I took these two pics after I got off from work last Valentine's Day, but just thought I'd post them here now (they've been taking up space on my laptop since then). The Metro Gold Line is in action as passengers take the train that carries them above the 101 Freeway in downtown Los Angeles. I've never taken this particular Metro line before, but I did use the subway when I checked out space shuttle Endeavour during her move to the California Science Center two years back (I met up with one of my friends in North Hollywood and took the train all the way down to the City of Angels). Fun times.
Sunday, November 09, 2014
Photos of the Night: Taking the Train in L.A.
I took these two pics after I got off from work last Valentine's Day, but just thought I'd post them here now (they've been taking up space on my laptop since then). The Metro Gold Line is in action as passengers take the train that carries them above the 101 Freeway in downtown Los Angeles. I've never taken this particular Metro line before, but I did use the subway when I checked out space shuttle Endeavour during her move to the California Science Center two years back (I met up with one of my friends in North Hollywood and took the train all the way down to the City of Angels). Fun times.
Friday, November 07, 2014
MAVEN Update: More Info on Comet Siding Spring's Amazing Mars Adventure...
NASA / JPL
Mars Spacecraft Reveal Comet Flyby Effects on Martian Atmosphere (Press Release)
Two NASA and one European spacecraft that obtained the first up-close observations of a comet flyby of Mars on Oct. 19, have gathered new information about the basic properties of the comet’s nucleus and directly detected the effects on the Martian atmosphere.
Data from observations carried out by NASA's Mars Atmosphere and Volatile Evolution (MAVEN) mission, NASA’s Mars Reconnaissance Orbiter (MRO), and a radar instrument on the European Space Agency's (ESA’s) Mars Express spacecraft have revealed that debris from the comet added a temporary and very strong layer of ions to the ionosphere, the electrically charged layer high above Mars. In these observations, scientists were able to make a direct connection from the input of debris from a specific meteor shower to the formation of this kind of transient layer in response; that is a first on any planet, including Earth.
Comet C/2013 A1 Siding Spring traveled from the most distant region of our solar system, called the Oort Cloud, and made a close approach around 2:27 p.m. EDT within about 87,000 miles (139,500 kilometers) of the Red Planet. This is less than half the distance between Earth and our moon and less than one-tenth the distance of any known comet flyby of Earth.
Dust from the comet impacted Mars and was vaporized high in the atmosphere, producing what was likely an impressive meteor shower. This debris resulted in significant temporary changes to the planet’s upper atmosphere and possible longer-term perturbations. Earth-based and a host of space telescopes also observed the unique celestial object.
“This historic event allowed us to observe the details of this fast-moving Oort Cloud comet in a way never before possible using our existing Mars missions,” said Jim Green, director of NASA’s Planetary Science Division at the agency’s Headquarters in Washington. “Observing the effects on Mars of the comet's dust slamming into the upper atmosphere makes me very happy that we decided to put our spacecraft on the other side of Mars at the peak of the dust tail passage and out of harm's way.”
The MAVEN spacecraft, recently arrived at Mars, detected the comet encounter in two ways. The remote-sensing Imaging Ultraviolet Spectrograph observed intense ultraviolet emission from magnesium and iron ions high in the atmosphere in the aftermath of the meteor shower. Not even the most intense meteor storms on Earth have produced as strong a response as this one. The emission dominated Mars' ultraviolet spectrum for several hours after the encounter and then dissipated over the next two days.
MAVEN also was able to directly sample and determine the composition of some of the comet dust in Mars’ atmosphere. Analysis of these samples by the spacecraft’s Neutral Gas and Ion Mass Spectrometer detected eight different types of metal ions, including sodium, magnesium and iron. These are the first direct measurements of the composition of dust from an Oort Cloud comet. The Oort Cloud, well beyond the outer-most planets that surround our sun, is a spherical region of icy objects believed to be material left over from the formation of the solar system.
Elsewhere above Mars, a joint U.S. and Italian instrument on Mars Express observed a huge increase in the density of electrons following the comet's close approach. This instrument, the Mars Advanced Radar for Subsurface and Ionospheric Sounding (MARSIS), saw a huge jump in the electron density in the ionosphere a few hours after the comet rendezvous. This spike occurred at a substantially lower altitude than the normal density peak in the Martian ionosphere. The increased ionization, like the effects observed by MAVEN, appears to be the result of fine particles from the comet burning up in the atmosphere.
MRO’s Shallow Subsurface Radar (SHARAD) also detected the enhanced ionosphere. Images from the instrument were smeared by the passage of the radar signals through the temporary ion layer created by the comet's dust. SHARAD scientists used this smearing to determine that the electron density of the ionosphere on the planet's night side, where the observations were made, was five to 10 times higher than usual.
