{"id":65749,"date":"2026-07-25T05:10:01","date_gmt":"2026-07-24T20:10:01","guid":{"rendered":"https:\/\/phys-edu.net\/wp\/?p=65749"},"modified":"2026-07-25T05:10:01","modified_gmt":"2026-07-24T20:10:01","slug":"el-terror-de-una-caida-de-16-metros-explicado-por-la-ciencia-descifrando-splash-mountain-con-formulas-matematicas%e3%80%90fisica-de-disneyland%e3%80%91","status":"publish","type":"post","link":"https:\/\/phys-edu.net\/wp\/?p=65749&lang=es","title":{"rendered":"El terror de una ca\u00edda de 16 metros, \u00a1explicado por la ciencia! Descifrando Splash Mountain con f\u00f3rmulas matem\u00e1ticas\u3010F\u00edsica de Disneyland\u3011"},"content":{"rendered":"<p style=\"text-align: center;\"><b style=\"color: #339966;\">\u00a1Hola! Soy Ken Kuwako, preparador de ciencias. Para m\u00ed, \u00a1cada d\u00eda es un experimento!<\/b><\/p>\n<p style=\"text-align: center;\"><b><span style=\"font-size: 14px;\">\u00bfSab\u00edas que puedes calcular t\u00fa mismo la velocidad de Splash Mountain en Disneyland?<\/span><\/b><\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-65724 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-24-16.47.08.jpeg\" alt=\"\" width=\"453\" height=\"352\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-24-16.47.08.jpeg 962w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-24-16.47.08-300x233.jpeg 300w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-24-16.47.08-768x597.jpeg 768w\" sizes=\"auto, (max-width: 453px) 100vw, 453px\" \/><\/p>\n<p style=\"text-align: center;\">Esta imagen fue creada con IA generativa.<\/p>\n<p>Cuando pregunto en clase: &#8220;\u00bfQui\u00e9n ha subido a Splash Mountain en Tokyo Disneyland?&#8221;, casi todos los alumnos levantan la mano. Para ellos, Tokyo Disneyland es un &#8220;mundo de f\u00edsica&#8221; que ya han experimentado en carne propia. Sin embargo, cuando pregunto: &#8220;\u00bfQui\u00e9n se ha subido a la monta\u00f1a rusa FUJIYAMA?&#8221;, solo un 10 % levanta la mano. \u00a1Parece que el list\u00f3n de la &#8220;adrenalina extrema&#8221; est\u00e1 bastante alto!<\/p>\n<p>Pero un momento&#8230; \u00bfSab\u00edas que Splash Mountain es en realidad la atracci\u00f3n m\u00e1s r\u00e1pida de todo Tokyo Disneyland? S\u00ed, nos referimos a esa famosa atracci\u00f3n en la que te tiras al estanque de una cascada a bordo de una barca de tronco.<\/p>\n<p>Lo m\u00e1s fascinante es que, con los conocimientos b\u00e1sicos de f\u00edsica de secundaria, se puede predecir y calcular su velocidad. Ya no es solo &#8220;diversi\u00f3n&#8221;, sino un material did\u00e1ctico genial. \u00a1Echemos un vistazo a Splash Mountain a trav\u00e9s de los ojos de la f\u00edsica!<\/p>\n<h3>\u00bfQu\u00e9 tan alta es en realidad? \u2014 Datos b\u00e1sicos primero<\/h3>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-39086 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2021\/11\/dac5982513156b6353d165694dc1d81f.jpg\" alt=\"\" width=\"565\" height=\"322\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2021\/11\/dac5982513156b6353d165694dc1d81f.jpg 906w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2021\/11\/dac5982513156b6353d165694dc1d81f-300x171.jpg 300w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2021\/11\/dac5982513156b6353d165694dc1d81f-768x437.jpg 768w\" sizes=\"auto, (max-width: 565px) 100vw, 565px\" \/><\/p>\n<p>La ic\u00f3nica escena de la ca\u00edda en Splash Mountain. Durante ese cl\u00edmax, \u00bfdesde qu\u00e9 altura se cae exactamente? Seg\u00fan la gu\u00eda oficial, <b>la ca\u00edda m\u00e1xima es de 16 metros<\/b>.