube is open.<br \/>\nThe temperature of the gas is measured with a thermometer and the volume of the gas is measured using a scale next to the open capillary tube. The results of the experiment are shown.<\/p>\n<p style=\"text-align: center\"><a href=\"https:\/\/blogs.glowscotland.org.uk\/gc\/public\/hyndsecphysu2hwrk\/uploads\/sites\/5086\/2014\/10\/ElecEn-1_13a.png\"><img loading=\"lazy\" decoding=\"async\" class=\"aligncenter size-full wp-image-113\" title=\"ElecEn 1_13a\" src=\"https:\/\/blogs.glowscotland.org.uk\/gc\/public\/hyndsecphysu2hwrk\/uploads\/sites\/5086\/2014\/10\/ElecEn-1_13a.png\" alt=\"\" width=\"598\" height=\"195\" srcset=\"https:\/\/blogs.glowscotland.org.uk\/gc\/public\/hyndsecphysu2hwrk\/uploads\/sites\/5086\/2014\/10\/ElecEn-1_13a.png 639w, https:\/\/glow-prod-gc.s3.eu-west-1.amazonaws.com\/gc\/public\/hyndsecphysu2hwrk\/uploads\/sites\/5086\/2014\/10\/ElecEn-1_13a-300x97.png?X-Amz-Content-Sha256=UNSIGNED-PAYLOAD&amp;X-Amz-Security-Token=IQoJb3JpZ2luX2VjECQaCWV1LXdlc3QtMSJIMEYCIQD5AoEj85pwcB4sHD7wJtOqBRdk0Bt1kIKw8eSyygSMYwIhAKHNPD%2Bj5ZP7arqdrZ5gCtUssNJ6rsAmKn7LiclRRRv4KsIFCO3%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FwEQBRoMMjczNTcwMTk1NDMzIgyGXz6ztRWw9LABocEqlgUBuAM0UqYu7SCkqDpZnkUu2Cey2eU7D97C7A3SARVrFqTAu8CwTFvEAaOgkM4uCAxxRAow5nlSMfCmU2c0T%2Blh1%2BPmuqDHN5rgcra4o4xdYJpmcHpsDnleC48rbMV6Ez2OGd7Jv62fC41wkQ0G%2FBuY%2BJNmrzMlb69tl5%2FIShPHWfbf2uta2RqH%2FfiIEE080iVElKbzYSmk6f3DxG32DTwrvZ5UYDpNNla6Yv2sL1iWbjjt8gKJHua5SaiB9rwmSsrD876KyMXrQqq8oocQZaZQ6cAaKIBntaaXFmnhEuUcinFxnv2wT4au0T5oDmuqDSiSkQllSIBInaHnqayczgrdAJxhXFvN06kVPHoM%2BppIvxAeDIyKeWmnL6JPUcEvrTwwFfKJuq6wTUUFE6uL3R3aGCkiFcSGOgWzrZVUQPJ%2BwfFPpOJXarq7ToGVV5uiJUGdomTFrcsC6zUPrMx7EwD6opQ4UdOqYdN8EsKTDNqal8og4cSYg8PplHYjcQuE5h83RIwWsSILFox0%2FMwazO%2FFoHnrx9nKUAh7408IT71FWyXerEVWoa%2BkUZsjMIrE43iucmWxD4kyBtfMOA%2FW6K7w1Qx64ac%2B4%2FgZ1rY1uSnPFNQWMKXvyq7yM7SntV3VBw%2BU6s3KWIzuZY05QGOWk%2BBRuBp7v7fqugItwMP7HCWXdW53ZF55ENzQ512cLVXSlgh%2FRy60pbRCD4MlknfZLG7Ciw1nwwfp94B0dOQkD9AgXVHwcuc86GbAP9E0LFsqeX0%2BFmq5zZZU3TvOgw%2B1A52rgnzZMLBzoO1dyQ3AMseKx7s0yw6GiW6CnCEF6VRHU74w5CitnDA1biIxIORJjzcwVORHmkKCNpPtlvrNzVnm4wMeqSiQ1zCNvtXOBjqwAWGHsGN5IgjS5%2FlqiOjPNF1PejZ9q2xYTWGt3VYG4wPpIGIq%2Fa59g2wFQWp0GkLrioL2rnVgHRwR9fR7DZIDAexzksV18q8zL9E4epuUewDouQAH5TNh%2BzRFTdF81h6ffOxVMoE%2BYHGumxN8qSy8jPsJgke0jg7vVJC%2FU%2FlZusqg8ykomzEFmyTmmquFidiu0YOlWJTWzAE78pIp1yyA7hHyvY0wrPR6BPTtekSLsJiF&amp;X-Amz-Algorithm=AWS4-HMAC-SHA256&amp;X-Amz-Credential=ASIAT7MQN47U7KHFNOF5%2F20260407%2Feu-west-1%2Fs3%2Faws4_request&amp;X-Amz-Date=20260407T202721Z&amp;X-Amz-SignedHeaders=host&amp;X-Amz-Expires=900&amp;X-Amz-Signature=e0a79d3b8529e2fc5ab69fcf9718faa93ac3662e927018067fecff368269ac7c 300w\" sizes=\"auto, (max-width: 598px) 100vw, 598px\" \/><\/a><\/p>\n<p>(a) Draw a rough graph of volume against temperature (in degrees Celsius).