Studies of the comet itself, made with MRO's High Resolution Imaging Science Experiment (HiRISE) camera, revealed the nucleus is smaller than the expected 1.2 miles (2 kilometers). The HiRISE images also indicate a rotation period for the nucleus of eight hours, which is consistent with recent preliminary observations by NASA’s Hubble Space Telescope.
MRO’s Compact Reconnaissance Imaging Spectrometer for Mars (CRISM) also observed the comet to see whether signs of any particular chemical constituents stood out in its spectrum. Team members said the spectrum appears to show a dusty comet with no strong emission lines at their instrument’s sensitivity.
In addition to these immediate effects, MAVEN and the other missions will continue to look for long-term perturbations to Mars’ atmosphere.
MAVEN's principal investigator is based at the University of Colorado's Laboratory for Atmospheric and Space Physics in Boulder, and NASA's Goddard Space Flight Center in Greenbelt, Maryland, manages the mission. NASA's Jet Propulsion Laboratory, a division of Caltech in Pasadena, manages the Mars Reconnaissance Orbiter. Mars Express is a project of the European Space Agency; NASA and the Italian Space Agency jointly funded the MARSIS instrument.
Source: NASA.Gov
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Laboratory for Atmospheric and Space Physics, University of Colorado; NASA
Tuesday, November 04, 2014
F-35 Update: A Milestone at Sea...
Lockheed Martin / U.S. Navy
Almost two months after its older sibling, the F-22 Raptor, finally saw combat by going on bombing runs against the Islamic State in Syria, Lockheed Martin's Joint Strike Fighter (JSF) achieved another milestone in its development program when the U.S. Navy's variant—the F-35C Lightning II—made a carrier landing aboard the USS Nimitz. The arrested landing took place yesterday, with America's newest jet fighter symbolically touching down aboard our nation's oldest active aircraft carrier off the coast of San Diego, California. The F-35C is scheduled to become operational in 2018, while the F-35A (the U.S. Air Force's variant) will achieve operational status in December of 2016. The U.S. Marine Corps' version, the F-35B, will enter service in December of next year—becoming the first JSF version to be ready for battle. Hopefully, it won't have to wait 9 years to unleash its first smart bomb or air-to-air missile against a would-be foe...unlike the Raptor (which has yet to fire an AMRAAM or Sidewinder missile in real combat). We'll see.
Lockheed Martin / U.S. Navy
Lockheed Martin / U.S. Navy
Lockheed Martin / U.S. Navy
Monday, November 03, 2014
1 WTC: Now Open for Business!
Taylor Mason / NY on Air
After beginning construction more than eight years ago, the 1 World Trade Center has opened its doors today to its main tenant (the magazine conglomerate, Condé Nast) and the public who are eager to visit Manhattan's newest iconic skyscraper. Here are some photos of America's tallest building to commemorate today's grand opening...
Image courtesy of WTC Progress - Facebook
Image courtesy of One World Trade Center - Facebook
Image courtesy of One World Trade Center - Facebook
Image courtesy of One World Trade Center - Facebook
Image courtesy of One World Trade Center - Facebook
Saturday, November 01, 2014
Photos of the Day: Another Space Jump Above New Mexico!
On Friday, October 24, another daredevil broke an aerospace record when Google executive Alan Eustace cut loose from a helium-filled balloon and conducted a 25-mile-high, 15-minute-long skydive above Roswell, New Mexico. Under the veil of secrecy, Eustace broke the record held by Felix Baumgartner when the Austrian—with the help of Red Bull—performed a jump from 127,852 feet above the Roswell desert in 2012. Eustace made the leap from an altitude of 135,890 feet by comparison. Both feats are amazing... However, Eustace is reportedly a huge space enthusiast, whereas Baumgartner is not. Despite the fact that there is a much cooler video and pictures from the Red Bull Stratos jump (I even got to see the suit and capsule used by Baumgartner in person at the California Science Center last year), I have to give more props to Eustace. Well done.
Paragon Space Development Corporation / European Pressphoto Agency
J. Martin Harris Photography / Paragon Space Development Corporation
Paragon Space Development Corporation
Friday, October 31, 2014
The Return of X-WING!
Happy Halloween, Everyone! Just thought I'd celebrate this spooky holiday by mentioning how ecstatic I am that I can now play the classic Star Wars: X-Wing video game on my computer once more! Almost 8 years ago, I posted this entry about how I wished that LucasArts would re-release this awesome space combat simulator for modern PCs that run Windows XP (now Windows 8 on my new laptop). Well, thanks to Disney and GOG.com, X-Wing and other LucasArts titles (such as the X-Wing spin-off, TIE Fighter) can now be downloaded for at least 10 dollars from the GOG website. So last Monday, after I came home from work, I immediately went on my computer to purchase X-Wing and began playing it that night. Of course, this game was difficult as hell to play without a computer joystick (it's crappy enough that my cordless mouse needs its battery replaced)...so I went to the local Best Buy store to buy a joystick yesterday. So as of right now, I've completed all but one of the Historical Missions (the only one left being B-Wing Mission 6...in which I'm flying this awesome vehicle on a sortie that involves destroying the Death Star by flying through the trench made famous in Star Wars: A New Hope and firing proton torpedoes into its exhaust port), and I'm on Mission 9 of Tour 1. That's progress for ya.
The only downside of playing X-Wing, at least with this version, is that the graphics aren't as crisp as in the original CD-ROM version. The screen on my laptop isn't as large as the one on my previous computer, so it's harder to spot incoming Imperial fighters when they're more than 2 klicks away on certain missions. Also, glitches tend to take place when I open the game where I'll have a problem calibrating the joystick, and the game would abruptly go from full-screen to a minimized window on my computer monitor...so I have to restart the game since I'm unable to make the window large again. And lastly, I never realized just how friggin' slow the Y-Wing is! It's a pain in the ass to eliminate faster craft such as TIE Fighters and Interceptors that are flying away from me, and it's slower to maneuver in battle than even the bigger B-Wing. My favorite ships to use happen to be the A- and B-Wing fighters. I'd also include the titular X-Wing here, but it's only a slight improvement on the Y-Wing in regards to combat.
So all-in-all, I'm glad that X-Wing is back! The last time I played this game was during my college days more than 10 years ago. But I'm more nostalgic about the time when I first began playing this classic simulator—which, I believe, was during the second half of 9th grade almost 20 years ago. So many awesome memories...of X-Wing, that is. High school didn't get coo for me till sophomore year. Carry on.
Tuesday, October 28, 2014
In the Spirit of Halloween...
NASA / ESA / A. Simon (Goddard Space Flight Center)
Here’s Looking at You: Spooky Shadow Gives Jupiter a Giant Eye (Press Release)
This trick that the planet is looking back at you is actually a Hubble treat: An eerie, close-up view of Jupiter, the biggest planet in our solar system. Hubble was monitoring changes in Jupiter’s immense Great Red Spot (GRS) storm on April 21, 2014, when the shadow of the Jovian moon, Ganymede, swept across the center of the storm. This gave the giant planet the uncanny appearance of having a pupil in the center of a 10,000 mile-diameter “eye.” For a moment, Jupiter “stared” back at Hubble like a one-eyed giant Cyclops.
Source: NASA.Gov
Friday, October 24, 2014
Hubble Never Ceases to Amaze...
NASA, ESA, PSI, JHU / APL, STScI / AURA
Close Encounters: Comet Siding Spring Seen Next to Mars (Press Release - October 23)
NASA’s Hubble Space Telescope has produced a unique composite image of comet Siding Spring as it made its never-before-seen close passage of a comet by Mars.
Siding Spring, officially designated Comet C/2013 A1, made its closest approach to Mars at 2:28 p.m. EDT on Oct. 19, at a distance of approximately 87,000 miles. That is about one-third of the distance between Earth and the moon. At that time, the comet and Mars were about 149 million miles from Earth.
The comet image is a composite of Hubble exposures taken between Oct. 18, 8:06 a.m. to Oct. 19, 11:17 p.m. Hubble took a separate image of Mars at 10:37 p.m. on Oct. 18.
The Mars and comet images have been added together to create a single picture to illustrate the angular separation, or distance, between the comet and Mars at closest approach. The separation is approximately 1.5 arc minutes, or one-twentieth of the angular diameter of the full moon. The background star field in this composite image is synthesized from ground-based telescope data provided by the Palomar Digital Sky Survey, which has been reprocessed to approximate Hubble’s resolution.
The solid icy comet nucleus is too small to be resolved in the Hubble picture. The comet’s bright coma, a diffuse cloud of dust enshrouding the nucleus, and a dusty tail, are clearly visible.
This is a composite image because a single exposure of the stellar background, comet Siding Spring, and Mars would be problematic. Mars actually is 10,000 times brighter than the comet, so it could not be properly exposed to show detail in the Red Planet. The comet and Mars also were moving with respect to each other and could not be imaged simultaneously in one exposure without one of the objects being motion blurred. Hubble had to be programmed to track on the comet and Mars separately in two different observations.