<\/p>\n<p>Es decir, equivale a lanzarse entre agua desde la altura de un tercer piso de un edificio escolar. Si nunca has subido a Splash Mountain, echa un vistazo a <a href=\"https:\/\/youtu.be\/AmPPm3O-mWA?si=eMhjVsOJircz1b1V&amp;t=420\">este v\u00eddeo<\/a> alrededor del minuto 7. \u00a1Esa es la gran cascada de 16 metros!<\/p>\n<p><iframe loading=\"lazy\" title=\"\ud83d\udd34\u6771\u4eac\u30c7\u30a3\u30ba\u30cb\u30fc\u30e9\u30f3\u30c9 \u30b9\u30d7\u30e9\u30c3\u30b7\u30e5\u30de\u30a6\u30f3\u30c6\u30f3\" width=\"1140\" height=\"641\" src=\"https:\/\/www.youtube.com\/embed\/AmPPm3O-mWA?start=420&amp;feature=oembed\" frameborder=\"0\" allow=\"accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share\" referrerpolicy=\"strict-origin-when-cross-origin\" allowfullscreen><\/iframe><\/p>\n<p>Investigando m\u00e1s a fondo en la gu\u00eda oficial, tambi\u00e9n encontr\u00e9 los siguientes datos t\u00e9cnicos:<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-34248 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2014\/02\/284dbd6cf259096428d10817c9b169c4.jpg\" alt=\"\" width=\"270\" height=\"192\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2014\/02\/284dbd6cf259096428d10817c9b169c4.jpg 436w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2014\/02\/284dbd6cf259096428d10817c9b169c4-300x213.jpg 300w\" sizes=\"auto, (max-width: 270px) 100vw, 270px\" \/><\/p>\n<p style=\"text-align: center;\">Longitud total: 850 m<br \/>\nVolumen de agua: 110 toneladas por minuto<br \/>\nInclinaci\u00f3n m\u00e1xima: 45 grados<br \/>\nVelocidad m\u00e1xima: 62 km\/h<\/p>\n<p>Para los amantes de la f\u00edsica, estos n\u00fameros son irresistibles: \u00a1dan ganas de sacar la calculadora inmediatamente!<\/p>\n<h3>\u00a1Me fui a buscar datos reales en persona!<\/h3>\n<p>No pude resistir la tentaci\u00f3n de comprobarlo por m\u00ed mismo, as\u00ed que aprovech\u00e9 un tiempo libre mientras acompa\u00f1aba un viaje escolar para subir a Splash Mountain nada menos que 3 veces (como no me gustan mucho las atracciones fuertes, \u00a1estaba literalmente arriesgando la vida!). Llevaba escondidos en el bolsillo un alt\u00edmetro y un sensor de aceleraci\u00f3n para recopilar datos. Como resultado, pude confirmar que la ca\u00edda es, efectivamente, de unos 16 metros.<\/p>\n<p style=\"text-align: center;\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-42017 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2021\/11\/65cd7837b6a4eba7962a8e69521afee0.jpg\" alt=\"\" width=\"625\" height=\"452\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2021\/11\/65cd7837b6a4eba7962a8e69521afee0.jpg 1048w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2021\/11\/65cd7837b6a4eba7962a8e69521afee0-300x217.jpg 300w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2021\/11\/65cd7837b6a4eba7962a8e69521afee0-1024x741.jpg 1024w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2021\/11\/65cd7837b6a4eba7962a8e69521afee0-768x555.jpg 768w\" sizes=\"auto, (max-width: 625px) 100vw, 625px\" \/><\/p>\n<p>En la gr\u00e1fica se observa claramente c\u00f3mo la barca sube dos veces, realiza tres peque\u00f1as ca\u00eddas y finalmente sube a lo alto para caer con un gran impacto.<\/p>\n<p style=\"text-align: center;\">\u203b Los datos originales y la comparaci\u00f3n con otras atracciones (Space Mountain, Big Thunder Mountain) est\u00e1n disponibles en otro art\u00edculo.