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In this condensed ~180 second video a banana is shown while it's centrifuged for a total of 45 minutes. By speeding up the process we can a quick grasp on how the banana reacts when under hypergravity (2500 g / RCF). What hypergravity experiment or separation would you like to see happening inside a centrifuge. -------- Work in progress -------- These video's and project are a work in progress, there are still many adjustments that need to be made to the centrifuge to create an even more optimised recording environment. In regards to the channel format I'm looking into what would be the best way to present these videos, talking and informing about what is happening to the sample from all different (science) perspectives to be able to give the audience a better understanding. Next to that I'm also looking for help from the (science) community for the following: Supporting the project with test samples and / or suggestions on what to centrifuge and/or ways to do this accordingly to simulate existing lab experiments. Recommendations, tips and or tricks on how to get better visual results. Recommendations, tips and or tricks on how to analyse the samples. Leads on a larger and higher RCF centrifuge to expand the capabilities of the project. If you like to help this project out? I would be more than pleased to hear from you. 00:00 Intro 00:03 Centrifuge ramping up towards 2500g / RCF @4000RPM. 00:10 Air gets pushed out, foam starts to disappear. 00:15 Centrifuge reaches its top speed. 00:20 Heavier particles start to sediment. 00:30 A top layer of fibers? starts to become visible. 01:00 Separation starts to occur between the top layer and the higher sediment fraction. 01:30 The super natant layer becomes larger. 02:00 The cloudy supernatant starts to clear up. 0:300 Four different layers, fibers, supernatant, top sedimentation and bottom sedimentation are visible. 02:45 Centrifuge starts to spin down. 02:55 Centrifuge comes to a full stop