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Archive for the ‘space travel’ category: Page 422

Jan 25, 2018

How To Launch A Space Startup

Posted by in categories: policy, space travel

New technology, investment, and policy are helping to boost smaller companies like Rocket Lab into the stratosphere. Their founders share some advice.

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Jan 24, 2018

SpaceX fires up powerful new Falcon Heavy rocket

Posted by in category: space travel

SpaceX test-fires 27 engines in its powerful new Falcon Heavy rocket in key milestone.

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Jan 18, 2018

This is the darkest material on Earth

Posted by in categories: materials, space travel

And it’s changing everything from art to space exploration. http://cnn.it/2hPFph3

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Jan 17, 2018

Major gravity experiment recreated aboard a satellite

Posted by in category: space travel

A spacecraft was used to “drop” two objects and test their rate of fall. The new, super-precise findings confirm objects will fall at the same rate (in the absence of air resistance) — and that when it comes defining the effects of gravity, Einstein got it right.

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Jan 14, 2018

Skycorp planning to make space industries

Posted by in category: space travel

Dennis Wingo sees metals mining, communication stations and telescopes on the moon. The combination of industries will make moon development viable.

The moon is largely made up of metal oxides that could yield new supplies of platinum — perhaps enough to drive prices for the precious metal down to $300 from $1,400 an ounce today. Processing metals on the moon does not require chemicals. Different levels of heat can be used to make different metals. Cheaper platinum will make fuel cells that are so much more effective than combustion engines.

Skycorp’s mission is to fundamentally transform the spacecraft industry, utilizing orbital assembly process, electric propulsion, and modular construction, to create applications unthinkable before.

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Jan 12, 2018

NASA X-Ray Navigation System Aims to Be a Galactic GPS for Space Exploration

Posted by in category: space travel

The navigation system uses x-ray light emitted from pulsars the same way global positioning systems use atomic clocks, which could eliminate the need for costly ground-based guidance systems.

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Jan 11, 2018

Astronomers Detect Almond-Scented Molecule That Will Help Solve Interstellar Radiation Mystery

Posted by in categories: particle physics, space travel

There’s an unidentified source of infrared throughout the universe. By looking at the specific wavelengths of the light, scientists think that come from carbon—but not just any carbon, a special kind where the atoms are arranged in multiple hexagonal rings. No one has been able to spot one of these multi-ring “polycyclic aromatic hydrocarbons,” or PAHs in space—even though the infrared emissions imply that these PAHs should make up 10 percent of the universe’s carbon. Now, scientists have found a new hint.

A team of researchers in the United States and Russia are now reporting spotting a special single-carbon-ring-containing molecule, called benzonitrile, with a radio telescope in a part of space called the Taurus Molecular Cloud-1. Benzonitrile only has one hexagonal ring of carbon, so it’s not a poly cyclic aromatic hydrocarbon itself. But it could be a potential precursor and could help explain the mysterious radiation.

Before you even ask, yes, this “aromatic” benzonitrile molecule has a smell. “I can tell you from personal experience it smells like almonds,” study first author Brett McGuire from the National Radio Astronomy Observatory told Gizmodo, who has encountered the molecule in the lab.

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Jan 9, 2018

Return to the MOON Photo

Posted by in categories: futurism, space travel

This op-ed originally appeared in the Dec. 12, 2017 of SpaceNews magazine.

America’s space program has long held a special place in the public’s imagination, but NASA missions are limited by budget constraints. NASA must use its funding wisely to implement balanced, cost-efficient programs to develop enabling technologies, such as technologies to power future NASA missions. Speaking as the former project manager of three successful missions — Voyager, Galileo, and Cassini — and the canceled Prometheus-Icy Moons Orbiter, I have a unique perspective to share.

http://spacenews.com/op-ed-an-argument-for-space-fission-reactors/

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Jan 5, 2018

Sorry Sci-Fi Fans, Real Wars in Space Not the Stuff of Hollywood

Posted by in categories: law, military, space travel

WASHINGTON — The public’s idea of a war in space is almost entirely a product of Hollywood fantasy: Interstellar empires battling to conquer the cosmos, spaceships going head to head in pitched dogfights.

The reality of how nations will fight in space is much duller and blander. And some of the key players in these conflicts will be hackers and lawyers.

Savvy space warriors like Russia’s military already are giving us a taste of the future. They are jamming GPS navigation signals, electronically disrupting satellite communications links and sensors in space. Not quite star wars. [The Most Dangerous Space Weapons Concepts Ever].

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Dec 31, 2017

Gallium nitride processor: Next-generation technology for space exploration

Posted by in categories: computing, engineering, space travel

A material known as gallium nitride (GaN), poised to become the next semiconductor for power electronics, could also be essential for various space applications. Yuji Zhao, an expert in electrical and computer engineering at Arizona State University (ASU), plans to develop the first ever processor from gallium nitride, which could revolutionize future space exploration missions.

Gallium nitride is a semiconductor compound commonly used in light-emitting diodes (LEDs). The material has the ability to conduct electrons more than 1,000 times more efficiently than silicon. It outstrips silicon in speed, temperature, power handling, and is expected to replace it when silicon-based devices will reach their limits.

Besides LEDs, GaN can be used in the production of semiconductor power devices as well as RF components. Now, Yuji Zhao aims to use this material to develop a high-temperature microprocessor for space applications. He received a three-year $750,000 grant from NASA’s Hot Operating Temperature Technology (HOTTech) program for his project.

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