Grade 3 Informational Performance Task: Astronauts 1
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The Space Race
The Space Race Aims: To arrange the key events of the “Space Race” in chronological order. To decide which country won the Space Race. Space – the Final Frontier “Space” is everything Atmosphere that exists outside of our planet’s atmosphere. The atmosphere is the layer of Earth gas which surrounds our planet. Without it, none of us would be able to breathe! Space The sun is a star which is orbited (circled) by a system of planets. Earth is the third planet from the sun. There are nine planets in our solar system. How many of the other eight can you name? Neptune Saturn Mars Venus SUN Pluto Uranus Jupiter EARTH Mercury What has this got to do with the COLD WAR? Another element of the Cold War was the race to control the final frontier – outer space! Why do you think this would be so important? The Space Race was considered important because it showed the world which country had the best science, technology, and economic system. It would prove which country was the greatest of the superpowers, the USSR or the USA, and which political system was the best – communism or capitalism. https://www.youtube.com/watch?v=xvaEvCNZymo The Space Race – key events Discuss the following slides in your groups. For each slide, try to agree on: • which of the three options is correct • whether this was an achievement of the Soviet Union (USSR) or the Americans (USA). When did humans first send a satellite into orbit around the Earth? 1940s, 1950s or 1960s? Sputnik 1 was launched in October 1957. -
The Role and Training of NASA Astronauts in the Post-Shuttle Era
The Role and Training of NASA Astronauts in the Post-Shuttle Era Aeronautics and Space Engineering Board ∙ Air Force Studies Board ∙ Division on Engineering & Physical Sciences ∙ September 2011 As the National Aeronautics and Space Administration (NASA) retires the Space Shuttle and shifts involvement in International Space Station (ISS) operations, changes in the role and requirements of NASA’s Astronaut Corps will take place. At the request of NASA, the National Research Council (NRC) addressed three main questions about these changes: What should be the role and size of Johnson Space Center’s (JSC) Flight Crew Operations Directorate (FCOD); what will be the requirements of astronaut training facilities; and is the Astronaut Corps’ fleet of training aircraft a cost-effective means of preparing astronauts for NASA’s spaceflight program? This report presents an assessment of several issues driven by these questions. This report does not address explicitly the future of human spaceflight. Background Corps—defined in this report as the number he United States has been launching as- of astronauts qualified to fly into space. As Ttronauts into space for more than five of May 2011, the Astronaut Corps consist- decades and, for a majority of those years, ed of 61 people, compared with a peak size astronauts have been selected and trained of nearly 150 people in 2000. NASA uses a through NASA’s Astronaut Corps. Since its model for projecting minimum ISS manifest inception in 1959, the Astronaut Corps— requirements. Using the model on the next which is based at the Lyndon B. Johnson page, NASA has projected that the Astronaut Space Center (JSC) in Houston, Texas—has Corps will need a minimum of 55-60 astro- experienced periodic fluctuations in size and nauts to meet ISS crew requirements through training emphasis based on various program 2016. -
The Role and Training of NASA Astronauts In
Co-chairs: Joe Rothenberg, Fred Gregory Briefing: October 18-19, 2011 Statement of Task An ad hoc committee will conduct a study and prepare a report on the activities of NASA’s human spaceflight crew office. In writing its report the committee will address the following questions: • How should the role and size of the activities managed by the Johnson Space Center Flight Crew Operations Directorate change after space shuttle retirement and completion of the assembly of the International Space Station (ISS)? • What are the requirements of crew-related ground-based facilities after the space shuttle program ends? • Is the fleet of aircraft used for the training the Astronaut Corps a cost-effective means of preparing astronauts to meet the requirements of NASA’s human spaceflight program? Are there more cost-effective means of meeting these training requirements? The NRC was not asked to consider whether or not the United States should continue human spaceflight, or whether there were better alternatives to achieving the nation’s goals without launching humans into space. Rather, the NRC’s charge was to assume that U.S. human spaceflight would continue. 