A crummy commercial? Son of a bitch! :stuck_out_tongue_winking_eye:LXVI CI XXXII CXV CXVII CXIV CI XXXII CXVI CXI XXXII C CXIV CV CX CVII XXXII CXXI CXI CXVII CXIV XXXII LXXIX CXVIII XCVII CVIII CXVI CV CX CI XLVI
A crummy commercial? Son of a bitch! :stuck_out_tongue_winking_eye:LXVI CI XXXII CXV CXVII CXIV CI XXXII CXVI CXI XXXII C CXIV CV CX CVII XXXII CXXI CXI CXVII CXIV XXXII LXXIX CXVIII XCVII CVIII CXVI CV CX CI XLVI
I am both intrigued at the possibilities of this allowing beer consumption when not normally possible and missing out on the wonderful refreshing path of drinking a beer.Beer in pill form
Beer pills that dissolve in water. Problem = solved.I am both intrigued at the possibilities of this allowing beer consumption when not normally possible and missing out on the wonderful refreshing path of drinking a beer.
Or you could dissolve them in beer so your beer is 200% beer.Beer pills that dissolve in water. Problem = solved.
And then use it to wash down one of the non-dissolving ones. That way, you'd have 300% beer.Or you could dissolve them in beer so your beer is 200% beer.
your new avatar reminds me of somethingOr you could dissolve them in beer so your beer is 200% beer.
LOL, I felt like getting a new Avatar and saw that looking for space related things. That would be so awesome to pee over the horizon in a low gravity environment.your new avatar reminds me of something
someone wrote on a stop sign on my way to grade school:
if you can pee above this line
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join the fire department
Well, you can't just leave use hanging, what's the G level?Because of you I had to look up the flow rates of the average healthy male to see at what gravity one would be able to pee over the horizon.
But even with a fixed flow rate couldn't velocity vary with urethra bore size? With the same flow rate, a large urethra will have a lower velocity than a smaller one since you have more area to fit liquid through per second.Its been a long time since I've had to do any math beyond simple accounting.
Uroflowmetry says the average flow rate for males 14-45 is between 12.5 and 30 mL/s (21 mL/sec avg) with speed values between 235 and 325 cm/s (280 cm/s avg). Since we don't care about establishing an orbit just reaching the horizon and the size and density of an objects affects its gravitational pull. The mean density of C class asteroids is 1.38 g/cm^3 (most common asteroid type). g=G*M/r^2 works for calculating surface gravity. volume of a sphere is V = 4/3πr^3 Density is d = m/v So we end up with g = G*(4/3πr^3)*d/r^2 or g/G*(4/3π)*d = r
With a release velocity of 3.25 m/s at an Angle of 45 degrees it will travel 5.281km in 38 mins on an asteroid with a radius of 5.187 and a gravity of 0.002 m/s^2