<\/p>\n<blockquote class=\"wp-embedded-content\" data-secret=\"wj6FFofCUg\"><p><a href=\"https:\/\/phys-edu.net\/wp\/?p=39073\">\u30b9\u30d7\u30e9\u30c3\u30b7\u30e5\u30de\u30a6\u30f3\u30c6\u30f3\u306e\u9ad8\u5ea6\u30fb\u52a0\u901f\u5ea6\u306e\u4e00\u90e8\u59cb\u7d42\u3092\u6e2c\u3063\u3066\u898b\u305f\u3010\u30c7\u30a3\u30ba\u30cb\u30fc\u30e9\u30f3\u30c9\u7269\u7406\u5b66\u3011<\/a><\/p><\/blockquote>\n<p><iframe loading=\"lazy\" class=\"wp-embedded-content\" sandbox=\"allow-scripts\" security=\"restricted\" style=\"position: absolute; visibility: hidden;\" title=\"\u201c\u30b9\u30d7\u30e9\u30c3\u30b7\u30e5\u30de\u30a6\u30f3\u30c6\u30f3\u306e\u9ad8\u5ea6\u30fb\u52a0\u901f\u5ea6\u306e\u4e00\u90e8\u59cb\u7d42\u3092\u6e2c\u3063\u3066\u898b\u305f\u3010\u30c7\u30a3\u30ba\u30cb\u30fc\u30e9\u30f3\u30c9\u7269\u7406\u5b66\u3011\u201d \u2014 \u79d1\u5b66\u306e\u30cd\u30bf\u5e33\" src=\"https:\/\/phys-edu.net\/wp\/?p=39073&amp;embed=true#?secret=FDmMa5XUR4#?secret=wj6FFofCUg\" data-secret=\"wj6FFofCUg\" width=\"600\" height=\"338\" frameborder=\"0\" marginwidth=\"0\" marginheight=\"0\" scrolling=\"no\"><\/iframe><\/p>\n<h3>\u00a1A calcular se ha dicho! Es el turno de la f\u00edsica<\/h3>\n<p>Aqu\u00ed es donde la ciencia demuestra todo su poder. La barca de Splash Mountain no tiene motor; cae desde el punto m\u00e1s alto impulsada \u00fanicamente por la fuerza de la gravedad. En estos casos, podemos utilizar la <b>ley de conservaci\u00f3n de la energ\u00eda mec\u00e1nica<\/b> para predecir la velocidad a partir de la altura.<\/p>\n<p><b><span style=\"font-size: 14px;\">F\u00f3rmula de f\u00edsica utilizada<\/span><\/b><\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-34243 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2014\/02\/c4a9c7b0fcfb40997e4619d7d000ec89.jpg\" alt=\"\" width=\"356\" height=\"236\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2014\/02\/c4a9c7b0fcfb40997e4619d7d000ec89.jpg 586w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2014\/02\/c4a9c7b0fcfb40997e4619d7d000ec89-300x199.jpg 300w\" sizes=\"auto, (max-width: 356px) 100vw, 356px\" \/><\/p>\n<p style=\"text-align: center;\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-65736\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-25-4.51.29.jpeg\" alt=\"\" width=\"371\" height=\"105\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-25-4.51.29.jpeg 784w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-25-4.51.29-300x85.jpeg 300w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-25-4.51.29-768x217.jpeg 768w\" sizes=\"auto, (max-width: 371px) 100vw, 371px\" \/><\/p>\n<p>Donde:<br \/>\ng = 9.8 m\/s\u00b2 (aceleraci\u00f3n de la gravedad)<br \/>\nh = 16 m (altura)<\/p>\n<p>Al hacer el c\u00e1lculo:<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-65737 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-25-4.51.34.jpeg\" alt=\"\" width=\"445\" height=\"46\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-25-4.51.34.jpeg 716w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-25-4.51.34-300x31.jpeg 300w\" sizes=\"auto, (max-width: 445px) 100vw, 445px\" \/><\/p>\n<p>Al convertirlo a km\/h, obtenemos unos 64 km\/h. \u00a1Y qu\u00e9 sorpresa! Coincide casi a la perfecci\u00f3n con la velocidad m\u00e1xima oficial de &#8220;62 km\/h&#8221;. Los c\u00e1lculos de la f\u00edsica son realmente incre\u00edbles, \u00bfverdad?<\/p>\n<h3>\u00a1Puntos clave si lo vas a usar en clase!<\/h3>\n<p>Como la mayor\u00eda de los estudiantes ya han subido a la atracci\u00f3n, la introducci\u00f3n del tema resulta sumamente fluida. Es un ejemplo pr\u00e1ctico ideal para aplicar la ley de conservaci\u00f3n de la energ\u00eda, ya que conecta la experiencia real con la teor\u00eda matem\u00e1tica y despierta el inter\u00e9s por aprender.<\/p>\n<p>Del mismo modo, podemos calcular la velocidad de la <a href=\"https:\/\/youtu.be\/tWUVxOroLhs?si=jQ_JSSDr4se1t1pm\">monta\u00f1a rusa FUJIYAMA en Fuji-Q Highland<\/a> usando el mismo m\u00e9todo.