@queentiffy
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Origami Around
hello vonnie
wallacepolsom
we're not kids anymore.

ellievsbear
Show & Tell

⁂
Xuebing Du

roma★
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Product Placement

Kaledo Art

tannertan36
Today's Document
NASA
Three Goblin Art
Sweet Seals For You, Always

#extradirty
Stranger Things
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@sovereigndecree
@queentiffy
Reblog In 5 seconds for good luck
websurfer1994:
me: *overestimates the length of a yellow light and completely 100% runs a red light* me while driving away: I AM A BEACON OF SIN I AM A BEACON OF SIN I AM A BEACON OF SIN I AM A BEACON OF SIN I AM A BEACON OF SIN I AM A BEACON OF SIN I AM A BEACON OF SIN I
“Do you follow current events?”
Hell yea I do
What about you, baby? What’s it going to be? Loyalty to your country, or loyalty to me? Your country, or your old mentor? The mission, or your beliefs? Your duty to your unit, or your personal feelings? You don’t know the truth yet. But sooner or later you’ll have to choose
You are above even The Baby.
I hereby award you the title of Big Baby.
You are a true infant.
finally a vine to show my aesthetic🚜
real country boy hours who up clik that darn tootin’ hornswagglin like!
This is wrong on so many levels.
Oh my god
The worst thing ever just happened to me
?? what happened
I stepped on a super crunchy looking leaf and it didn’t even make a crunch noise
IBM solar collector magnifies sun by 2,000x (without cooking itself), costs 3x less than similar systems
Cleverly combining solar PV with solar thermal to reach 80% conversion efficiency
Concentrating the sun’s ray onto solar photovoltaic (PV) modules requires walking the fine line between optimizing power output and not literally melting your very expensive super-high-efficiency solar cells. A team led by IBM Research seems to have found a way to push back the line. They have created a High Concentration PhotoVoltaic Thermal (HCPVT) system that is capable of concentrating the power of 2,000 suns onto hundreds of triple junction photovoltaic chips measuring a single square centimeter each (they even claim to be able to keep temperatures safe up to 5,000x). The trick is that each solar PV cell is cooled using technology developed for supercomputers; microchannels inspired by blood vessels but only a few tens of micrometers in width pipe liquid coolant in and extract heat “10 times more effective than with passive air cooling.”
Waste not
The beauty is that this heat is not just thrown away. This system gets useful work out of it. So while the PV modules are 30%+ efficient at converting the sun’s light into electricity, another 50% of the sun’s energy is captured as heat and can then be used to do things like thermal water desalination and adsorption cooling. This means that the system is capable of converting around 80% of the collected solar energy into useable energy (though the electricity is of course more useful than the thermal energy).
A single collector can produce about 25 kilowatts of electricity. Below is a closeup of some PV cells where the light is being concentrated. Notice the piping to bring the liquid coolant.
“The design of the system is elegantly simple,” said Andrea Pedretti , chief technology officer at Airlight Energy. “We replace expensive steel and glass with low cost concrete and simple pressurized metalized foils. The small high-tech components, in particular the microchannel coolers and the molds, can be manufactured in Switzerland with the remaining construction and assembly done in the region of the installation. This leads to a win-win situation where the system is cost competitive and jobs are created in both regions.”