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the $800 price tag seems reasonable if you compare the 1982 introductory price of the Commodore 64 at $595 (approx. $1,500 today)[0]. Most parents were buying t
by btreesOfSpring 11y ago
the $800 price tag seems reasonable if you compare the 1982 introductory price of the Commodore 64 at $595 (approx. $1,500 today)[0]. Most parents were buying the c64 or a similarly priced computer for their children's education and entertainment. From that POV the pricing for this biology kit, if you kids are scientifically enthusiastic, seems reasonable.
[0] https://en.wikipedia.org/wiki/Commodore_64 https://en.wikipedia.org/wiki/Commodore_64
- searine 11y agoGive me 200 bucks and an ebay account and I can buy a lab that will run circles around this crippled mess. Kids want to be empowered, not patronized. The intended user for a kit like this would be a 12-16 year old. At that age they are old enough to use real tools. Buy the kid an incubator, glassware, and a pcr machine. The commodore is a great example because you could actually program things on it. Things not listed in the instruction manual. Kids will learn if you give them the tools to do real biology, not playskool biology.
- haliax 11y ago> Give me 200 bucks and an ebay account and I can buy a lab that will run circles around this crippled mess. Could you go into more detail about this? I'd love to know how to build a lab on the cheap. Can you get genetic material for bacterial transformation within a K-12 budget as well?
- searine 11y ago> Can you get genetic material for bacterial transformation within a K-12 budget as well? For a standard bacterial transformation experiment you'll need : An incubator, a pcr machine, taq, primers, pcr master mix, a centrifuge, petri plates, LB broth, agar, ecoli, a gel box. Honestly, half of this you could get as cast-offs from your local university for free. Universities are all about supporting K-12 science, you just have to ask. Hardware is going to run you about 200-300 bucks. The real expense here is the used PCR machine. The incubator, and the centrifuge can be home-made or repurposed (ie a hand crank centrifuge, and a chicken egg incubator). The rest of the cost is just reagents. The two big things you need to make yourself are Taq, and ecoli competent cells. Both of these are fun experiments in themselves are can be made for 50-100 bucks (resulting in years worth of reagents). After that it's just buying primers (10-20 bucks a pop) and refills on reagents like agarose and LB which are cheap. DIY lab doesn't have to be expensive if you are willing to sacrifice a little bit of time.
- ohblahitsme 11y agoTrue. The problem with DIY labs I think is the barrier to entry. It's really hard to start from nothing to having a DIY lab where you have some idea of what's going on. Maybe an online lab (videos?) is the way to go? My microbio and biotech labs in college did serve me pretty well as far as knowing what the bands in my gel mean, etc.
- dekhn 11y agoI just went through the exercise of outfitting my home lab, and I think $200-300 is a bit low. Most of the stuff on ebay that goes super-cheap is just broken. You'll spend a lot of time debugging and fixing stuff that is unrelated to your experiment. For the centrifuge, I'd do 3d-printed rotor on a dremel (https://diybio.org/tag/3d-printing/ https://diybio.org/tag/3d-printing/) I use this already to spin down cells and is... cheap and not very safe. You didn't mention an autoclave- that's needed to make sure all your buffers and equipment aren't contaminated.
- searine 11y ago> I think $200-300 is a bit low I agree, but you could could get a few basic experiments going for that much. Much much more if you spent 800, like you would on this kit. >You didn't mention an autoclave Good point. The only stuff you would really HAVE to autoclave would be media, and you can use an off the shelf pressure cooker for that.
- 11y ago