<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-65725 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-24-16.49.00.jpeg\" alt=\"\" width=\"455\" height=\"359\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-24-16.49.00.jpeg 1034w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-24-16.49.00-300x237.jpeg 300w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-24-16.49.00-1024x808.jpeg 1024w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-24-16.49.00-768x606.jpeg 768w\" sizes=\"auto, (max-width: 455px) 100vw, 455px\" \/><\/p>\n<p><iframe loading=\"lazy\" title=\"\ud83d\udd34\u5bcc\u58eb\u6025\u30cf\u30a4\u30e9\u30f3\u30c9 \u30d5\u30b8\u30e4\u30de2 \/ Fujiyama 2 at Yamanashi FujiQ highland\" width=\"1140\" height=\"641\" src=\"https:\/\/www.youtube.com\/embed\/tWUVxOroLhs?feature=oembed\" frameborder=\"0\" allow=\"accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share\" referrerpolicy=\"strict-origin-when-cross-origin\" allowfullscreen><\/iframe><\/p>\n<p>Si miramos la web oficial de FUJIYAMA, indica una <b>ca\u00edda m\u00e1xima de 70 m y una velocidad m\u00e1xima de 130 km\/h<\/b>.<\/p>\n<p style=\"text-align: center;\"><a href=\"https:\/\/www.fujiq.jp\/attraction\/fujiyama.html\">Informaci\u00f3n del sitio web oficial de FUJIYAMA en Fuji-Q Highland<\/a><\/p>\n<p>\u00a1Apliquemos de nuevo la ley de conservaci\u00f3n de la energ\u00eda mec\u00e1nica! Sustituyendo la h por 70 metros:<\/p>\n<p style=\"text-align: center;\">v=\u221a(2\u00d79.8\u00d770)<\/p>\n<p>Obtenemos v = 37 m\/s, lo que equivale a 133.2 km\/h, \u00a1un valor tremendamente cercano al real! Es apasionante. Pero, \u00bfpor qu\u00e9 tanto en Splash Mountain como en FUJIYAMA la velocidad real resulta ser ligeramente menor que el valor te\u00f3rico?<\/p>\n<h3>\u00bfPor qu\u00e9 la teor\u00eda y la realidad difieren ligeramente?<\/h3>\n<p>En nuestros c\u00e1lculos anteriores, el valor te\u00f3rico result\u00f3 ser un poco superior a la velocidad m\u00e1xima real. La causa principal de esta diferencia es la <b>resistencia del aire<\/b> y la <b>fricci\u00f3n<\/b>. La fricci\u00f3n entre los rieles y las ruedas, o la resistencia al deslizarse sobre el agua, transforma una parte de la energ\u00eda mec\u00e1nica en energ\u00eda t\u00e9rmica (calor) y sonora (sonido). Es decir, la energ\u00eda no desapareci\u00f3, simplemente cambi\u00f3 de forma y se escap\u00f3. Esto nos brinda una oportunidad excelente para entender la ley de conservaci\u00f3n de la energ\u00eda a un nivel m\u00e1s profundo, distinguiendo entre la &#8220;conservaci\u00f3n perfecta&#8221; en condiciones ideales y la &#8220;transformaci\u00f3n de energ\u00eda&#8221; que ocurre en el mundo real.<\/p>\n<h3>Si act\u00faan fuerzas externas, \u00bfpor qu\u00e9 se conserva la energ\u00eda?<\/h3>\n<p>En las monta\u00f1as rusas o los p\u00e9ndulos, la energ\u00eda mec\u00e1nica (cin\u00e9tica + potencial + el\u00e1stica) se conserva casi en su totalidad. Pero pi\u00e9nsalo un momento: sobre una monta\u00f1a rusa act\u00faan &#8220;fuerzas externas&#8221;, como la fuerza normal del riel o la tensi\u00f3n de las cuerdas. Y en teor\u00eda, cuando act\u00faan fuerzas externas, la energ\u00eda mec\u00e1nica no deber\u00eda conservarse.<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-34250 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2020\/01\/4c6b0d20babac83068faf99d9515fce1.jpg\" alt=\"\" width=\"218\" height=\"201\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2020\/01\/4c6b0d20babac83068faf99d9515fce1.jpg 416w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2020\/01\/4c6b0d20babac83068faf99d9515fce1-300x277.jpg 300w\" sizes=\"auto, (max-width: 218px) 100vw, 218px\" \/><\/p>\n<p>\u00bfA qu\u00e9 se debe esto?