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In aviation circles, the talk of the future involves phrases like “space planes” and “hypersonic atmospheric flight vehicles.” A group presently in the spotlight is from Germany; they are carrying a roadmap for low-cost space access which involves calling upon the air passenger market for fast-travel flights.

Welcome to the world of SpaceLiner, which, when fully developed, could have dramatic impact in global aerospace. The DLR Institute of Space Systems said this suborbital, hypersonic, winged passenger transport idea is under investigation at DLR-SART. (DLR is a German aerospace research agency and it evaluates complex systems of space flight. SART is Space Launcher Systems Analysis.)

SpaceLiner is a rocket-propelled intercontinental passenger transport, described by the institute as a two-stage vehicle powered by rocket propulsion.

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If cancer is predominantly a random process, then why don’t organisms with thousands of times more cells suffer more from cancer? Large species like whales and elephants generally live longer, not shorter lives, so how are they protected against the threat of cancer?

While we have a great deal more to learn when it comes to cancer biology, the general belief is that it arises first from mutation. It’s becoming clear it’s actually an incredibly complicated process, requiring a range of variable factors such as mutation, epigenetic alteration and local environment change (like inflammation). While some students may have spent sleepless nights wondering how many mutated cells they contain after learning the fallibility of our replication mechanisms, the reality is that with such an error rate we should all be ridden with cancer in childhood — but we’re not. Our canine companions sadly often succumb around their 1st decade, but humans are actually comparatively good at dealing with cancer. We live a relatively long time in the mammal kingdom for our size and even in a modern environment, it’s predominantly an age-related disease.

While evolution may have honed replication accuracy, life itself requires ‘imperfection’ to evolve. We needed those occasional errors in germ cells to allow evolution. If keeping the odd error is either preferable or essentially not worth the energy tackling when you’re dealing with tens of trillions of cells, then clearly there is more to the story than mutation. In order to maintain a multi-cellular organism for a long enough period, considering that errors are essentially inevitable, other mechanisms must be in place to remove or quarantine problematic cells.

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The Curiosity rover has snapped a brand new self-portrait and, like any good newbie selfie-taker, it’s figuring out its best angles—not only to show itself off, but also to show us something new about the Martian landscape it lives on.

This newest selfie was made, like the others, by stitching together panoramic shots from the rover’s Mars Hand Lens Imager. But by dropping to a low-camera angle and not an overhand shot like before, we’re suddenly able to see the full surrounding horizon. Essentially, we’re seeing not just Curiosity in this selfie; we’re also seeing what Curiosity sees. That view becomes even more pronounced in this second version of the selfie, this one with the horizon wrapped entirely around the robot:

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Anomaly is an unusual Christmas tale, set in the late 60’s, which tells the story of a group of people connected by the same astrological event: A frightening meteor that will enter and exit the atmosphere. It is weird and sad and hopeful and just really interesting to watch.

Anomaly is an independent short film directed by Dan DiFelice & Salomon Lightelm. The film rose up to $60,000 in its Kikstarter campaign but it looks as gorgeous as if they had spent two million. Great post production houses like The Mill and Framestore also collaborated in the project. We featured Anomaly here the same day it was released on the Internet and we are very happy to have it on the Sploid Short Film Festival.

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