2 Committee on Human Spaceflight Crew Operations • FREDERICK GREGORY, Lohfeld Consulting Group, Inc., Co-Chair • JOSEPH H. ROTHENBERG, Swedish Space Corporation, Co-Chair • MICHAEL J. CASSUTT, University of Southern California • RICHARD O. COVEY, United Space Alliance, LLC (retired) • DUANE DEAL, Stinger Ghaffarian Technologies, Inc. • BONNIE J. DUNBAR, President and CEO, Dunbar International, LLC • WILLIAM W. HOOVER, Independent Consultant • THOMAS D. JONES, Florida Institute of Human and Machine Cognition • FRANKLIN D. MARTIN, Martin Consulting, Inc. -
India and China Space Programs: from Genesis of Space Technologies to Major Space Programs and What That Means for the Internati
University of Central Florida STARS Electronic Theses and Dissertations, 2004-2019 2009 India And China Space Programs: From Genesis Of Space Technologies To Major Space Programs And What That Means For The Internati Gaurav Bhola University of Central Florida Part of the Political Science Commons Find similar works at: https://stars.library.ucf.edu/etd University of Central Florida Libraries http://library.ucf.edu This Masters Thesis (Open Access) is brought to you for free and open access by STARS. It has been accepted for inclusion in Electronic Theses and Dissertations, 2004-2019 by an authorized administrator of STARS. For more information, please contact [email protected]. STARS Citation Bhola, Gaurav, "India And China Space Programs: From Genesis Of Space Technologies To Major Space Programs And What That Means For The Internati" (2009). Electronic Theses and Dissertations, 2004-2019. 4109. https://stars.library.ucf.edu/etd/4109 INDIA AND CHINA SPACE PROGRAMS: FROM GENESIS OF SPACE TECHNOLOGIES TO MAJOR SPACE PROGRAMS AND WHAT THAT MEANS FOR THE INTERNATIONAL COMMUNITY by GAURAV BHOLA B.S. University of Central Florida, 1998 A dissertation submitted in partial fulfillment of the requirements for the degree of Master of Arts in the Department of Political Science in the College of Arts and Humanities at the University of Central Florida Orlando, Florida Summer Term 2009 Major Professor: Roger Handberg © 2009 Gaurav Bhola ii ABSTRACT The Indian and Chinese space programs have evolved into technologically advanced vehicles of national prestige and international competition for developed nations. The programs continue to evolve with impetus that India and China will have the same space capabilities as the United States with in the coming years. -
Outer Space Pretend Play Let Your Imagination Blast Off Into Outer Space! Astronauts and Scientists Study the Earth from Outer Space
UAMN Virtual Early Explorers: Amazing Earth Outer Space Pretend Play Let your imagination blast off into outer space! Astronauts and scientists study the Earth from outer space. They take pictures of Earth's surface and measure cloud cover, sea levels, glacier movements, and more. Instructions: Step 1: Work together with your child(ren) to create an area for your space station. Use cardboard boxes or pieces, aluminum foil, recycled plastic bottles, yarn, ribbons, bottlecaps, fabric scraps, or any other materials you have available. It can be as small or as large as you want it to be. Step 2: Pretend to be an astronaut on your space station. Let your child lead with ideas for imaginative play! Left: www.youclevermonkey.com/2016/01/space-pretend-play.html Center and right: pocketofpreschool.com/space-station-dramatic-play/ Suggestions and Prompts: • What is daily life like on your space station? Where and how do the astronauts eat, sleep, and exercise? • What sort of research are you doing on your space station? See the Studying Earth From Above sheet for ideas. • How will you control your space station’s orbit around Earth? Create a control panel so you can “pilot” the station! • How will you get more supplies? Build a rocket to launch a space shuttle to the station! • Use a phone or digital camera to take pictures from your space station. Astronauts on the International Space Station take pictures of the Earth’s surface every day! UAMN Virtual Early Explorers: Amazing Earth Studying Earth From Above NASA is best known for exploring outer space, but it also conducts many missions to investigate Earth from above. -
