{"href":"https://api.simplecast.com/oembed?url=https%3A%2F%2Fbiogad.simplecast.com%2Fepisodes%2F001-i-cytologie-grundlagen-groeszen-formen-NdOguHcH","width":444,"version":"1.0","type":"rich","title":"#001 I Cytologie 01. Grundlagen, Groeszen, Formen","thumbnail_width":300,"thumbnail_url":"https://image.simplecastcdn.com/images/e378b984-577c-4cb1-9f91-a638c8471cda/ac32f70f-01d3-48c5-9f6f-3531eab5aeaf/bio-20gad-20braun-20gruen.jpg","thumbnail_height":300,"provider_url":"https://simplecast.com","provider_name":"Simplecast","html":"<iframe src=\"https://player.simplecast.com/2ee83839-a333-4220-9f4d-c5189d974278\" height=\"200\" width=\"100%\" title=\"#001 I Cytologie 01. Grundlagen, Groeszen, Formen\" frameborder=\"0\" scrolling=\"no\"></iframe>","height":200,"description":"Multicellular organisms can function more efficiently than unicellular ones. The spatial resolution limits the visibility of cells. The surface-to-volume ratio influences the size of cells. The smallest cells are archaea, while the largest are ostrich eggs.\nVielzeller können effizienter arbeiten als Einzeller. Das räumliche Auflösungsvermögen begrenzt die Sichtbarkeit von Zellen. Das Oberflächen-Volumen-Verhältnis beeinflusst die Größe von Zellen. Die kleinsten Zellen sind Archaeen, die größten sind Straußeneier. "}