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The Soyuz manufacturing issue represents another significant problem for the Russian space agency’s suppliers and its quality control processes. Already, the manufacturer of Proton rockets, Khrunichev, has had several serious problems that have led to launch failures. Rogozin was recently installed as the leader of Roscosmos to try to clean up corruption and address these kinds of issues.

He has his work cut out for him.


“We want to find out the full name of who is at fault—and we will.”

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TOKYO, Sept. 6, 2018 (ANA HD/JAXA PR) — ANA HOLDINGS INC. (hereinafter ANA HD) and Japan Aerospace Exploration Agency ( JAXA ) are proud to announce the launch of “AVATAR X,” a multi-phased program to revolutionize space exploration and development using real-world Avatars (*1).

AVATAR X aims to capitalize on the growing space-based economy by accelerating development of real-world Avatars that will enable humans to remotely build camps on the Moon, support long-term space missions and further explore space from afar.

AVATAR X is part of “ANA’s AVATAR Vision (*2),” a breakthrough endeavor to advance and pioneer real-world Avatar technologies, and JAXA ‘s new research and development program “J-SPARC” ( JAXA Space Innovation through Partnership and Co-creation). Together with a growing list of public and private partners, AVATAR X hopes to catalyze new space-based businesses that will provide key services and an unprecedented level of access to space.

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Sections of cities all over the world are being demolished to meet increasing demand for transport infrastructure. The process of building new roads, harbour crossings, metro systems and light rail lines seems unending. Large-scale construction includes loss of public space, housing and backyards.

Historic suburbs, such as Sydney’s Haberfield, have suffered. And then there’s the issue of cost blow-outs and traffic gridlock. There are rumblings, too, about environmental impacts and equity of access. But there is actually one public transport option that can mitigate many of these concerns: cars.

Cable cars now grace many urban skylines, including some of the world’s most populous, congested and poorest cities, such as Colombia’s city of Medellin, but also the US city of Portland. These cities have integrated cable cars with existing transport networks. The newer versions are cheap, quick to build and solar generating. Perhaps it’s time for Australia to start looking skyward for solutions.

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Today’s advances in materials, testing capabilities, and reactor development are providing impetus for NASA to appraise Nuclear Thermal Propulsion (NTP) as an attractive 21st century option to propel human exploration missions to Mars and other deep space destinations.

Utilizing nuclear technology as an ingredient of NASA’s exploration prowess is not new. NTP research is part of the space agency’s storied history. In 1961, NASA and the former Atomic Energy Commission jointly embarked on the Nuclear Engine for Rocket Vehicle Application (NERVA) program – an effort that over several years led to the design, building, and testing of reactors and rocket engines.

Those programmatic high points spurred then-NASA Marshall Space Flight Center director and rocket pioneer, Wernher von Braun, to advocate for a proposed mission, dispatching a dozen crew members to Mars aboard two rockets. Each rocket would be propelled by three NERVA engines. As detailed by von Braun, that expeditionary crew would launch to the Red Planet in November 1981 and land on that distant world in August 1982. In presenting his visionary plan in August 1969 to a Space Task Group, von Braun explained that “although the undertaking of this mission will be a great national challenge, it represents no greater challenge than the commitment made in 1961 to land a man on the moon.”

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