воскресенье, 29 сентября 2013 г.

Rinat Galyautdinov, A Day in the Life Aboard the International Space Station: Introduction

Have you ever wondered what it would be like to live and work in space? Follow astronauts on the International Space Station in a series of videos as they explain their daily routines. Learn where they sleep, and how they eat, exercise, work and spend free time. Compare life in space with life on Earth. 

Educators can use this series of videos and resources to enhance K-12 science, technology, engineering and mathematics curricula. 

Rinat Galyautdinov, Take a Tour of the ISS with Suni Williams


Harmony, Tranquility, Unity

Expedition 33 Commander Suni Williams starts off her tour of the International Space Station with a look at its nodes -- Harmony, Tranquility and Unity -- which include the crew's sleeping quarters and hygiene station.



Kibo, Columbus, Destiny

Suni Williams continues the International Space Station tour with a look at the Destiny, Kibo and Columbus labs as well as the Quest airlock.



Cupola and Leonardo

Suni Williams continues the tour of the International Space Station with a look at the station's observation deck, the cupola, as well as the Advanced Resistive Exercise Device in the Tranquility node, before heading into the Leonardo Permanent Multi-Purpose Module.



Russian Segment

Expedition 33 Commander Suni Williams concludes her tour of the International Space Station with a visit to the Russian segment, which includes Zarya, the first segment of the station launched in 1998, and Zvezda, the central command post. She also takes a look at the Poisk and Rassvet modules where Soyuz spacecraft are docked.

One Year Crew: Latest News

An international collaboration evaluates research protocols for candidate investigations during the planned American/Russian one year increment.

Rinat Galyautdinov, A Day in the Life Aboard the International Space Station: Introduction

Have you ever wondered what it would be like to live and work in space? Follow astronauts on the International Space Station in a series of videos as they explain their daily routines. Learn where they sleep, and how they eat, exercise, work and spend free time. Compare life in space with life on Earth. 

Educators can use this series of videos and resources to enhance K-12 science, technology, engineering and mathematics curricula. 

Rinat Galyautdinov, MEDIA ADVISORY


MEDIA ADVISORY M13-157
Updated Cygnus Rendezvous Date, NASA TV Coverage for Orbital Sciences' Demonstration Mission to International Space Station
NASA and its International Space Station partners have approved a Sunday, Sept. 29, target arrival of Orbital Sciences' Cygnus spacecraft on its demonstration cargo resupply mission to the space station.
NASA Television coverage of the rendezvous will begin at 4:30 a.m. EDT and will continue through the capture and installation of the Cygnus spacecraft. For the latest schedule for spacecraft capture and installation, as well as the post-berthing news conference, visit:
Orbital Sciences Corp. of Dulles, Va., launched the Cygnus spacecraft on the company's Antares rocket Sept. 18 from the Mid-Atlantic Regional Spaceport Pad-0A at NASA’s Wallops Flight Facility in Virginia.
International Space Station Expedition 37 crew members Karen Nyberg of NASA and Luca Parmitano of the European Space Agency will capture the spacecraft using the space station's robotic arm. They then will install Cygnus on the bottom of the station's Harmony module.
Cygnus will deliver about 1,300 pounds (589 kilograms) of cargo, including student experiments, food and clothing, to the space station. Future Cygnus flights will ensure a robust national capability to deliver critical science research to orbit, significantly increasing NASA's ability to conduct new science investigations to the only laboratory in microgravity.
Cygnus had been scheduled for a rendezvous with the space station on Sept. 22. Due to a data format mismatch, the first rendezvous attempt was postponed. Orbital has since updated and tested a software patch. Cygnus' arrival also was postponed pending the Sept. 25 arrival of the Expedition 37 crew. Flight Engineer Michael Hopkins of NASA and Soyuz Commander Oleg Kotov and Flight Engineer Sergey Ryazanskiy of the Russian Federal Space Agency (Roscosmos) arrived at the space station aboard a Soyuz spacecraft at 10:45 p.m. Wednesday.
The updated Sunday rendezvous and approach will include originally planned tests to validate Cygnus' performance as it approaches the space station.
Orbital built, and is testing, Cygnus under NASA’s Commercial Orbital Transportation Services (COTS) Program. The successful completion of the COTS demonstration mission will pave the way for Orbital to conduct eight planned cargo resupply flights to the space station through NASA’s $1.9 billion Commercial Resupply Services contract with the company. 

