Q: How do I know what hinges I need? A: Hinge measurements = overlay measurements. Follow our easy How-To videos to make sure your overlay measurements are accurate, and you’re good to go.
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Free body force diagrams are deceptively simple. But they really help understanding what is going on. Only ever draw the forces on ONE object. For more hint and tips go to my FREE STUFF page: https://lnkd.in/dXeDxCB7
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For audiophiles, big changes occur on very small scales. For example; hundredths of a meter for speaker toe-in, thousandths of a meter for cartridge vertical tracking angle, even down to a few billionths of a meter for quieting structural resonances and vibrations, and about one billionth for extracting the smallest perceivable groove deflection on an LP. Drawing courtesy of WallyTools.
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Improving color uniformity and the ambient contrast ratio of LEDs through the scattering-enhanced magnetic manipulation bilayered structure https://lnkd.in/eyZ4BC2N
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Whenever the differential pair makes a layer transition, place stitching ground via. The Via size and distance depend, too. But not too much. The closer the via is, the more capacitance is created. The most important is to place the via whenever the transition area is. My number one rule is to place the stitching Via immediately when I place nice and symmetrical differential pair Vias. Yes, there is another possibility to place stitching vias around. For instance, 4 of them. The biggest disadvantage is that 4 stitching Vias take quite a big area. And drill the PCB too much. It means there is less space for routing in the inner layers. It all depends on the particular board. Do you have plenty of differential pairs? Place single stitching Via. That's my point. Don't forget to place them! ?? If you like my work and would like to transform your ideas into an actual product, ???????? ???????? ???? ???????? ???? ?? ?????????????? here on LinkedIn or ???? ??-???????? to the address in the profile?? ???? ?????? ???????? ???? ?????? ???????? ?????????? ???????? ????? ?? Ring it on my Profile #showyourwork #hwidvorakinfo #whoisjohngalt
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Tedious Tuesday brings us a yawn-inducing, "simple", listric fault with rollover, part of the hanging-wall showing simple rotation, part simple translation and a transition between them yeah...? But, damn, this cover sequence is very "highly" layered with alternating blue (very weak, very low friction) and yellow packages (frictional-cohesive, "strong"). Top image just the boring geometry, bottom the same model but coloured by the total max. shear strain. A pretty-high resolution 2D discrete element model, scales etc in the righthand panel, total displacement 400m. enjoy!
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Our shaking table has been upgraded with a second actuator! We can now apply biaxial excitations in the horizontal plane. The specifications are: - Table size: 3.0 x 3.0 m - Max. specimen mass: 10 t - Max. overturning moment: 30 m t - Max. actuator stroke: +/- 250 mm - Max. table velocity: +/- 1 m/s at rated load - Max. table acceleration: +/- 1g at rated load - Test frequency: 0 to 50 Hz
Biaxial shaking table
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