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Tuesday, May 19, 2015

JPL News - Day in Review

LATEST NEWS
NASA Soil Moisture Mission Begins Science Operations

NASA's new Soil Moisture Active Passive (SMAP) mission to map global soil moisture and detect whether soils are frozen or thawed has begun science operations.

Launched Jan. 31 on a minimum three-year mission, SMAP will help scientists understand links among Earth's water, energy and carbon cycles; reduce uncertainties in predicting climate; and enhance our ability to monitor and predict natural hazards like floods and droughts. SMAP data have additional practical applications, including improved weather forecasting and crop yield predictions.

A first global view of SMAP's flagship product, a combined active-passive soil moisture map with a spatial resolution of 5.6 miles (9 kilometers), is available at:

http://www.jpl.nasa.gov/spaceimages/details.php?id=PIA19337

During SMAP's first three months in orbit, referred to as SMAP's "commissioning" phase, the observatory was first exposed to the space environment, its solar array and reflector boom assembly containing SMAP's 20-foot (6-meter) reflector antenna were deployed, and the antenna and instruments were spun up to their full speed, enabling global measurements every two to three days.

The commissioning phase also was used to ensure that SMAP science data reliably flow from its instruments to science data processing facilities at NASA's Jet Propulsion Laboratory in Pasadena, California, and the agency's Goddard Space Flight Center in Greenbelt, Maryland.

"Fourteen years after the concept for a NASA mission to map global soil moisture was first proposed, SMAP now has formally transitioned to routine science operations," said Kent Kellogg, SMAP project manager at JPL. "SMAP's science team can now begin the important task of calibrating the observatory's science data products to ensure SMAP is meeting its requirements for measurement accuracy."

Together, SMAP's two instruments, which share a common antenna, produce the highest-resolution, most accurate soil moisture maps ever obtained from space. The spacecraft's radar transmits microwave pulses to the ground and measures the strength of the signals that bounce back from Earth, whereas its radiometer measures microwaves that are naturally emitted from Earth's surface.

"SMAP data will eventually reveal how soil moisture conditions are changing over time in response to climate and how this impacts regional water availability," said Dara Entekhabi, SMAP science team leader at the Massachusetts Institute of Technology in Cambridge. "SMAP data will be combined with data from other missions like NASA's Global Precipitation Measurement, Aquarius and Gravity Recovery and Climate Experiment to reveal deeper insights into how the water cycle is evolving at global and regional scales."

The new global image shows dry conditions in the southwestern United States and in Australia's interior. Moist soil conditions are evident in the U.S. Midwest and in eastern regions of the United States, Europe and Asia. The far northern regions depicted in these SMAP maps do not indicate soil moisture measurements because the ground there was frozen.

Zooming in on the data allows a closer look at the benefits of combining SMAP's radar and radiometer data. A segment of a SMAP orbit covering the central and southern United States on April 27 is available at:

http://www.jpl.nasa.gov/spaceimages/details.php?id=PIA19338

The upper part of the image shows the radiometer-based estimate of soil moisture at a spatial resolution of 22.5 miles (36 kilometers). The lower part of the image shows the active-passive, or merged high-resolution (5.6 miles, or 9 kilometers), radar- and radiometer-derived soil moisture product.

In the days prior to this data collection, intense rainstorms pounded northern Texas. The areas affected by the storm in northern Texas and the Gulf Coast are visible in much greater detail. Such detail can be used to improve local weather forecasts, assist in monitoring drought in smaller watersheds, and forecast floods.

Over the next year, SMAP data will be calibrated and validated by comparing it against ground measurements of soil moisture and freeze/thaw state around the world at sites representing a broad spectrum of soil types, topography, vegetation and ground cover. SMAP data also will be compared with soil moisture data from existing aircraft-mounted instruments and other satellites.

Preliminary calibrated data will be available in August at designated public-access data archives, including the National Snow and Ice Data Center in Boulder, Colorado, and Alaska Satellite Facility in Fairbanks. Preliminary soil moisture and freeze/thaw products will be available in November, with validated measurements scheduled to be available for use by the general science community in the summer of 2016.

NASA uses the vantage point of space to increase our understanding of our home planet, improve lives and safeguard our future. NASA develops new ways to observe and study Earth's interconnected natural systems with long-term data records. The agency freely shares this unique knowledge and works with institutions around the world to gain new insights into how our planet is changing.

