{"page":"<link rel=\"stylesheet\" href=\"https://lessonplanet.com/assets/packs/css/resources-572d6a42.css\" />\n<link rel=\"stylesheet\" href=\"https://lessonplanet.com/assets/packs/css/lp_boclips_stylesheets-f4d0de30.css\" media=\"all\" />\n<div data-title='Moments of Inertia of Rigid Objects with Shape' data-url='/boclips/videos/5d276fbd3ce4e62b921f1a4d' data-video-url='/boclips/videos/5d276fbd3ce4e62b921f1a4d' id='bo_player_modal'>\n<div class='boclips-resource-page modal-dialog panel-container'>\n<div class='react-notifications-root'></div>\n<div class='rp-header'>\n<div class='rp-type'>\n<i aria-hidden='true' class='fai fa-regular fa-circle-play'></i>\nVideo\n</div>\n<h1 class='rp-title' id='video-title'>\nMoments of Inertia of Rigid Objects with Shape\n</h1>\n<div class='rp-actions'>\n<div class='mr-1'>\n<a class=\"btn btn-success\" data-posthog-event=\"Signup: LP Signup Activity\" data-posthog-location=\"body_link_boclips\" data-remote=\"true\" href=\"/subscription/new\"><span><span>Get Free Access</span><span class=\"\"> for 10 Days</span><span>!</span></span></a>\n</div>\n</div>\n</div>\n<div class='rp-body'>\n<div class='rp-info'>\n<div aria-label='Hide resource details' class='rp-hide-info' role='button' tabindex='0'>&times;</div>\n<i aria-label='Expand resource details' class='rp-expand-info fai fa-solid fa-up-right-and-down-left-from-center' role='button' tabindex='0'></i>\n<i aria-label='Compress resource details' class='rp-compress-info fai fa-solid fa-down-left-and-up-right-to-center' role='button' tabindex='0'></i>\n<div class='rp-rating'>\n<span class='resource-pool'>\n<span class='pool-label'>Publisher:</span>\n<span class='pool-name'>\n<span class='text'><a data-publisher-id=\"30356533\" href=\"/search?publisher_ids%5B%5D=30356533\">Flipping Physics</a></span>\n</span>\n</span>\n</div>\n<div class='rp-description'>\n<span class='short-description'>The moment of inertia of a system of particles equation is used to estimate six different moments of inertia of rigid objects with constant density.</span>\n<span class='full-description hide'>The moment of inertia of a system of particles equation is used to estimate six different moments of inertia of rigid objects with constant density.</span>\n</div>\n<div class='rp-report'>\n</div>\n<div aria-labelledby='resource-details-heading' class='rp-info-section'>\n<h2 class='title' id='resource-details-heading'>Resource Details</h2>\n<div class='rp-resource-details clearfix'>\n<div class='detail'>\n<dl>\n<dt>Curator Rating</dt>\n<dd><span class=\"star-rating\" aria-label=\"4.5 out of 5 stars\" role=\"img\"><i class=\"fa-solid fa-star text-action\" aria-hidden=\"true\"></i><i class=\"fa-solid fa-star text-action\" aria-hidden=\"true\"></i><i class=\"fa-solid fa-star text-action\" aria-hidden=\"true\"></i><i class=\"fa-solid fa-star text-action\" aria-hidden=\"true\"></i><i class=\"fa-solid fa-star-half-stroke text-action\" 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class='details-list concepts' data-identifier='Boclips::VideoDecorator5d276fbd3ce4e62b921f1a4d' data-type='concepts'>equations, center of mass, mechanics, radius, particles, mass</div>\n<div class='concepts-toggle-buttons' data-identifier='Boclips::VideoDecorator5d276fbd3ce4e62b921f1a4d'>\n<button aria-expanded='false' class='more btn-link' type='button'>\n<span>Show More</span>\n<i aria-hidden='true' class='fa-solid fa-caret-down ml5'></i>\n</button>\n<button aria-expanded='true' class='less btn-link' style='display: none;' type='button'>\n<span>Show Less</span>\n<i aria-hidden='true' class='fa-solid fa-caret-up ml5'></i>\n</button>\n</div>\n</div>\n</div>\n<div aria-labelledby='additional-tags-heading' class='rp-info-section'>\n<h2 class='title' id='additional-tags-heading'>Additional Tags</h2>\n<div class='clearfix'>\n<div class='details-list keyterms' data-identifier='Boclips::VideoDecorator5d276fbd3ce4e62b921f1a4d' data-type='keyterms'>cylinder, constant density, table, hollow sphere, solid, billy, compared, word thin, estimate, solid sphere, moment of inertia, cylindrical axis, solid disk, squared, rigid objects, fraction multiplied, rotational inertia, cylindrical access, thin rod, relative, solid cylinder, axis, flipping, ap physics, means, ap physics 1, inertia equations, particle, makes sense, ap physics c, lacrosse ball, rigid object, fraction times, rotational mass, thin ring, mass farther, fraction, physics, hollow cylinder, larger proportion, thin, sphere, hollow, correct, object</div>\n<div class='keyterms-toggle-buttons' data-identifier='Boclips::VideoDecorator5d276fbd3ce4e62b921f1a4d'>\n<button aria-expanded='false' class='more btn-link' type='button'>\n<span>Show More</span>\n<i aria-hidden='true' class='fa-solid fa-caret-down ml5'></i>\n</button>\n<button aria-expanded='true' class='less btn-link' style='display: none;' type='button'>\n<span>Show Less</span>\n<i aria-hidden='true' class='fa-solid fa-caret-up 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