![]() Brown undergraduates will develop K-12 curricula around the satellite, arrange watch parties and other events during the satellite’s mission. The satellite will broadcast a signal over amateur radio with its position in orbit and data from its sensors. Four high-powered LEDs will flash brightly enough to be seen from Earth as the EQUiSat passes across the night sky. The aim is for the satellite to be an orbiting ambassador to space, showing people that the final frontier is within their grasp. The satellite’s mission is an educational one. Sometime in late May or early June, ISS astronauts will deploy EQUiSat, along with several other CubeSats, into orbit some 250 miles above the Earth. “Sure we dreamt about the mythical time of ‘launch,’ but it was miles from reality when we wrote the application to NASA in 2014. it’s finally real.”ĮQUiSat is now cleared to be included on a NASA resupply mission to the International Space Station (ISS), scheduled to launch aboard an Antares rocket on May 1 from Wallops Island, Virginia. “The shortest version of how I feel is: AHHHHHHHH!!!!!!!!!!!!!!!!,” she wrote in an email. It’s a relief for it to have all gone well.”įor Hannah Varner, who graduated in 2014 as a team leader when the group first applied for a launch under NASA’s CubeSat Launch Initiative, the feeling was something more like elation. “Despite having gained significantly more confidence in the satellite over the past few months, so much has gone wrong during the course of the program. Ray, a senior engineering concentrator and the team’s project manager. “When we completed all the systems checks and everything worked perfectly, I think we were honestly in disbelief,” said Hunter M. Last week that satellite, a 4-inch cube dubbed EQUiSat, passed its final preflight checks and is “go” for a scheduled May 20 launch. For the past seven years, a rotating group of Brown University undergraduates has been toiling away quietly in the Barus and Holley building - designing, building and testing a small satellite with the hope of ultimately sending into orbit. Synthesis of Graphene Oxide and Silk Fibroin Composite Aerogels with Programmable Oil/Water AdsorptionĬhampagne Problems: Investing Bubble Growth in Carbonated Fluids.PROVIDENCE, R.I. Infared Laser Pointer and Applications for a True 3D DisplayĮnrichment of JEG-3 Cells by Intrinsic Surface Adhesion PropertiesĬollective and Individual Invasion from Multicellular Spheroids in 3D Collagen Matrix The Impact of Oxide Content on Cycle Life and Stress Evolution in Silicon-based Composite ElectrodesĪssembly of Polyelectrolyte Multilayer Films for Controlled Delivery of SHP099Ĭharacterizing Chromogenic Beta-Lactamase Substrates for Diagnostic Hydrogels Innovations Based on Conductive Polymers: Design, Synthesis, Characterization, and Testing of a Semi-Interpenetrating Polymer Network Based Actuatorįinding a Bound on the Information Transmitted through Newtonian Gravity ![]() Test and Optimization of High-Throughput OCT Assessment of Cellular Viability Using Liver Tumor Spheroids Gold Nanorod-Enhanced Near-Infrared Neural Stiumulation for Photonic Retinal Prosthesis Optical Engineering and Characterization of Novel Scintillating Deterctors for X-Ray Medical Imaging Inter-layer Adhesion Energies of 2D Nanomaterials Rapid-Prototyping of Microfluidic Channels with Application to Taylor Dispersion Implementation and Evaluation of in vitro Prevascularization on Engineered Cardiac Tissueĭevelopment of a Robotic Arm for Nano-Spacecraft Optimizing PAMPS-LA Polymer Chain Size for Gadolinium-Oxide Nanoparticle MRI Contrast Agents for Detecting GliomaĮngineering Bioelectric Sutures for Heart Repair Implementation of Radio-Based Positioning System for Quadcopter Drones Project TitleĪrtifact Removal from Local Field Potential Recordings during Deep Brain Stimulation Students interested in the UTRA program are encouraged to reach out to faculty members to discuss potential projects and the applications process.
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