The note that it's an old star makes me worry though. If they're older then us, and habitable, were they inhabited? Our current era is a few hundred years of real, directed technological development. A few thousands years either side of that and who knows what we'd be looking at, but you imagine that - hopefully - the general progression of technology is forward. So if they were inhabited, what happened to them? Are…
The note that it's an old star makes me worry though. If they're older than us, and habitable, were they inhabited? Many dwarf stars have more solar flares than our sun, while their planets are closer. Teegarden's star is supposed to be very calm right now. I have no idea if that is likely to be true over most of the past 8 billion years. The amount of water they gather may be smaller, and their closer planets may no…
I'm not any sort of biologist or chemist, so somebody please correct me if I'm wrong, but...
If you specifically meant photosynthesis by terran chlorophyll, then yes, I suppose it would be less effective. However, I could imagine photosynthetic life to evolve under those conditions that uses some other compound to capture and convert the energy.
Also to consider is the amount of radiation (light, etc.) available on the surface, which can be figured as a formula of the radiation emitted by the sun, distance from the sun to the planet, and attenuation of radiation by the atmosphere. Much of the light (and other energy) emitted by a sun does not reach the surface of a planet with an atmosphere. The particulars are, of course, dependent on the atmospheric composition, but generally I would expect infrared light, with longer wavelengths than visible light, to better penetrate the atmosphere and be more available to life on the surface.