<\/p>\n<p>El secreto reside en que la fuerza normal y la tensi\u00f3n act\u00faan siempre de forma <b>perpendicular<\/b> a la direcci\u00f3n del movimiento del objeto. Y dado que el trabajo realizado por una fuerza perpendicular al movimiento es 0, podemos centrarnos exclusivamente en la energ\u00eda mec\u00e1nica. Este mismo principio se utiliza para calcular las \u00f3rbitas de los sat\u00e9lites artificiales alrededor de la Tierra. En una \u00f3rbita circular, donde la gravedad de la Tierra act\u00faa siempre de forma perpendicular a la trayectoria, la velocidad del sat\u00e9lite se mantiene casi constante gracias al principio de &#8220;trabajo = 0&#8221;. \u00a1La f\u00edsica de una monta\u00f1a rusa se conecta directamente con la escala del universo!<\/p>\n<p style=\"text-align: center;\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-full wp-image-34251\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2020\/01\/c7b80d335aaa28806910324a263c17d9.jpg\" alt=\"\" width=\"288\" height=\"234\" \/><\/p>\n<p style=\"text-align: center;\">En el caso del p\u00e9ndulo<\/p>\n<p>Calcular la magnitud exacta de la fuerza normal o de la tensi\u00f3n es bastante complicado, pero como no realizan trabajo, la energ\u00eda mec\u00e1nica se conserva sin importar el camino recorrido (entonces, \u00bfqu\u00e9 efecto tienen realmente estas fuerzas sobre el movimiento? \u00a1Vale la pena pensarlo!).<\/p>\n<p>Con esta misma teor\u00eda, se puede calcular incluso la velocidad del famoso columpio de Heidi. S\u00ed, nos referimos al <a href=\"https:\/\/youtu.be\/h0MreS3bWak?si=L-yicYwgvqs0-CKn&amp;t=28\">enorme columpio<\/a> que aparece al principio de la cabecera de la serie.<\/p>\n<p><iframe loading=\"lazy\" title=\"HD \u30a2\u30eb\u30d7\u30b9\u306e\u5c11\u5973\u30cf\u30a4\u30b8 OP\" width=\"1140\" height=\"855\" src=\"https:\/\/www.youtube.com\/embed\/h0MreS3bWak?start=28&amp;feature=oembed\" frameborder=\"0\" allow=\"accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share\" referrerpolicy=\"strict-origin-when-cross-origin\" allowfullscreen><\/iframe><\/p>\n<p>Por ejemplo, si la cuerda mide unos 30 metros de largo (estimado por el periodo de oscilaci\u00f3n) y el \u00e1ngulo de balanceo alcanza los 60\u00b0, \u00bfcu\u00e1l ser\u00eda su velocidad en el punto m\u00e1s bajo? Aunque Heidi sonr\u00ede feliz, los c\u00e1lculos revelan que&#8230; \u00a1se trata de una atracci\u00f3n bastante extrema!<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-34252 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2020\/01\/b1b4c9061cb57c8695590dfa53e317ba.jpg\" alt=\"\" width=\"362\" height=\"286\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2020\/01\/b1b4c9061cb57c8695590dfa53e317ba.jpg 640w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2020\/01\/b1b4c9061cb57c8695590dfa53e317ba-300x237.jpg 300w\" sizes=\"auto, (max-width: 362px) 100vw, 362px\" \/><\/p>\n<p>\u00a1Te animo a hacer la prueba y calcularlo t\u00fa mismo! Si tienes curiosidad por saber la respuesta, puedes verlo aqu\u00ed: \u2192<a href=\"https:\/\/youtu.be\/ukB3hcZzS0E\">Conservaci\u00f3n de la energ\u00eda mec\u00e1nica (columpio)<\/a><\/p>\n<h3>Conclusi\u00f3n<\/h3>\n<p>Descifrar el funcionamiento de las atracciones de un parque tem\u00e1tico con los conocimientos del libro de texto: el verdadero valor de esta lecci\u00f3n es experimentar esa &#8220;conexi\u00f3n entre la vida cotidiana y la ciencia&#8221;. El aprendizaje no ocurre solo dentro del aula. \u00a1Un parque de atracciones tambi\u00e9n puede ser el mejor material did\u00e1ctico!<\/p>\n<h3>Contacto y solicitudes<\/h3>\n<p>\u00a1Acerquemos la magia y la diversi\u00f3n de la ciencia a todos! He recopilado experimentos cient\u00edficos divertidos para hacer en casa y sus trucos explicados de forma sencilla. \u00a1Explora los contenidos del sitio web!<br \/>\n\u2022 \u00a1El contenido de las notas de ciencia ya est\u00e1 disponible en formato libro! M\u00e1s informaci\u00f3n <a href=\"https:\/\/amzn.to\/42PMCEL\">aqu\u00ed<\/a>.