<\/p>\n<p>(b) Draw a rough graph of volume against temperature (in Kelvin).<\/p>\n<p>(c) What do these two graphs tell you about the relationship between the volume and temperature of a fixed mass of gas?<\/p>\n<p>(d) Explain this relationship in terms of the kinetic theory of particles.<\/p>\n<p>2. The volume of a fixed mass of gas is 30.0 cm<sup>3<\/sup>;\u00a0at 30 \u00b0C. The temperature of the gas is increased to 60 \u00b0C without changing the pressure.<br \/>\nA student makes this statement:<\/p>\n<p>\u2018As the temperature of the gas has doubled, the volume of the gas will also double. Therefore, the volume of the gas at 60 \u00b0C will be 60.0 cm<sup>3<\/sup>;.\u2019<\/p>\n<p>(a) Explain why this statement is incorrect.<br \/>\n(b) Calculate what the volume of the gas would actually be at 60 \u00b0C.<\/p>\n<p>3 .Air is trapped in a glass capillary tube by a bead of mercury. The volume of air is found to be 0.15 cm<sup>3<\/sup> at a temperature of 27 \u00b0C.<br \/>\nAssuming that the pressure of the air remains constant, what is the volume of the air at a temperature of 87 \u00b0C?<\/p>\n<p><a href=\"https:\/\/blogs.glowscotland.org.uk\/gc\/public\/hyndsecphysu2hwrk\/uploads\/sites\/5086\/2014\/10\/ElecEn-1_13a.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"alignright size-medium wp-image-142\" title=\"ElecEn 1_13a\" src=\"https:\/\/glow-prod-gc.s3.eu-west-1.amazonaws.com\/gc\/public\/hyndsecphysu2hwrk\/uploads\/sites\/5086\/2014\/10\/ElecEn-1_13a-300x208.jpg?X-Amz-Content-Sha256=UNSIGNED-PAYLOAD&#038;X-Amz-Security-Token=IQoJb3JpZ2luX2VjECQaCWV1LXdlc3QtMSJIMEYCIQD5AoEj85pwcB4sHD7wJtOqBRdk0Bt1kIKw8eSyygSMYwIhAKHNPD%2Bj5ZP7arqdrZ5gCtUssNJ6rsAmKn7LiclRRRv4KsIFCO3%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FwEQBRoMMjczNTcwMTk1NDMzIgyGXz6ztRWw9LABocEqlgUBuAM0UqYu7SCkqDpZnkUu2Cey2eU7D97C7A3SARVrFqTAu8CwTFvEAaOgkM4uCAxxRAow5nlSMfCmU2c0T%2Blh1%2BPmuqDHN5rgcra4o4xdYJpmcHpsDnleC48rbMV6Ez2OGd7Jv62fC41wkQ0G%2FBuY%2BJNmrzMlb69tl5%2FIShPHWfbf2uta2RqH%2FfiIEE080iVElKbzYSmk6f3DxG32DTwrvZ5UYDpNNla6Yv2sL1iWbjjt8gKJHua5SaiB9rwmSsrD876KyMXrQqq8oocQZaZQ6cAaKIBntaaXFmnhEuUcinFxnv2wT4au0T5oDmuqDSiSkQllSIBInaHnqayczgrdAJxhXFvN06kVPHoM%2BppIvxAeDIyKeWmnL6JPUcEvrTwwFfKJuq6wTUUFE6uL3R3aGCkiFcSGOgWzrZVUQPJ%2BwfFPpOJXarq7ToGVV5uiJUGdomTFrcsC6zUPrMx7EwD6opQ4UdOqYdN8EsKTDNqal8og4cSYg8PplHYjcQuE5h83RIwWsSILFox0%2FMwazO%2FFoHnrx9nKUAh7408IT71FWyXerEVWoa%2BkUZsjMIrE43iucmWxD4kyBtfMOA%2FW