NASA used its extensive fleet of science assets, particularly those orbiting and roving Mars, to image and study this once-in-a-lifetime comet flyby. In preparation for the comet flyby, NASA maneuvered its Mars Odyssey orbiter, Mars Reconnaissance Orbiter (MRO), and the newest member of the Mars fleet, Mars Atmosphere and Volatile EvolutioN (MAVEN), in order to reduce the risk of impact with high-velocity dust particles coming off the comet. Other NASA space observatories also joined Hubble in observing the encounter, along with ground-based telescopes on Earth.
Siding Spring is the first comet from our solar system’s Oort Cloud to be studied up close. The Oort Cloud, well beyond the outer-most planets that surround our sun, is a spherical region of icy objects believed to be material left over from the formation of the solar system.
Source: NASA.Gov
Thursday, October 23, 2014
Photos of the Day: An Eclipse Above SoCal...
Just thought I'd share these trio of pics that I took of the partial solar eclipse that was visible over most of the continental U.S. today. These aren't as cool as the images I took back in May of 2012, but it's all good. I'm just waiting for a total solar eclipse to take place above Southern California next. That is set to happen on August 21, 2017.
Sunday, October 19, 2014
MAVEN Update (and the Amazing Adventures of Comet Siding Spring)...
Damian Peach
NASA's MAVEN Studies Passing Comet and Its Effects (Press Release)
NASA's newest orbiter at Mars, MAVEN, took precautions to avoid harm from a dust-spewing comet that flew near Mars today and is studying the flyby's effects on the Red Planet's atmosphere.
The MAVEN spacecraft -- full name Mars Atmosphere and Volatile Evolution -- reported back to Earth in good health after about three hours of precautions against a possible collision with high-velocity dust particles released by comet C/2013 A1 Siding Spring.
"We're glad the spacecraft came through, we're excited to complete our observations of how the comet affects Mars, and we're eager to get to our primary science phase," said MAVEN Principal Investigator Bruce Jakosky of the University of Colorado, Boulder.
MAVEN began orbiting Mars on Sept. 21. The opportunity to study this rare near-miss of a planet by a comet comes during the project's commissioning phase. A few weeks of instrument calibration and orbit fine-tuning remain before the start of the primary science phase. The mission will study the upper atmosphere of Mars and its interaction with the solar wind.
Comet Siding Spring hurtled past Mars today at about 125,000 mph (56 kilometers per second), coming within about 87,000 miles (139,500 kilometers) of the planet. That is equivalent to about one-third of the distance between Earth and Earth's moon. The closest approach by the comet's nucleus came at about 11:27 a.m. PDT (2:27 p.m. EDT). The period when dust from the comet was most likely to reach Mars and the orbits of spacecraft around Mars peaked about 100 minutes later.
From about 10:45 a.m. to 2 p.m. PDT (1:45 p.m. to 5:00 p.m. EDT) MAVEN kept in a defensive posture to reduce its profile relative to the direction from which the comet's high-velocity dust particles would come. In that "hunkered down" orientation, its main antenna was not facing the right way for transmitting to Earth, so communications were maintained at low data rate via a secondary antenna. Also, the mission performed a maneuver on Oct. 2 that set its orbit timing so that the spacecraft was behind Mars, relative to the possible dust flow, from about 12:53 p.m. to 1:23 p.m. PDT (3:53 p.m. to 4:23 p.m. EDT).
Downlink of data has begun from MAVEN observations of the comet and Mars' atmosphere. Some observations are designed to provide information about the composition of the gases and dust being released by the comet. Others are investigating possible interaction between material from the comet and the atmosphere of Mars.
Three NASA Mars orbiters, two Mars rovers and other assets on Earth and in space are studying comet Siding Spring. This comet is making its first visit this close to the sun from the outer solar system's Oort Cloud, so the concerted campaign of observations may yield fresh clues to our solar system's earliest days more than 4 billion years ago.
MAVEN's principal investigator is based at the University of Colorado's Laboratory for Atmospheric and Space Physics. The university provided two science instruments and leads science operations, as well as education and public outreach, for the mission. NASA's Goddard Space Flight Center in Greenbelt, Maryland, manages the MAVEN project and provided two science instruments for the mission. Lockheed Martin built the spacecraft and is responsible for mission operations. The University of California at Berkeley's Space Sciences Laboratory also provided four science instruments for the mission. NASA's Jet Propulsion Laboratory in Pasadena, California, provides navigation and Deep Space Network support, as well as the Electra telecommunications relay hardware and operations.
Source: Jet Propulsion Laboratory
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NASA
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