Mission Control and Data Systems (MCS) Space Operations and Astronaut Training Portfolio: MCS
Space Operations and Astronaut Training Portfolio: MCS Mission Control and Data Systems (MCS) Space Operations and Astronaut Training Portfolio: MCS Page 2 2021-01-28_RB_SP_MCS_v01 Space Operations and Astronaut Training Portfolio: MCS 1. Introduction and Overview of MCS Mission Control and Data Systems (MCS) The Mission Control and Data Systems (MCS) Group designs, develops and supports software and software systems. Before a command can be received by the satellite, it is parameterised, tested and transmitted by our software. Telemetry data sent from the satellite is pro- cessed by our software and made available to the engineers. In order to fulfill our mission to provide customers with innova tive These systems consist mainly of software modules, which are and reliable satellite command and data systems, we have developed and maintained by us. The portfolio of the MCS Group excellent experience in advanced systems engineering methods. currently consists of 20 software tools of different complexity and Since the German Space Operations Center (GSOC, 1968) was size. The main tools among others are the following. founded, the MCS Group has built and maintained more than 30 different command and ground control systems for over 20 different satellite types, including geostationary communica tions satellites, lowflying Earth observation satellites, scientific Software modules prototypes and for human spaceflight. In order to meet our demand for sustainable, innovative and reliable products and • GECCOS services, our daily work includes looking outside the box at con- • Satmon ferences and other control centers, as well as participating in • ProToS standardization boards. Due to our proximity to the operating • Opsweb engineers and our active participation in the operation, we ensure • MOPS fast response and release times and receive direct feedback from • DORI our customers. -
The New American Space Age: a Progress Report on Human Spaceflight the New American Space Age: a Progress Report on Human Spaceflight the International Space
The New American Space Age: A PROGRESS REPORT ON HUMAN SpaCEFLIGHT The New American Space Age: A Progress Report on Human Spaceflight The International Space Station: the largest international scientific and engineering achievement in human history. The New American Space Age: A Progress Report on Human Spaceflight Lately, it seems the public cannot get enough of space! The recent hit movie “Gravity” not only won 7 Academy Awards – it was a runaway box office success, no doubt inspiring young future scientists, engineers and mathematicians just as “2001: A Space Odyssey” did more than 40 years ago. “Cosmos,” a PBS series on the origins of the universe from the 1980s, has been updated to include the latest discoveries – and funded by a major television network in primetime. And let’s not forget the terrific online videos of science experiments from former International Space Station Commander Chris Hadfield that were viewed by millions of people online. Clearly, the American public is eager to carry the torch of space exploration again. Thankfully, NASA and the space industry are building a host of new vehicles that will do just that. American industry is hard at work developing new commercial transportation services to suborbital altitudes and even low Earth orbit. NASA and the space industry are also building vehicles to take astronauts beyond low Earth orbit for the first time since the Apollo program. Meanwhile, in the U.S. National Lab on the space station, unprecedented research in zero-g is paving the way for Earth breakthroughs in genetics, gerontology, new vaccines and much more. -
International Space Station Basics Components of The