6K7w1Qx64ac%2B4%2FgZ1rY1uSnPFNQWMKXvyq7yM7SntV3VBw%2BU6s3KWIzuZY05QGOWk%2BBRuBp7v7fqugItwMP7HCWXdW53ZF55ENzQ512cLVXSlgh%2FRy60pbRCD4MlknfZLG7Ciw1nwwfp94B0dOQkD9AgXVHwcuc86GbAP9E0LFsqeX0%2BFmq5zZZU3TvOgw%2B1A52rgnzZMLBzoO1dyQ3AMseKx7s0yw6GiW6CnCEF6VRHU74w5CitnDA1biIxIORJjzcwVORHmkKCNpPtlvrNzVnm4wMeqSiQ1zCNvtXOBjqwAWGHsGN5IgjS5%2FlqiOjPNF1PejZ9q2xYTWGt3VYG4wPpIGIq%2Fa59g2wFQWp0GkLrioL2rnVgHRwR9fR7DZIDAexzksV18q8zL9E4epuUewDouQAH5TNh%2BzRFTdF81h6ffOxVMoE%2BYHGumxN8qSy8jPsJgke0jg7vVJC%2FU%2FlZusqg8ykomzEFmyTmmquFidiu0YOlWJTWzAE78pIp1yyA7hHyvY0wrPR6BPTtekSLsJiF&#038;X-Amz-Algorithm=AWS4-HMAC-SHA256&#038;X-Amz-Credential=ASIAT7MQN47U7KHFNOF5%2F20260407%2Feu-west-1%2Fs3%2Faws4_request&#038;X-Amz-Date=20260407T202721Z&#038;X-Amz-SignedHeaders=host&#038;X-Amz-Expires=900&#038;X-Amz-Signature=92329ad59632ed4a80152d262ce79908f0c6ee285cd48071783b35ddde286884\" alt=\"\" width=\"108\" height=\"75\" srcset=\"https:\/\/glow-prod-gc.s3.eu-west-1.amazonaws.com\/gc\/public\/hyndsecphysu2hwrk\/uploads\/sites\/5086\/2014\/10\/ElecEn-1_13a-300x208.jpg?X-Amz-Content-Sha256=UNSIGNED-PAYLOAD&amp;X-Amz-Security-Token=IQoJb3JpZ2luX2VjECQaCWV1LXdlc3QtMSJIMEYCIQD5AoEj85pwcB4sHD7wJtOqBRdk0Bt1kIKw8eSyygSMYwIhAKHNPD%2Bj5ZP7arqdrZ5gCtUssNJ6rsAmKn7LiclRRRv4KsIFCO3%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FwEQBRoMMjczNTcwMTk1NDMzIgyGXz6ztRWw9LABocEqlgUBuAM0UqYu7SCkqDpZnkUu2Cey2eU7D97C7A3SARVrFqTAu8CwTFvEAaOgkM4uCAxxRAow5nlSMfCmU2c0T%2Blh1%2BPmuqDHN5rgcra4o4xdYJpmcHpsDnleC48rbMV6Ez2OGd7Jv62fC41wkQ0G%2FBuY%2BJNmrzMlb69tl5%2FIShPHWfbf2uta2RqH%2FfiIEE080iVElKbzYSmk6f3DxG32DTwrvZ5UYDpNNla6Yv2sL1iWbjjt8gKJHua5SaiB9rwmSsrD876KyMXrQqq8oocQZaZQ6cAaKIBntaaXFmnhEuUcinFxnv2wT4au0T5oDmuqDSiSkQllSIBInaHnqayczgrdAJxhXFvN06kVPHoM%2BppIvxAeDIyKeWmnL6JPUcEvrTwwFfKJuq6wTUUFE6uL3R3aGCkiFcSGOgWzrZVUQPJ%2BwfFPpOJXarq7ToGVV5uiJUGdomTFrcsC6zUPrMx7EwD6opQ4UdOqYdN8EsKTDNqal8og4cSYg8PplHYjcQuE5h83RIwWsSILFox0%2FMwazO%2FFoHnrx9nKUAh7408IT71FWyXerEVWoa%2BkUZsjMIrE43iucmWxD4kyBtfMOA%2FW6K7w1Qx64ac%2B4%2FgZ1rY1uSnPFNQWMKXvyq7yM7SntV3VBw%2BU6s3KWIzuZY05QGOWk%2BBRuBp7v7fqugItwMP7HCWXdW53ZF55ENzQ512cLVXSlgh%2FRy60pbRCD4MlknfZLG7Ciw1nwwfp94B0dOQkD9AgXVHwcuc86GbAP9E0LFsqeX0%2BFmq5zZZU3TvOgw%2B1A52rgnzZMLBzoO1dyQ3AMseKx7s0yw6GiW6CnCEF6VRHU74w5CitnDA1biIxIORJjzcwVORHmkKCNpPtlvrNzVnm4wMeqSiQ1zCNvtXOBjqwAWGHsGN5IgjS5%2FlqiOjPNF1PejZ9q2xYTWGt3VYG4wPpIGIq%2Fa59g2wFQWp0GkLrioL2rnVgHRwR9fR7DZIDAexzksV18q8zL9E4epuUewDouQAH5TNh%2BzRFTdF81h6ffOxVMoE%2BYHGumxN8qSy8jPsJgke0jg7vVJC%2FU%2FlZusqg8ykomzEFmyTmmquFidiu0YOlWJTWzAE78pIp1yyA7hHyvY0wrPR6BPTtekSLsJiF&amp;X-Amz-Algorithm=AWS4-HMAC-SHA256&amp;X-Amz-Credential=ASIAT7MQN47U7KHFNOF5%2F20260407%2Feu-west-1%2Fs3%2Faws4_request&amp;X-Amz-Date=20260407T202721Z&amp;X-Amz-SignedHeaders=host&amp;X-Amz-Expires=900&amp;X-Amz-Signature=92329ad59632ed4a80152d262ce79908f0c6ee285cd48071783b35ddde286884 