Trump signs defense bill which includes Space Force

It’s official: Trump today signed the annual NDAA defense authorization bill which also includes the creation of a new military branch dubbed the Space Force.

Whether this new branch will function to make the U.S.’s space military more effective, or merely act as a foundation for a bureaucracy in Washington requiring lots of useless jobs and lots of wasteful spending remains at this moment an unknown.

My instincts favor the latter, based on a lifetime of watching how Washington operates. Every time in the past half century Congress has created a new agency that was supposed to make the federal government more efficient it has instead accomplished the exact opposite. I see no reason at this moment to expect otherwise.

Note that for the immediate future not much is going to change, as this new branch will be operating initially from within the Air Force, where space operations have been based for decades anyway.

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Buried glaciers flowing off of Martian mesa

Glacial flow off of mesa
Click for full image.

Cool image time! Planetary geologists now think that the mid-latitudes of Mars contain many buried and inactive glaciers, formed several million years ago when the planet’s inclination was more than 50 degrees [pdf], rather than the 25 degrees it is now. At that time the mid-latitudes were actually colder than the poles, and water would sublimate from the poles to the colder mid-latitudes to pile up as snow and glaciers.

With today’s 25 degree inclination those mid-latitude glaciers are inactive, and have been so for several million years. It might even be that Mars’ water is beginning a shift back to the poles, but this is uncertain. If anything the planet is presently in a balance, and won’t start transferring water back to the poles until its inclination drops closer to zero.

The image to the right, taken by the high resolution camera on Mars Reconnaissance Orbiter (MRO) on September 23, 2019, is of one of those glacial flows, coming off a mesa in a region called Protonilus Mensae, located in the transition zone between the southern highlands and the northern lowland plains where an intermittent ocean might have once existed.

Much of the geology of Protonilus Mensae is chaos terrain, places where the surface has eroded along angled fissures to form many mesas. The overview map below focuses in on the particular mesa where this flow is located. The red boxes indicate all the MRO images taken of this mesa, with the image above indicated by the black dot.
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UK parliament moves forward on Brexit

The parliament of the United Kingdom today voted to finally leave the European Union no later than January 31, as per the withdrawal agreement that prime minister Boris Johnson negotiated in October.

Both Northern Ireland and Scotland had voted strongly against leaving the EU. Those parts of the United Kingdom now face a choice. They can choose to leave the United Kingdom to join the EU, or stay with the UK.

I suspect they will pick the former. I believe the latter is the smarter choice, as they have far more in common with England than they do with Europe.

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Starliner launch fails, spacecraft to return to Earth

After being successfully placed in a preliminary orbit by ULA’s Atlas 5 rocket early this morning, Boeing’s Starliner capsule failed to reach its required orbit for docking with ISS when its own rocket engines did not fire properly at the right time.

The orbit it is in is stable, and the spacecraft is undamaged. Engineers now plan to bring it back to Earth on Sunday, landing at White Sands, New Mexico.

It appears some software issue had the capsule fire its own rockets either at the wrong time or for too short a time. The spacecraft was then in the wrong orbit, and needed to use too much fuel to correct this issue, making it impossible to dock with ISS.

More information here:

However, for reasons Boeing engineers do not yet understand, Starlinerโ€™s Mission Event Timer clock malfunctioned, causing the vehicle to think it was at a different point in the mission and at a different time in its mission that it actually was.

…This resulted in Starlinerโ€™s Reaction Control System thinking the Orbit Insertion Burn was underway and executing a series of burns to keep the vehicle oriented in the insertion burn attitude; however, the Orbit Insertion Burn was not actually occurring.

When mission controllers realized the issue, they sent manual commands to Starliner to perform an Orbit Insertion Burn in a backup window that came roughly eight minutes after the planned maneuver. However, a known and brief gap in NASA satellite communications caused a further delay.

By the time Starliner was finally able to burn its engines and get into a stable orbit, it had burned 25% more propellant than anticipated.

Boeing is certainly not having a good year. First it has had to shut down production on its new 737-Max airplane due to several crashes caused by software issues. Next its SLS rocket for NASA has had endless cost overruns and delays. Now Starliner fails during its first launch.

For ULA, however, the Atlas 5 rocket performed exactly as planned, so this launch gets listed as a success. They have now completed 5 launches this year.

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Megadunes in the giant canyon of Mars’ north polar icecap

Martian megadunes at the beginning of summer
Click for full image.

Cool image time! The photo to the right, cropped and reduced to post here, was taken by the high resolution camera of Mars Reconnaissance Orbiter (MRO) on September 15, 2019, right at the beginning of summer at the north polar icecap of Mars.

Without a larger context it is very difficult to figure out what this image shows. The image title, “Seasonal Changes of Chasma Boreale Megadunes,” gives us some basic clues. The streaks of black and dark grey are giant dunes, with this image showing their trailing edge. The darkest streaks are likely places where the thin winter mantle of dry ice has begun to sublimate away with the coming of spring, exposing the darker sand dunes below. The surrounding flat white areas are either the permanent water ice of the icecap or the surface of the lowland northern plains that surround that icecap.

The montage below shows a series of monitoring photos, beginning in 2018 during the last Martian summer and continuing through the start and middle of the spring and ending with the photo above. It shows the seasonal evolution of that upper carbon dioxide dry ice mantle, which reveals the darker dunes below as that dry ice mantle sublimates away.
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Yutu-2 sets new longevity record for lunar rover

China’s Yutu-2 lunar rover has now set a new longevity record for any rover on the Moon, beating the 10.5 month record set by the Soviet Union’s Lunokhod 1 rover in 1970-1971.

Lunokhod 1 traveled about 6.5 miles, or about 34,000 feet, during its operation. Chinese engineers have been more cautious, moving Yutu-2 only about 1,132 feet in the same time period.

The Chinese rover is still operating, though relatively little data has been released from it. At the moment it has been placed in its hibernation mode as it makes it through its twelfth lunar night.

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Mars 2020 rover takes first and last test drive

Engineers on December 17 gave the Mars 2020 rover its first and last test drive before it is launched in July 2020.

In a 10-plus-hour marathon on Tuesday that demonstrated all the systems working in concert, the rover steered, turned and drove in 3-foot (1-meter) increments over small ramps covered with special static-control mats. Since these systems performed well under Earth’s gravity, engineers expect them to perform well under Mars’ gravity, which is only three-eighths as strong. The rover was also able to gather data with the Radar Imager for Mars’ Subsurface Experiment (RIMFAX).

I have embedded a short video showing a tiny part of that driving test below the fold. This is the last and only time we will ever be able to see the rover move. Once it is on Mars in Jezero Crater there will be no third party cameras to record its travels.
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Rocket Lab begins construction on 2nd New Zealand launchpad

Capitalism in space: Rocket Lab has begun construction on a second launchpad at its New Zealand spaceport.

The new pad, known as Launch Complex 1 Pad B, is due for completion in late 2020. Rocket Lab says LC-1B will support increased launch frequency; enable back-to-back missions within days; and ensure that a pad is always ready to support rapid call-up launch. The existing pad at New Zealandโ€™s Launch Complex 1 will be LC-1A.

This new pad will give Rocket Lab three launchpads total, two in New Zealand and one in Virginia, and when all are operational the company says it will be able to launch more than 130 times per year. That’s more launches than the entire world routinely launches.

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