For more information on SMAP, visit:

http://www.nasa.gov/smap

For more information about NASA's Earth science activities, visit:

http://www.nasa.gov/earth

 



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Thursday, May 14, 2015

JPL News - Day in Review

 

DAY IN REVIEW
It's the Final Act for Larsen B Ice Shelf, NASA Finds
It's the Final Act for Larsen B Ice Shelf, NASA Finds
NASA has found that the last section of Antarctica's Larsen B Ice Shelf, which partially collapsed in 2002, is likely to disintegrate before the end of the decade.

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OPALS Boosts Space-to-Ground Optical Communications Research
OPALS Boosts Space-to-Ground Optical Communications Research
Ever wonder why stars seem to twinkle? This effect is caused by variations in the density of our atmosphere that cause blurring in light coming from space.

› Read the full story

 



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Tuesday, May 12, 2015

JPL News - Day in Review

DAY IN REVIEW
NASA Research Reveals Europa's Mystery Dark Material Could Be Sea Salt

NASA laboratory experiments suggest the dark material coating some geological features of Jupiter's moon Europa is likely sea salt from a subsurface ocean, discolored by exposure to radiation. The presence of sea salt on Europa's surface suggests the ocean is interacting with its rocky seafloor -- an important consideration in determining whether the icy moon could support life.

The study is accepted for publication in the journal Geophysical Research Letters and is available online.

"We have many questions about Europa, the most important and most difficult to answer being is there life? Research like this is important because it focuses on questions we can definitively answer, like whether or not Europa is inhabitable," said Curt Niebur, Outer Planets Program scientist at NASA Headquarters in Washington. "Once we have those answers, we can tackle the bigger question about life in the ocean beneath Europa's ice shell."

For more than a decade, scientists have wondered about the nature of the dark material that coats long, linear fractures and other relatively young geological features on Europa's surface. Its association with young terrains suggests the material has erupted from within Europa, but with limited data available, the material's chemical composition has remained elusive.

"If it's just salt from the ocean below, that would be a simple and elegant solution for what the dark, mysterious material is," said research lead Kevin Hand, a planetary scientist at NASA's Jet Propulsion Laboratory in Pasadena, California.

One certainty is that Europa is bathed in radiation created by Jupiter's powerful magnetic field. Electrons and ions slam into the moon's surface with the intensity of a particle accelerator. Theories proposed to explain the nature of the dark material include this radiation as a likely part of the process that creates it.

Previous studies using data from NASA's Galileo spacecraft, and various telescopes, attributed the discolorations on Europa's surface to compounds containing sulfur and magnesium. While radiation-processed sulfur accounts for some of the colors on Europa, the new experiments reveal that irradiated salts could explain the color within the youngest regions of the moon's surface.

To identify the dark material, Hand and his co-author Robert Carlson, also at JPL, created a simulated patch of Europa's surface in a laboratory test apparatus for testing possible candidate substances. For each material, they collected spectra -- which are like chemical fingerprints -- encoded in the light reflected by the compounds.

"We call it our 'Europa in a can,'" Hand said. "The lab setup mimics conditions on Europa's surface in terms of temperature, pressure and radiation exposure. The spectra of these materials can then be compared to those collected by spacecraft and telescopes."

For this particular research, the scientists tested samples of common salt -- sodium chloride -- along with mixtures of salt and water, in their vacuum chamber at Europa's chilly surface temperature of minus 280 degrees Fahrenheit (minus 173 Celsius). They then bombarded the salty samples with an electron beam to simulate the intense radiation on the moon's surface.

After a few tens of hours of exposure to this harsh environment, which corresponds to as long as a century on Europa, the salt samples, which were initially white just like table salt, turned a yellowish-brown color similar to features on the icy moon. The researchers found the color of these samples, as measured in their spectra, showed a strong resemblance to the color within fractures on Europa that were imaged by NASA's Galileo mission.

"This work tells us the chemical signature of radiation-baked sodium chloride is a compelling match to spacecraft data for Europa's mystery material," Hand said.

Additionally, the longer the samples were exposed to radiation, the darker the resulting color. Hand thinks scientists could use this type of color variation to help determine the ages of geologic features and material ejected from any plumes that might exist on Europa.

Previous telescope observations have shown tantalizing hints of the spectral features seen by the researchers in their irradiated salts. But no telescope on or near Earth can observe Europa with sufficiently high resolving power to identify the features with certainty. The researchers suggest this could be accomplished by future observations with a spacecraft visiting Europa.

JPL built and managed NASA's Galileo mission for the agency's Science Mission Directorate in Washington, and is developing a concept for a future mission to Europa. The California Institute of Technology in Pasadena manages JPL for NASA.