300w, https:\/\/blogs.glowscotland.org.uk\/gc\/public\/hyndsecphysu2hwrk\/uploads\/sites\/5086\/2014\/10\/ElecEn-1_13a.jpg 600w\" sizes=\"auto, (max-width: 108px) 100vw, 108px\" \/><\/a>4 .A fixed mass of gas is trapped in to a syringe. The gas has a pressure of 1.63 x 10<sup>5<\/sup> Pa when it has a volume of 3.0 cm<sup>3<\/sup> and a temperature of 22 \u00b0C.<br \/>\nThe gas is then heated until it has a uniform temperature of 57 \u00b0C. What will be the pressure of the gas if the volume of the gas is increased to 5.0 cm<sup>3<\/sup>?<\/p>\n","protected":false},"excerpt":{"rendered":"<p>1. In an experiment, an open capillary tube with a mercury thread is placed in to a heat bath. As the temperature of the gas increases, the mercury thread moves up the capillary tube. The pressure of the gas remains constant because the capillary tube is open. The temperature of the gas is measured with &hellip; <a href=\"https:\/\/blogs.glowscotland.org.uk\/gc\/hyndsecphysu2hwrk\/electricity-energy-exercise-13\/\" class=\"more-link\">Continue reading <span class=\"screen-reader-text\">Electricity &amp; Energy Exercise 13<\/span> <span class=\"meta-nav\">&rarr;<\/span><\/a><\/p>\n","protected":false},"author":2454,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"open","ping_status":"open","template":"","meta":{"footnotes":""},"class_list":["post-127","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/blogs.glowscotland.org.uk\/gc\/hyndsecphysu2hwrk\/wp-json\/wp\/v2\/pages\/127","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/blogs.glowscotland.org.uk\/gc\/hyndsecphysu2hwrk\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/blogs.glowscotland.org.uk\/gc\/hyndsecphysu2hwrk\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/blogs.glowscotland.org.uk\/gc\/hyndsecphysu2hwrk\/wp-json\/wp\/v2\/users\/2454"}],"replies":[{"embeddable":true,"href":"https:\/\/blogs.glowscotland.org.uk\/gc\/hyndsecphysu2hwrk\/wp-json\/wp\/v2\/comments?post=127"}],"version-history":[{"count":8,"href":"https:\/\/blogs.glowscotland.org.uk\/gc\/hyndsecphysu2hwrk\/wp-json\/wp\/v2\/pages\/127\/revisions"}],"predecessor-version":[{"id":218,"href":"https:\/\/blogs.glowscotland.org.uk\/gc\/hyndsecphysu2hwrk\/wp-json\/wp\/v2\/pages\/127\/revisions\/218"}],"wp:attachment":[{"href":"https:\/\/blogs.glowscotland.org.uk\/gc\/hyndsecphysu2hwrk\/wp-json\/wp\/v2\/media?parent=127"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}