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This is NASA's press kit for Space Shuttle mission STS-75, dated February 1996 and later edited by Richard W. Orloff. It covers Columbia's planned 13-day flight carrying the Italian Tethered Satellite System reflight (TSS-1R) and the third United States Microgravity Payload. The kit sets out launch and landing plans, abort modes, the timeline, payload weights, crew duties, the tether's science objectives and investigators, and crew biographies. It does not mention any unidentified objects.
Edited by Richard W. Orloff, 01/2001/Page 17 - while some instruments will measure magnetic fields, others will record particle energies and densities, and still others will map electric fields. The Tethered Satellite System Deployer Core Equipment and Satellite Core Equipment, by Dr. Carlo Bonifazi of the ASI, Rome, will control the electrical current flowing through the tether between the satellite and the Shuttle, as well as make a number of basic electrical and physical measurements of the system. The Research on Orbital Plasma Electrodynamics experiment, by Dr. Nobie Stone of Marshall, will study the behavior of charged particles in the ionosphere and ionized particles around the satellite under a variety of conditions. The Research on Electrodynamic Tether Effects experiment, by Dr. Marino Dobrowolny of the Italian National Research Council, Rome, will measure the electrical potential in the plasma sheath around the satellite and identify waves excited by the satellite and tether system. The goal of the Magnetic Field Experiment for TSS Missions investigation, by Prof. Franco Mariani of the Second University of Rome, will be to map the levels and fluctuations in magnetic fields around the satellite. The Shuttle Electrodynamic Tether System investigation, by Dr. Brian Gilchrist of the University of Michigan, Ann Arbor, will study the ability of the Tethered Satellite to collect electrons by determining the current and voltage of the tethered system and measuring the resistance to current flow in the tether itself. The Shuttle Potential and Return Electron Experiment, by Dr. David Hardy of the U.S. Air Force Phillips Laboratory, Bedford, MA, will measure the charged particles around the Shuttle. How well the Tethered Satellite -- the longest antenna ever placed in orbit -- broadcasts radio signals from space is the main goal of the Investigation of Electromagnetic Emissions for Electrodynamic Tether, by Dr. Robert Estes of the Smithsonian Astrophysical Observatory, Cambridge, MA, and the Observations at the Earth's Surface of Electromagnetic Emissions, by Dr. Giorgio Tacconi of the University of Genoa. The Tether Optical Phenomena experiment, by Dr. Stephen Mende of Lockheed Martin's Palo Alto Research Laboratory, CA, will use a hand-held low-light- level television camera operated by the crew, to provide visual data to help scientists answer questions about tether dynamics and optical effects generated by the Tethered Satellite. The Investigation and Measurement of Dynamic Noise in the TSS, by Dr. Gordon Gullahorn of the Smithsonian Astrophysical Observatory, Cambridge, MA, and the Theoretical and Experimental Investigation of TSS Dynamics, by Prof. Silvio Bergamaschi of the Institute of Applied Mechanics, Padua University, Italy, will analyze data from a variety of instruments to examine TSS oscillations over a wide range of frequencies. The Theory and Modeling in Support of Tethered Satellite Applications, by Dr. Adam Drobot of the Science Applications International Corp., McLean, VA, will provide theoretical electrodynamic support for the mission. TSS-1R Responsibilities TSS-1R mission responsibilities are shared between the Marshall and Johnson Centers, with ASI support at each location. Marshall provides project management, as well as system development, testing and integration. Science teams work under Marshall direction. Marshall will furnish real- time engineering support for the TSS-1R system components and tether dynamics. All remote commanding of science instruments aboard the satellite deployer and the Tethered Satellite will be executed by the Marshall Payload Operations Control team. Because of the unique interaction between the payload and the Shuttle, Mission Control in Houston is responsible for the crew's deployment and retrieval of the satellite. Mission Control also will manage the satellite in orbit and monitor the state of the instrument pallet, the deployer and the satellite. ASI will provide equipment engineering support during the mission.
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