For more information about Europa, visit:

http://europa.jpl.nasa.gov

 



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Monday, May 11, 2015

JPL News - Day in Review

 

DAY IN REVIEW
Ceres Animation Showcases Bright Spots
Ceres Animation Showcases Bright Spots
The mysterious bright spots on the dwarf planet Ceres are better resolved in a new sequence of images taken by NASA's Dawn spacecraft on May 3 and 4, 2015.

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Astronomers Take a New Kind of Pulse From the Sky
Astronomers Take a New Kind of Pulse From the Sky
New video shows early results from a new array of radio antennas. The project is designed to catch things that flash, flare and explode.

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Thursday, May 7, 2015

JPL News - Day in Review

 

DAY IN REVIEW
Star Explosion is Lopsided, Finds NASA's NuSTAR
Star Explosion is Lopsided, Finds NASA's NuSTAR
NASA's NuSTAR, has found evidence that a massive star exploded in a lopsided fashion, sending ejected material flying in one direction and the core of the star in the other.

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FINDER Search and Rescue Technology Helped Save Lives in Nepal
FINDER Search and Rescue Technology Helped Save Lives in Nepal
In the wreckage of a collapsed textile factory and another building in the Nepalese village of Chautara, four men were rescued, thanks to a NASA technology that was able to find their heartbeats.

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Wednesday, May 6, 2015

JPL News - Day in Review

 

DAY IN REVIEW
How Dry is Texas? SMAP, TxSON Network Aim to Find Out
How Dry is Texas? SMAP, TxSON Network Aim to Find Out
NASA's SMAP and University of Texas scientists are rounding up critical soil information for managing the Lone Star State's limited water.

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Saturn Moon's Activity Could Be 'Curtain Eruptions'
Saturn Moon's Activity Could Be 'Curtain Eruptions'
New research using data from NASA's Cassini mission suggests most of the eruptions from Saturn's moon Enceladus might be diffuse curtains rather than discrete jets.

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Tuesday, May 5, 2015

JPL News - Day in Review

DAY IN REVIEW
Public Event Will Celebrate NASA Mission to Dwarf Planet Ceres

NASA's Dawn mission will host the flagship event for its "I C Ceres" space festival at the California Institute of Technology in Pasadena on Saturday, May 9, from 10 a.m. to 4:30 p.m. The free event is intended for all ages.

The first part of the event, an outdoor space expo, will take place at Caltech's Beckman Auditorium Mall from 10 a.m. to 2 p.m. Visitors can take a tour of our solar system, with booths featuring NASA missions, and learn how NASA communicates with spacecraft beyond Earth orbit. Live educational stage demonstrations will take place every 30 minutes. Additional attractions include meteorites, rover wheels and other space hardware available to touch; virtual walks on the moon, Mars and asteroid Vesta; and face painting. Food will be available for purchase at onsite food trucks.

The second part of the event is a series of talks scheduled from 12:30 to 4:30 p.m. in Beckman Auditorium. The first talk, from 12:30 to 1:30 p.m., is geared for a younger audience, while the talks after 2 p.m. are more appropriate for adults.

Speakers include:

-- Jim Green, Director, Planetary Science Division, NASA Headquarters, Washington

-- Carol Raymond, Dawn mission deputy principal investigator, NASA's Jet Propulsion Laboratory, Pasadena, California

-- Dante Lauretta, OSIRIS REx mission principal investigator, University of Arizona, Tucson

-- Claudia Alexander, U.S. Rosetta project scientist, JPL

-- Alan Stern, New Horizons mission principal investigator, Southwest Research Institute, Boulder, Colorado

The talks, including a panel discussion about icy worlds, asteroids and comets, will also be broadcast live via Ustream at:

http://dawn.jpl.nasa.gov/news/i_c_ceres_bios.html

Other I C Ceres events are being hosted by museums, planetariums, universities and individuals in the U.S. and abroad.

More information about the I C Ceres event is available at:

http://dawn.jpl.nasa.gov/news/I_C_ceres.html

Dawn's mission is managed by JPL, a division of the California Institute of Technology in Pasadena, for NASA's Science Mission Directorate in Washington. Dawn is a project of the directorate's Discovery Program, managed by NASA's Marshall Space Flight Center in Huntsville, Alabama. UCLA is responsible for overall Dawn mission science. Orbital ATK, Inc., in Dulles, Virginia, designed and built the spacecraft. The German Aerospace Center, the Max Planck Institute for Solar System Research, the Italian Space Agency and the Italian National Astrophysical Institute are international partners on the mission team. For a complete list of acknowledgements, visit:

http://dawn.jpl.nasa.gov/mission

For more information about the Dawn mission, visit:

http://dawn.jpl.nasa.gov

 



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This Saturday! NASA/JPL Educator Workshop on Robotics

 

JPL EDUCATION / WORKSHOPS
Educator Workshop - Robotics
Robotics

Date: Saturday, May 9, 10 a.m. to 12:45 p.m.