Rinat Galyautdinov, Astronauts Practice Launching in NASA's New Orion Spacecraft


Astronauts Practice Launching in NASA's New Orion Spacecraft
Astronauts Rick Linnehan and Mike Foreman try out a prototype display and control system inside an Orion spacecraft mockup at NASA’s Johnson Space Center in Houston during the first ascent and abort simulations for the program.
Astronauts Rick Linnehan and Mike Foreman try out a prototype display and control system inside an Orion spacecraft mockup at NASA’s Johnson Space Center in Houston during the first ascent and abort simulations for the program.
For the first time, NASA astronauts are practicing a launch into space aboard the agency's Orion spacecraft, and provided feedback on the new capsule's cockpit design.
In the ascent simulations, which took place over the course of two weeks at NASA's Johnson Space Center in Houston this month, astronauts rehearsed their roles during an eight-minute climb into space aboard Orion. The rehearsals included procedures that would be required in the event of an emergency with the agency's new heavy-lift Space Launch System rocket, which is being designed to carry Orion to low-Earth orbit on the first portion of its flights to deep space.
Ten pairs of astronauts participated in two normal launch simulations and two launch-abort simulations inside an Orion mockup fitted with instrument panels and other equipment being designed for the actual capsule. As the two-person crews made their way through a series of tasks, engineers took careful notes of every comment and question from the crew. Their feedback will be considered in the process of fine-tuning the design and build requirements for the displays and controls.
"Simulations like these provide valuable experience by giving astronauts and the operations team an early look at what going to deep space in Orion will be like," said astronaut Lee Morin, who has been working on the Orion displays as supervisor of Johnson's rapid prototyping laboratory. "Rehearsing launch and ascent -- two of the most challenging parts of Orion's mission -- also gives us an opportunity to work toward optimizing how the crew interacts with the spacecraft."
Designing a spacecraft's cockpit to maximize simplicity and efficiency is not easy. Each of NASA's space shuttles had 10 display screens, more than 1,200 switches, dials and gauges, and pages of procedures weighing hundreds of pounds on paper.
By comparison, Orion, which is designed for deep-space exploration and autonomous or piloted rendezvous and docking, will have just three computer screens, each the size of a sheet of paper, which take advantage of information technology advancements made since the space shuttles were designed in the early 1970s.
"It's very rewarding work, knowing the displays we are creating and testing now will be what future astronauts will be looking at as they rendezvous with an asteroid, orbit the moon, and even travel to Mars," Morin said. "Getting this right is key to making Orion and other future vehicles safer and easier to use."
Orion's first crewed launch, Exploration Mission-2, is scheduled for 2021, when NASA plans to send two astronauts to an asteroid in lunar orbit. Orion ultimately will allow us to go farther into space than ever before, including destinations such as Mars.
NASA plans to make Orion's data and software available to the agency's commercial partners, who may adapt it for use in spacecraft that could transport astronauts to and from the International Space Station.
For more information on the test and images, visit:

Rinat Galyautdinov, NASA Awards Synthetic Aperture Radar Distributed Active Archive Center Contract


Stephen Cole
Headquarters, Washington
202-358-0918
stephen.e.cole@nasa.gov
Cynthia M. O'Carroll
Goddard Space Flight Center, Greenbelt, Md.
301-286-4787
cynthia.m.ocarroll@nasa.gov
CONTRACT RELEASE C13-047
NASA Awards Synthetic Aperture Radar Distributed Active Archive Center Contract
NASA has selected the University of Alaska at Fairbanks to develop and operate the Synthetic Aperture Radar Distributed Active Archive Center (DAAC) for NASA’s Earth Observing System Data and Information System.
The maximum total value of this cost-no-fee, indefinite-delivery, indefinite-quantity contract is about $49 million. The contract begins Oct. 1 and extends through Sept. 30, 2018.
The University of Alaska will conduct systems engineering, operations and maintenance, development, user services, product generation, and data and information management, archive and distribution; and provide information technology security and related science support and research activities for NASA's Earth Science Data Systems Program.
The work will be performed primarily at the University of Alaska DAAC in Fairbanks.
For information about NASA and agency programs, visit: