Cedar Park Rocket Team: Innovative G-Force Remediation for NASA Project

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Explore how the Cedar Park Rocket Team aims to tackle G-Force effects by using magnetic fields in their NASA project. From rocket requirements to final payload choices, follow their journey towards reaching new heights in rocket technology.

  • Cedar Park Rocket
  • G-Force Remediation
  • NASA Project
  • Magnetic Dampening
  • Rocket Technology

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  1. NASA SLI Cedar Park Rocket Team MAGNETIC G-FORCE REMEDIATION

  2. Our Rocket Requirements The rocket must reach 5,280 feet above ground level The Rocket payload should delay or equalize the effects of G-Forces on the inside container by using magnetic fields

  3. Our preliminary Rocket design and Goals Rocket stability margin: 1.55 Center of gravity: 35.99 in Center of diametric pressure: 45.68 in

  4. Rocket Launch Thrust/Acceleration/Altitude 7000 6000 5000 4000 3000 2000 1000 0 0.61 1.22 1.83 2.44 3.05 3.66 4.27 4.88 5.49 6.71 7.32 7.93 8.54 9.15 9.76 10.37 10.98 11.59 12.2 12.81 13.42 14.03 14.64 15.25 15.86 16.47 17.08 17.69 18.3 18.91 6.1 0 -1000 Altitude Feet Thrust N y-Acceleration Feet/sec/sec

  5. Parts and Materials Motor: Aerotech K560W Carbon Fiber fins Fiberglass body with epoxy bonds Plastic nosecone

  6. Recovery System Redundant black powder charges, circuit systems, and batteries for both the drogue and main parachutes.

  7. Initial Payload Ideas Carbon Nano wire test electrical current while experiencing G-forces Carbon Nano wire stress test under G-forces Slime mold growth rate after experiencing G- forces

  8. Final Payload choice Magnetic Dampening Using magnetic levitation to diminish G-forces experienced by the payload

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