Target Audience: Teachers for grades K-12

Location: Jet Propulsion Laboratory, Pasadena, CA, von Karman Auditorium

Overview: Whether it's roving around Mars, exploring asteroids and comets or investigating our home planet, we use robotics every day. Learn how JPL designs robots for various applications, and take a look at the important role these machines play in space exploration as well as other fields, like medicine. Learn about engineering design and create inexpensive activities that you can take back to your students to introduce them to the exciting world of robotics.

Call the Educator Resource Center at (818) 393-5917 to reserve your spot.

This free workshop is offered through the NASA/JPL Educator Resource Center, which provides formal and informal educators with NASA resources and materials that support STEM learning. For more information, visit the Educator Resource Center page at: http://www.jpl.nasa.gov/education/index.cfm?page=115.

For a list of more upcoming educator workshops from NASA/JPL Education, visit: http://www.jpl.nasa.gov/education/index.cfm?page=387

 



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Monday, May 4, 2015

JPL News - Day in Review

DAY IN REVIEW
Traffic Around Mars Gets Busy

Fast Facts:

› Five active spacecraft are orbiting Mars, an increase of two since last summer

› An enhanced system warns if two orbiters may approach each other too closely

NASA has beefed up a process of traffic monitoring, communication and maneuver planning to ensure that Mars orbiters do not approach each other too closely.

Last year's addition of two new spacecraft orbiting Mars brought the census of active Mars orbiters to five, the most ever. NASA's Mars Atmosphere and Volatile Evolution (MAVEN) and India's Mars Orbiter Mission joined the 2003 Mars Express from ESA (the European Space Agency) and two from NASA: the 2001 Mars Odyssey and the 2006 Mars Reconnaissance Orbiter (MRO). The newly enhanced collision-avoidance process also tracks the approximate location of NASA's Mars Global Surveyor, a 1997 orbiter that is no longer working.

It's not just the total number that matters, but also the types of orbits missions use for achieving their science goals. MAVEN, which reached Mars on Sept. 21, 2014, studies the upper atmosphere. It flies an elongated orbit, sometimes farther from Mars than NASA's other orbiters and sometimes closer to Mars, so it crosses altitudes occupied by those orbiters. For safety, NASA also monitors positions of ESA's and India's orbiters, which both fly elongated orbits.

"Previously, collision avoidance was coordinated between the Odyssey and MRO navigation teams," said Robert Shotwell, Mars Program chief engineer at NASA's Jet Propulsion Laboratory, Pasadena, California. "There was less of a possibility of an issue. MAVEN's highly elliptical orbit, crossing the altitudes of other orbits, changes the probability that someone will need to do a collision-avoidance maneuver. We track all the orbiters much more closely now. There's still a low probability of needing a maneuver, but it's something we need to manage."

Traffic management at Mars is much less complex than in Earth orbit, where more than 1,000 active orbiters plus additional pieces of inactive hardware add to hazards. As Mars exploration intensifies, though, and will continue to do so with future missions, precautions are increasing. The new process was established to manage this growth as new members are added to the Mars orbital community in years to come.

All five active Mars orbiters use the communication and tracking services of NASA's Deep Space Network, which is managed at JPL. This brings trajectory information together, and engineers can run computer projections of future trajectories out to a few weeks ahead for comparisons.

"It's a monitoring function to anticipate when traffic will get heavy," said Joseph Guinn, manager of JPL's Mission Design and Navigation Section. "When two spacecraft are predicted to come too close to one another, we give people a heads-up in advance so the project teams can start coordinating about whether any maneuvers are needed."

The amount of uncertainty in the predicted location of a Mars orbiter a few days ahead is more than a mile (more than two kilometers). Calculating projections for weeks ahead multiplies the uncertainty to dozens of miles, or kilometers. In most cases when a collision cannot be ruled out from projections two weeks ahead, improved precision in the forecasting as the date gets closer will rule out a collision with no need for avoidance action. Mission teams for the relevant orbiters are notified in advance when projections indicate a collision is possible, even if the possibility will likely disappear in subsequent projections. This situation occurred on New Year's weekend, 2015.

On Jan. 3, automated monitoring determined that two weeks later, MAVEN and MRO could come within about two miles (three kilometers) of each other, with large uncertainties remaining in the exact passing distance. Although that was a Saturday, automatic messages went out to the teams operating the orbiters.