National Aeronautics and Space Administration International Space Station Basics The International Space Station (ISS) is the largest orbiting can see 16 sunrises and 16 sunsets each day! During the laboratory ever built. It is an international, technological, daylight periods, temperatures reach 200 ºC, while and political achievement. The five international partners temperatures during the night periods drop to -200 ºC. include the space agencies of the United States, Canada, The view of Earth from the ISS reveals part of the planet, Russia, Europe, and Japan. not the whole planet. In fact, astronauts can see much of the North American continent when they pass over the The first parts of the ISS were sent and assembled in orbit United States. To see pictures of Earth from the ISS, visit in 1998. Since the year 2000, the ISS has had crews living http://eol.jsc.nasa.gov/sseop/clickmap/. continuously on board. Building the ISS is like living in a house while constructing it at the same time. Building and sustaining the ISS requires 80 launches on several kinds of rockets over a 12-year period. The assembly of the ISS Components of the ISS will continue through 2010, when the Space Shuttle is retired from service. The components of the ISS include shapes like canisters, spheres, triangles, beams, and wide, flat panels. The When fully complete, the ISS will weigh about 420,000 modules are shaped like canisters and spheres. These are kilograms (925,000 pounds). This is equivalent to more areas where the astronauts live and work. On Earth, car- than 330 automobiles. -
Astronaut Deployable Satellite
ASTRONAUT DEPLOYABLE SATELLITE BY WILLIAM G. CLAPP \JEBER STATE UNIVERSITY SCHOOL OF TECHNOLOGY ELECTRONIC ENGINEERING TECHNOLOGY OGDEN, UTAH 84408-1703 801-626-7097 FOR AIM/UTAH STATE UNIVERSITY CONFERENCE ON SMALL SATELLITES AUGUST 3, 1990 ASTRONAUT DEPLOYABLE SATELLITE William G. Clapp The Astronaut Deployable Satellite (ADSAT) is an educational satellite being designed and built by faculty, local engineers, and students at Weber State University. The ADSAT is our third satellite project after the success of two others, NUSAT I (Challenger April 85) and WEBERSAT-OSCAR 18 (Ariane-Jan 90. The ADSAT is designed to be tossed into space by an astronaut. The 16" X 16" X 4" AnSAT is self-contained and is designed to ride into space in a mid-deck stowage locker on the shuttle. When launch is desired, the astronaut removes the AnSAT from the locker and carries it outside. The astronaut then deploys the antennas and throws the ADSAT into space. The ADSAT is designed to send to Earth voice messages concerning onboard experiments. The voice messages will be generated by an onboard speech synthesizer that verbally relays the data to low-cost scanners on the ground. ADSAT is being designed to be thrown in a couple of years if NASA will agree to the concept. INTRODUCTION Realistic engineering training at the university level is a difficult task to accomplish successfully. There is no substitute for on-the-job training that takes place after graduation. Many universities offer senior projects courses in undergraduate programs to help the student transition into their entry-level engineering positions. The School of Technology at Weber State University has implemented a rigorous one-year senior projects program that consumes about 300 hours for each student. -
Forging Commercial Confidence
SPACEPORT UK: AHEAD FORGING WITH COMMERCIAL CONFIDENCE Copyright © Satellite Applications Catapult Ltd 2014. SPACEPORT UK: FORGING AHEAD WITH COMMERCIAL CONFIDENCE TABLE OF CONTENTS 1 EXECUTIVE SUMMARY 07 2 DEMAND FORECAST 11 • Commercial human spaceflight • Very high speed point to point travel • Satellite deployment • Microgravity research • Other commercial demand 3 SPACEPORT FACILITIES 47 • Core infrastructure required • Spaceflight preparation and training • Tours/visitor centre • Space campus • Key findings 4 WIDER ECONOMIC IMPACT 57 • Summary • Site development • Employment • Tourism • R&D/education • Key findings 4 TABLE OF CONTENTS 5 REGULATORY ENVIRONMENT 67 • Unlocking commercial potential 6 RISKS 73 • Accidents • Single operator • Local opposition 7 FINANCING 77 • Existing scenario • Potential funding sources • Other sources of funds • Insurance • Key findings Appendices 85 • Appendix A • Appendix B Acknowledgements and contact information 89 5 Spaceport UK: A pillar of growth for the UK and European space industry, enabling lower cost access to space, and creating economic benefit