![]() Tim has added a new log for Empower speech with AssistiveTech.Bindhammer has updated the log for Pill dispenser robot. Fiberpunk has updated details to Open source ESP32-Camera for Yolov4/5/6. ![]() chris watts on Barcodes Enter The Matrix In 2027.Truth on Barcodes Enter The Matrix In 2027.Jan on Thermal Camera Plus Machine Learning Reads Passwords Off Keyboard Keys.Gregg Eshelman on New Drivers For Ancient Webcam.PreferLinux on Thermal Camera Plus Machine Learning Reads Passwords Off Keyboard Keys.dan on FET: The Friendly Efficient Transistor.Martin on Thermal Camera Plus Machine Learning Reads Passwords Off Keyboard Keys.v1nce on Thermal Camera Plus Machine Learning Reads Passwords Off Keyboard Keys.Hackaday Podcast 216: FETs, Fax, And Electrochemical Fab 3 Comments Posted in Science Tagged fluidics, maze Post navigation is no stranger to making water work out algorithms, something called fluidic logic. But it is a great think piece on how water flows and what sort of forces can affect it. Even more interesting is that once the water has found the bottom, changing the water color will clearly show the path through the maze since nearly all of the new colored water will follow the flow path. Not that it perfectly solves it, but it doesn’t just fill up the entire maze, either. Eventually, the part that is open at the bottom will have water coming out, right? Turns out it isn’t that simple.Ī combination of air pressure and surface tension conspire to make the water do better than expected. Without much thought, you’d think that the water just goes to the bottom and then fills up. The maze, of course, has to be oriented so that water flows into the top and flows out of the bottom. It turns out there are several physical effects in play, and you can see discuss them in the video below. We aren’t sure if it qualifies as fluidic logic, but was inspired by a simulation of water flowing through a maze and decided to build some actual mazes and watch water flowing through them.
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