"In this case, before the timeline got short enough to need to plan an avoidance maneuver, the uncertainties shrank, and that ruled out the chance of the two spacecraft coming too near each other," Guinn said. This is expected to be the usual pattern, with the advance warning kicking off higher-level monitoring and initial discussions about options.

If preparations for an avoidance maneuver were called for, spacecraft commands would be written, tested and approved for readiness, but such commands would not be sent to a spacecraft unless projections a day or two ahead showed probability of a hazardous conjunction. The amount of uncertainty about each spacecraft's exact location varies, so the proximity considered unsafe also varies. For some situations, a day-ahead projection of two craft coming within about 100 yards (100 meters) of each other could trigger a maneuver.

The new formal collision-avoidance process for Mars is part of NASA's Multi-Mission Automated Deep-Space Conjunction Assessment Process. A side benefit of it is that information about when two orbiters will be near each other -- though safely apart -- could be used for planning coordinated science observations. The pair could look at some part of Mars or its atmosphere from essentially the same point of view simultaneously with complementary instruments.

Odyssey, MRO and MAVEN -- together with NASA's two active Mars rovers, Opportunity and Spirit -- are part of NASA's robotic exploration of Mars that is preparing the way for human-crewed missions there in the 2030s and later, in NASA's Journey to Mars strategy.

NASA's Goddard Space Flight Center manages the MAVEN project for the NASA Science Mission Directorate, Washington. MAVEN's principal investigator is based at the University of Colorado's Laboratory for Atmospheric and Space Physics. JPL, a division of the California Institute of Technology in Pasadena, manages NASA's Mars Exploration Program and the Odyssey and MRO projects for the Science Mission Directorate. Lockheed Martin Space Systems, Denver, built all three NASA Mars orbiters.

For more about NASA's Mars Exploration Program, visit:

http://mars.jpl.nasa.gov

http://www.nasa.gov/mars

 



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Friday, May 1, 2015

JPL News - Day in Review

DAY IN REVIEW
NASA Aids Response to Nepal Quake

NASA and its partners are gathering the best available science and information on the April 25, 2015, magnitude 7.8 earthquake in Nepal, referred to as the Gorkha earthquake, to as-sist in relief and humanitarian operations. Organizations using these NASA data products and analyses include the U.S. Geological Survey, United States Agency for International Development (USAID)/Office of U.S. Foreign Disaster Assistance, World Bank, American Red Cross, and the United Nations Children's Fund.

NASA and its collaborators are pulling optical and radar satellite data from international and domestic partners and compiling them into a variety of products. The products include "vul-nerability maps," used to determine risks that may be present; and "damage proxy maps," used to determine the type and extent of existing damage. Such products can be used to better direct response efforts.

The satellite data will be used to compile maps of ground surface deformation and to create risk models. NASA and its partners are also contributing to assessments of damage to infra-structure. They are tracking remote areas that may be a challenge for relief workers to reach, as well as areas that could be at risk for landslides, river damming, floods and avalanches. The data will contribute to ongoing investigations of our restless Earth and its impacts on society.

NASA is helping get satellite data into the hands of government officials in Nepal where In-ternet bandwidth is limited. The joint NASA-USAID SERVIR project is supporting disaster response mapping efforts through the SERVIR-Himalaya office at the International Centre for Integrated Mountain Development in Kathmandu. SERVIR staff at NASA's Marshall Space Flight Center, Huntsville, Alabama, are coordinating image tasking, processing, compression, and distribution efforts with colleagues from Goddard Space Flight Center in Greenbelt, Maryland, and the Jet Propulsion Laboratory in Pasadena, California.

NASA technology that can locate people trapped beneath collapsed buildings is being de-ployed to Nepal. A remote-sensing radar technology called FINDER (Finding Individuals for Disaster and Emergency Response), developed by JPL in conjunction with the U.S. De-partment of Homeland Security's Science and Technology Directorate, can locate individuals buried as deep as 30 feet (9.1 meters) in crushed materials, hidden behind 20 feet (6 meters) of solid concrete, and from a distance of 100 feet (30.5 meters) in open spaces. This technology, licensed by the private entity R4 Incorporated of Edgewood, Maryland, has been taken to Nepal to assist with recovery efforts.

NASA uses the vantage point of space to increase our understanding of our home planet, improve lives and safeguard our future. NASA develops new ways to observe and study Earth's interconnected natural systems with long-term data records. The agency freely shares this unique knowledge and works with institutions around the world to gain new in-sights into how our planet is changing.

Data and images will be released as they become available at:

http://www.nasa.gov/content/images-of-the-april-2015-nepal-earthquake

 



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