<br \/>\n\u2022 M\u00e1s detalles sobre el autor Ken Kuwako <a href=\"https:\/\/phys-edu.net\/wp\/?page_id=37\">aqu\u00ed<\/a>.<br \/>\n\u2022 Para consultas profesionales (redacci\u00f3n, conferencias, talleres de ciencia, supervisi\u00f3n\/aparici\u00f3n en TV, etc.), entra <a href=\"https:\/\/phys-edu.net\/wp\/?page_id=188\">aqu\u00ed<\/a>.<br \/>\n<span class=\"s2\">\u2022 \u00a1Sigue todas nuestras novedades en <a href=\"https:\/\/x.com\/kuwako\">X (Twitter)<\/a>!<\/span><\/p>\n<p style=\"text-align: center;\"><a href=\"https:\/\/www.youtube.com\/user\/kkuwako\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-35048\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2020\/03\/3d9640dad7bc5538e76f92da1966ee19.jpg\" alt=\"\" width=\"30\" height=\"21\" \/><\/a>\u00a1Mira nuestros v\u00eddeos de experimentos en el <a href=\"https:\/\/www.youtube.com\/user\/kkuwako?sub_confirmation=1\">Canal de Ciencia de YouTube<\/a>!<\/p>\n<h3><span style=\"color: #ff0000;\">NEW\u3000\u5206\u89e3\u554f\u984c\u96c6\u3000\u7406\u79d1<\/span><\/h3>\r\n<ul>\r\n \t<li>\uff17\u6708\uff12\uff11\u65e5\u767a\u58f2\uff01\u300e<a href=\"https:\/\/phys-edu.net\/wp\/?p=64462\">\u9ad8\u6821\u5165\u8a66 \u5206\u89e3\u554f\u984c\u96c6 \u7406\u79d1<\/a>\u300f\uff08\u5b66\u7814\uff09\u2026\u96e3\u3057\u3044\u554f\u984c\u3082\u5c0f\u3055\u306a\u554f\u984c\u306b\u5206\u89e3\u3059\u308b\u3053\u3068\u3067\u3001\u554f\u984c\u3092\u89e3\u304f\u3053\u3068\u304c\u3067\u304d\u307e\u3059\u3002\u305d\u3093\u306a\u5206\u89e3\u306e\u6280\u8853\u304c\u8eab\u306b\u3064\u304f\u3088\u3046\u306b\u6df1\u304f\u95a2\u308f\u308a\u3092\u6301\u3063\u3066\u4f5c\u308a\u307e\u3057\u305f\u3002\r\n<a href=\"https:\/\/phys-edu.net\/wp\/?p=64462\"><img class=\"alignnone  wp-image-65097 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-04-8.40.17.jpeg\" alt=\"\" width=\"172\" height=\"244\" \/><\/a><\/li>\r\n<\/ul>\r\n<h3>\uff17\u6708\u306e\u30a4\u30c1\u30aa\u30b7\u5b9f\u9a13\uff01<\/h3>\r\n<p style=\"text-align: center;\">\u590f\u3067\u30d7\u30b7\u30e5\u30c3\u3068\u723d\u3084\u304b\u5b9f\u9a13\uff01<\/p>\r\n<img class=\"alignnone  wp-image-64964 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/06\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-06-30-4.31.58.jpeg\" alt=\"\" width=\"250\" height=\"310\" \/>\r\n<p style=\"text-align: center;\"><a href=\"https:\/\/phys-edu.net\/wp\/?p=206\">\u5c0f\u578b\u3067\u6301\u3061\u5e30\u308c\u308b\u3088\uff01\u30da\u30c3\u30c8\u30dc\u30c8\u30eb\u30ed\u30b1\u30c3\u30c8\u3092\u4f5c\u308d\u3046\uff01<\/a><\/p>\r\n\r\n<h3 style=\"text-align: left;\"><span style=\"font-size: medium;\"><b><strong>\u30c6\u30ec\u30d3\u756a\u7d44\u76e3\u4fee\u30fb\u30a4\u30d9\u30f3\u30c8\u7b49\u306e\u304a\u77e5\u3089\u305b<\/strong><\/b><\/span><\/h3>\r\n<ul>\r\n \t<li>\uff17\u6708\uff11\uff18\u65e5\uff08\u571f\uff09\u300c<a href=\"https:\/\/official.idolfes.com\/s\/tif2026\/page\/broadcast\">TIF\u3000presents\u3000ONE\u3000SONG\u3000FES. <\/a>\u300d\uff08\u30d5\u30b8\u30c6\u30ec\u30d3\uff09<\/li>\r\n \t<li>7\u670818\u65e5\uff08\u571f\uff09\u3000<a href=\"https:\/\/phys-edu.net\/wp\/?p=60018\">\u6559\u54e1\u5411\u3051\u5b9f\u9a13\u8b1b\u7fd2\u4f1a\u300c\u30ca\u30ea\u30ab\u30ab\u30b5\u30a4\u30a8\u30f3\u30b9\u30a2\u30ab\u30c7\u30df\u30fc\u300d<\/a><\/li>\r\n \t<li>7\u670823\u65e5\uff08\u6728\uff09\u79d1\u5b66\u76e3\u4fee\u300019:00\u301c\u3000<a href=\"https:\/\/www.ntv.co.jp\/toppa\/\">THE\u7a81\u7834\u30d5\u30a1\u30a4\u30eb<\/a>\uff08\u65e5\u672c\u30c6\u30ec\u30d3\uff09<\/li>\r\n \t<li>\uff17\u6708\uff13\uff10\u65e5\uff08\u6c34\uff09\u3000\u76e3\u4fee\u3057\u305f\u30c6\u30ec\u30d3\u756a\u7d44\u653e\u9001\u4e88\u5b9a<\/li>\r\n \t<li>12\u670826\u65e5\uff08\u571f\uff09\u3000<a href=\"https:\/\/phys-edu.net\/wp\/?p=64825\">\u30ca\u30ea\u30ab\u30b5\u30a4\u30a8\u30f3\u30b9\u30a2\u30ab\u30c7\u30df\u30fc\uff08\u6559\u54e1\u5411\u3051\u5b9f\u9a13\u8b1b\u7fd2\u4f1a\uff09\u958b\u50ac<\/a><\/li>\r\n<\/ul>\r\n<h3><b>\u66f8\u7c4d<strong>\u306e\u304a\u77e5\u3089\u305b<\/strong><\/b><\/h3>\r\n<ul>\r\n \t<li>\u300e\u5927\u4eba\u306e\u305f\u3081\u306e\u9ad8\u6821\u7269\u7406\u5fa9\u7fd2\u5e33\u300f\uff08\u8b1b\u8ac7\u793e\uff09\u2026\u4e00\u822c\u5411\u3051\u306b\u65e5\u5e38\u306e\u7269\u7406\u306b\u3064\u3044\u3066\u516c\u5f0f\u3092\u5143\u306b\u7d10\u89e3\u304d\u307e\u3057\u305f\u3002<a href=\"https:\/\/phys-edu.net\/wp\/?p=1827\">\u7279\u8a2d\u30b5\u30a4\u30c8<\/a>\u3067\u306f\u5b9f\u9a13\u3092\u591a\u6570\u7d39\u4ecb\u3057\u3066\u3044\u307e\u3059\u3002<strong>\u203b\u5897\u5237\u304c\u304b\u304b\u308a\uff16\u5237\u3068\u306a\u308a\u307e\u3057\u305f\uff082026\/02\/01\uff09\r\n<img class=\"alignnone wp-image-10940 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2013\/12\/0811159a99f69eeff1a357e3daed84e0-300x262.jpg\" sizes=\"(max-width: 220px) 100vw, 220px\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2013\/12\/0811159a99f69eeff1a357e3daed84e0-300x262.jpg 300w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2013\/12\/0811159a99f69eeff1a357e3daed84e0.jpg 311w\" alt=\"\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8 2014-07-05 0.43.51\" width=\"220\" height=\"192\" \/><\/strong><\/li>\r\n \t<li>\u300e\u304d\u3081\u308b!\u5171\u901a\u30c6\u30b9\u30c8 \u7269\u7406\u57fa\u790e \u6539\u8a02\u7248\u300f\uff08\u5b66\u7814\uff09\u2026\u3000\u9ad8\u6821\u7269\u7406\u306e\u53c2\u8003\u66f8\u3067\u3059\u3002\u30a4\u30e9\u30b9\u30c8\u3092\u591a\u304f\u3057\u3066\u30a4\u30e1\u30fc\u30b8\u304c\u6301\u3066\u308b\u3088\u3046\u306b\u63cf\u304d\u307e\u3057\u305f\u3002\u6388\u696d\u306b\u3064\u3044\u3066\u3044\u3051\u306a\u3044\u3001\u7269\u7406\u304c\u82e6\u624b\u3001\u305d\u3093\u306a\u751f\u5f92\u306b\u304a\u3059\u3059\u3081\u3067\u3059\u3002<a href=\"https:\/\/phys-edu.net\/wp\/?p=45322\">\u7279\u8a2d\u30b5\u30a4\u30c8<\/a>\u306f\u3053\u3061\u3089\u3002\r\n<img class=\"alignnone wp-image-45718 aligncenter\" src=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2024\/04\/dc1da64a8c8d1422062b4867c0607a1c.jpg\" sizes=\"(max-width: 184px) 100vw, 184px\" srcset=\"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2024\/04\/dc1da64a8c8d1422062b4867c0607a1c.jpg 756w, https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2024\/04\/dc1da64a8c8d1422062b4867c0607a1c-300x269.jpg 300w\" alt=\"\" width=\"184\" height=\"165\" \/><\/li>\r\n<\/ul>\r\n<h3><span style=\"text-align: center;\">\u5404\u7a2eSNS\uff08\u66f4\u65b0\u60c5\u5831\u3092\u304a\u5c4a\u3051\uff01\uff09<\/span><\/h3>\r\n<p style=\"text-align: center;\">\u3010\u65e5\u672c\u8a9e\u3011<a style=\"text-align: center;\" href=\"https:\/\/twitter.com\/kuwako\">X(Twitter)<\/a><span style=\"text-align: center;\">\uff0f<\/span><a style=\"text-align: center;\" href=\"https:\/\/www.instagram.com\/science_seeds\/\">instagram<\/a><span style=\"text-align: center;\">\uff0f<\/span><a style=\"text-align: center;\" href=\"https:\/\/www.facebook.com\/kuwakolab\/\">Facebook<\/a>\u3000\u3010\u82f1\u8a9e\u3011<a style=\"text-align: center;\" href=\"https:\/\/bsky.app\/profile\/kagakunoneta.bsky.social\">BlueSky<\/a><span style=\"text-align: center;\">\uff0f<\/span><a style=\"text-align: center;\" href=\"https:\/\/www.threads.net\/@science_seeds?hl=ja\">Threads<\/a><\/p>\r\n\r\n<h3 style=\"text-align: center;\"><strong>Explore<\/strong><\/h3>\r\n<ul>\r\n \t<li><a