far beyond its perimeter fence. A spaceport will unlock economic growth and jobs in existing UK industries and regions, while positioning the UK to take advantage of emerging demand for commercial human spaceflight, small satellite launch, microgravity research, parabolic flights, near-space balloon tourism, and eventually high-speed point-to-point travel. Without a specific site selected and looking at the economic impact of a spaceport generically, this report expects the spaceport to deliver approximately £2.5bn and 8,000 jobs to the broader UK economy over 10 years. EXECUTIVE SUMMARY 1 Executive Summary Our plan is for Britain to have a fully functional, operating spaceport “by 2018. This would serve as a European focal point for the pioneers of commercial spaceflight using the potential of spaceflight experience companies like Virgin Galactic, XCOR and Swiss S3 to pave the way for satellite launch services to follow. -
Science Training History of the Apollo Astronauts William C
NASA/SP-2015-626 Science Training History of the Apollo Astronauts William C. Phinney National Aeronautics and Space Administration Apollo 17 crewmembers Gene Cernan and Harrison Schmitt conducting a practice EVA in the southern Nevada Volcanic Field near Tonopah, NV (NASA Photograph AS17-S72-48930). ii NASA/SP-2015-626 Science Training History of the Apollo Astronauts William C. Phinney National Aeronautics and Space Administration Cover photographs: From top: Apollo 13 Commander (CDR) James Lovell, left, and Lunar Module Pilot (LMP) Fred Haise during a geologic training trip to Kilbourne Hole, NM, November 1969 (NASA Photography S69- 25199); (Center) Apollo 16 LMP Charles Duke (left) and CDR John W. Young (right) during a practice EVA at Sudbury Crater, Ontario, Canada, July 1971 (NASA Photograph AS16-S71-39840); Apollo 17 LMP Harrison Schmitt (left) and CDR Eugene Cernan (right) during a practive EVA at Lunar Crater Volcanic Field, Tonopah, Nevada, September 1972 (NASA Photograph AS17-S72-48895); Apollo 15 CDR David Scott (left) and James Irwin (right) during practice geologic EVA training at the Rio Grande Gorge, Taos, NM, March 1971 (NASA Photograph AS15-S71-23773) iv ACKNOWLEDGEMENTS When I retired from NASA several of my coworkers, particularly Dave McKay and Everett Gibson, suggested that, given my past role as the coordinator for the science training of the Apollo astronauts, I should put together a history of what was involved in that training. Because it had been nearly twenty-five years since the end of Apollo they pointed out that many of the persons involved in that training might not be around when advice might be sought for future missions of this type. -
Astronaut Eric
CAP’s astronaut pilots shuttle Discovery on its last Photos courtesy of NASA flight into space By Maj. Steven Solomon Civil Air Patrol member and U.S. Air C Force Col. Eric Boe took NASA’s Space Shuttle Discovery into history, piloting it on its 39th and final mission. After numerous delays attributable to technical problems and bad weather, Discovery was launched Feb. 24 to deliver the Eric Boe is strapped into his seat on Space Shuttle Permanent Multipurpose Module, Discovery to practice escaping the shuttle, in preparation packed with supplies and critical for an unlikely emergency at the pad on launch day. spare parts, and Robonaut 2, the dexterous humanoid astronaut helper, to the International Space Station. “I look at the space shuttle and there’s nothing as cool in science fiction. I really Space Shuttle appreciate that we can take something like this and put Discovery carried it in orbit,” Boe said. Robonaut 2 to the Another NASA space shuttle, the Endeavour, which International Space Boe piloted in 2008 on his first flight into space, is Station. It is the first scheduled to fly in April, and the Atlantis is scheduled humanoid robot in for late June. But, after that, NASA’s human space space. program is “up in the air.” The program escaped a death blow with a congressional compromise, but budget cuts may still derail it. “I’d love to fly in space again,” Boe said. “I’d love to get the opportunity to fly one of the new vehicles, but I consider myself very fortunate, especially now that this looks like Discovery’s last flight.” For the love of flight Boe has never met a flying machine he didn’t like.