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No they don't. They can spread that way but not repilicateYes... don't they replicate by proxy?![]()
So then, what do you suggest viruses be classified as? Ribosome puppets?![]()
RNA molecules in a protein shell.
They can't even exist on their own, they rely on actual life to multiply.
Thus, presence of viruses on Mars would imply presence of life currently or at some point in the past (viruses can "survive" pretty much indefinitely, which is another thing that separates them from life as it is usually defined).
Which is not all they are, they do some pretty interesting stuff for some proteins and RNA molecules...
Indeed, though I fail to see how that makes something any more or less alive, considering that pretty much any organism is reliant on other organisms for one reason or another- usually nutrition and respiration.
RNA molecules and proteins that do interesting things are still RNA molecules and proteins.
Neither of which viruses are capable of.
Hmm...I never seriously thought of using a spaceborne coil to protect and retain the atmosphere. Is it plausible? The huge magnitude of energy needed emanating from a single Lagrange point sounds frightening to me, but then again, I don't really know the science involved.T.Neo said:I believe one of the fancy atmosphere plot calculators someone posted here once showed Mars as being able to retain a nitrogen and oxygen atmosphere (good) but not water vapour (bad). But humans are not stupid, and we can be proactive about it, especially over such long timescales... setting up atmospheric UV shields (such as an ozone layer, if possible) or even space based shields might prove effective, and magnetic shielding of the atmosphere (perhaps by a coil at the L1 point) would help to reduce losses. But that is most definitely a solution for further in the future; we will certainly have a good deal of time, before Mars starts to lose atmosphere and water to space.
Hmm...I never seriously thought of using a spaceborne coil to protect and retain the atmosphere. Is it plausible? The huge magnitude of energy needed emanating from a single Lagrange point sounds frightening to me, but then again, I don't really know the science involved.
So, might such a thing possibly fall into the range of not-magic? :hmm:
1. Create an environment that low-level life (e.g., bacteria, algae) could survive, perhaps so that they could form the bottom layer of a food chain, or could have other effects on the environment (e.g., adding oxygen to the atmosphere, creating nutrient-rich soil).
2. Create an environment that human-edible plants could survive/thrive, to provide food for colonists (presuming that the colonists would otherwise rely on their own artificial habitats).
3. Create an atmosphere that humans could live and work in without bulky pressure suits, but still using breathing apparatus and temperature-control garments.
4. Create an atmosphere that can be breathed by humans and animals, similar to cold high altitude habitable zones on earth.
5. Create a "shirt-sleeve" environment that humans could operate in as we do on earth.
Supposing some set of steps along these lines is the requirement, is it feasible/likely/desirable that even step 1 can be achieved with foreseeable technology (i.e., chemical rockets for transport, fusion energy, genetic engineering, maybe even re-engineering humans to better fit the alien environments)?