href=\"https:\/\/phys-edu.net\/wp\/?page_id=30764\">\u697d\u3057\u3044\u5b9f\u9a13<\/a>\u2026\u304a\u5b50\u3055\u3093\u3068\u4e00\u7dd2\u306b\u5922\u4e2d\u306b\u306a\u308c\u308b\u30a4\u30c1\u30aa\u30b7\u306e\u79d1\u5b66\u5b9f\u9a13\u3092\u591a\u6570\u7d39\u4ecb\u3057\u3066\u3044\u307e\u3059\u3002\u307e\u305f\u3001\u9ad8\u6821\u7269\u7406\u306e\u7406\u89e3\u3092\u6df1\u3081\u308b\u305f\u3081\u306e\u52d5\u753b\u6559\u6750\u3082\u7528\u610f\u3057\u307e\u3057\u305f\u3002<\/li>\r\n \t<li><a href=\"https:\/\/phys-edu.net\/wp\/?page_id=798\">\u7406\u79d1\u306e\u6559\u6750<\/a>\u2026 \u7406\u79d1\u6559\u5e2b\u3092\u30d0\u30c3\u30af\u30a2\u30c3\u30d7\uff01\u6388\u696d\u306e\u8cea\u3092\u9ad8\u3081\u3001\u6e96\u5099\u3092\u52b9\u7387\u5316\u3059\u308b\u305f\u3081\u306e\u9078\u308a\u3059\u3050\u308a\u306e\u6559\u6750\u3092\u7d39\u4ecb\u3057\u3066\u3044\u307e\u3059\u3002<\/li>\r\n \t<li><a href=\"https:\/\/www.youtube.com\/c\/kkuwako\">Youtube<\/a>\u2026\u79d1\u5b66\u5b9f\u9a13\u7b49\u306e\u52d5\u753b\u3092\u914d\u4fe1\u3057\u3066\u3044\u307e\u3059\u3002<\/li>\r\n \t<li><a href=\"https:\/\/music.youtube.com\/playlist?list=PLoK4ZvKN9S2NgpYIochcQs0aL-vrRB_Qw\">\u79d1\u5b66\u30e9\u30b8\u30aa<\/a>\u00a0\u2026\u79d1\u5b66\u30c8\u30d4\u30c3\u30af\u3092\u307b\u307c\u6bce\u65e5\u914d\u4fe1\u4e2d\uff01AI\u6280\u8853\u3092\u99c6\u4f7f\u3057\u3066\u4f5c\u6210\u3057\u305f\u300c\u8033\u3067\u697d\u3057\u3080\u79d1\u5b66\u300d\u3092\u304a\u5c4a\u3051\u3057\u307e\u3059\u3002<\/li>\r\n \t<li><a href=\"http:\/\/phys-edu.net\/wp\/?page_id=20940\">\u8b1b\u6f14<\/a>\u00a0\u2026\u5168\u56fd\u5404\u5730\u3067\u5b9f\u9a13\u8b1b\u7fd2\u4f1a\u30fb\u30b5\u30a4\u30a8\u30f3\u30b9\u30b7\u30e7\u30fc\u7b49\u3092\u884c\u3063\u3066\u3044\u307e\u3059\u3002<\/li>\r\n \t<li><a href=\"http:\/\/phys-edu.net\/wp\/?page_id=37\">About<\/a>\u00a0\u2026\u300c\u79d1\u5b66\u306e\u30cd\u30bf\u5e33\u300d\u306e\u30b3\u30f3\u30bb\u30d7\u30c8\u3084\u3001\u904b\u55b6\u8005\u3067\u3042\u308b\u6851\u5b50\u7814\u306e\u30d7\u30ed\u30d5\u30a3\u30fc\u30eb\u30fb\u60f3\u3044\u3092\u307e\u3068\u3081\u3066\u3044\u307e\u3059\u3002<\/li>\r\n \t<li><a href=\"https:\/\/phys-edu.net\/wp\/?page_id=188\">\u304a\u554f\u3044\u5408\u308f\u305b<\/a>\u00a0\u2026\u5b9f\u9a13\u6559\u5ba4\u306e\u3054\u4f9d\u983c\u3001\u57f7\u7b46\u30fb\u8b1b\u6f14\u306e\u76f8\u8ac7\u3001\u79d1\u5b66\u76e3\u4fee\u7b49\u306f\u3053\u3061\u3089\u306e\u30d5\u30a9\u30fc\u30e0\u304b\u3089\u304a\u5bc4\u305b\u304f\u3060\u3055\u3044\u3002<\/li>\r\n<\/ul>","protected":false},"excerpt":{"rendered":"<p>\u00a1Hola! Soy Ken Kuwako, preparador de ciencias. Para m\u00ed, \u00a1cada d\u00eda es un experimento! \u00bfSab\u00edas que puedes calcul [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":65724,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_sitemap_exclude":false,"_sitemap_priority":"","_sitemap_frequency":"","sns_share_botton_hide":"","vkExUnit_sns_title":"","vkexunit_cta_each_option":"","_lightning_design_setting":{"layout":"default"},"footnotes":"","jetpack_post_was_ever_published":false},"categories":[1492],"tags":[],"class_list":["post-65749","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-science-es"],"jetpack_featured_media_url":"https:\/\/phys-edu.net\/wp\/wp-content\/uploads\/2026\/07\/\u30b9\u30af\u30ea\u30fc\u30f3\u30b7\u30e7\u30c3\u30c8-2026-07-24-16.47.08.jpeg","jetpack-related-posts":[{"id":60978,"url":"https:\/\/phys-edu.net\/wp\/?p=60978&lang=es","url_meta":{"origin":65749,"position":0},"title":"\u00bfQu\u00e9 es esa fuerza que sientes en tu taza de caf\u00e9? \u00a1La ciencia revela el fascinante mundo de la \u201cfuerza centr\u00edfuga\u201d! (Atracciones giratorias)","author":"\u6851\u5b50 \u7814","date":"2026\u5e743\u67081\u65e5","format":false,"excerpt":"\u00a1Hola! 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