Oh, and that plastic looks quite good too! Our ‘Aurora Blue’ color variant had a hybrid matte-glossy finish, with vertical streaks of light moving horizontally across the back panel when the smartphone was moved under a source of light. As eye-catching as this finish makes the 8C, it unfortunately also makes the smartphone catch a lot of smudges and fingerprints. If you don’t want that, I suggest you slap on the TPU clear case that comes in the box.
Until the mid-1970s, fine dining was associated with ornate, plush fussiness, not stark minimalism. In her book Smart Casual: The Transformation of Gourmet Restaurant Style in America, the design historian Alison Pearlman attributes this choice to the influence of top-rated French restaurants such as Manhattan’s Le Pavillon. Pearlman writes of the decor: “Abundant flower displays, chandeliers and/or sconces, velvet curtains and/or damask wall treatments, tablecloths, and formally structured place settings of fine china and crystal were still typical.” Those choices produced a different acoustic environment: “Sound levels were low enough to magnify not only the tink-tink of glasses and silver but also the manners faux pas.”
Market segment by Application, split into Closet, Ceiling, Siding, Interior and Exterior Wall, Storage Rack, Others, along with their consumption (sales), market share and growth rate.
Toast has been producing laser-cut wood covers for phones for some time now, and it’s pretty much the only company that does so. However, I’ve never actually tried one – until now. I was sent a cover in the standard wood finish with the Triangles design. Though it’s definitely something that nobody else on the street will have, the cons outweigh the pros (for me, at least).
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Features: This spectacular beach home enjoys a prime location on the peninsula with the beach on one side and private creekside dock on the other. Masterful craftsmanship and high-end finishes grace this five- to six-bedroom home featuring a library, a great room, a family room, a gym and a dramatic master suite with a private deck and a balcony.
In general, a polycarbonate helmet shell will be heavier than a composite shell. But a polycarbonate shell can also take quite a beating, as you will see in the Part 2 video, while a composite shell is usually destroyed in a crash.
Cutouts are pretty good – the fingerprint sensor is perfectly accessible, the camera isn’t blocked, and there’s adequate space for a USB-C cable on the bottom as long as it’s not massive. The lip is adequate, though a glass screen protector might end up being thicker than it. The volume buttons are tactile, if a bit too recessed. The power button, however, ruins the whole case for me. UAG chose to put a flap about twice as long as the actual power button, and it’s hinged in the center. That means that you have to press directly on the center of the button to be sure that it’ll turn your screen on and off. Press too far up or down, and the button simply won’t activate unless you push really, really hard. It’s an infuriating design, and I’d say that about 50% of the time I press the power button, I’m greeted with nothing. The case itself is also harder than it should be to install and remove.
Lightweight magnesium alloys are used to make the front-end carrier and cross-car beam, while the tailgate is made from advanced composite materials.
For the rest of us, Nanoleaf Canvas lights are a series of interconnecting square panels with LEDs running through the panels. These squares connect with a set of tabs that insert into every side of the square, so you can assemble the light panels in any pattern you want. As long as all of the panels are connected by one of these special tabs, you’re good to go. The power cord is made from one of these tabs, so you can insert it into any of the panels and power the entire array. Nanoleaf says Canvas supports up to 256 panels right now, but you’d need multiple power cords to drive that many panels. Fortunately, the cord is very easy to hide, so you can set them up basically anywhere.
Jobs’s taste for merciless criticism was notorious; Ive recalled that, years ago, after seeing colleagues crushed, he protested. Jobs replied, “Why would you be vague?,” arguing that ambiguity was a form of selfishness: “You don’t care about how they feel! You’re being vain, you want them to like you.” Ive was furious, but came to agree. “It’s really demeaning to think that, in this deep desire to be liked, you’ve compromised giving clear, unambiguous feedback,” he said. He lamented that there were “so many anecdotes” about Jobs’s acerbity: “His intention, and motivation, wasn’t to be hurtful.”
Each of the fabricated surfaces has been characterized during pool boiling of saturated water at atmospheric conditions using a custom built experimental apparatus. The complete details of the apparatus, testing procedures, and experimental uncertainty can be found in the Methods Section as well as prior publications14,19. Briefly, each surface was soldered to an insulated copper heater block and submerged in a bath of saturated water. The heat flux delivered to the surface, q”, is periodically increased in small increments and the system is left to reach thermal equilibrium, typically 10–20 minutes. After this the surface temperature and heat flux are recorded, and the process is repeated up until the CHF is reached. CHF is taken as the highest stable heat flux prior to the uncontrollable increase in surface temperature associated with dry-out. The average wall temperature at the surface of the sample, , is measured using a thermocouple placed at the top of the heater block, and accounts for the various thermal resistances between this thermocouple and the surface. These include the resistances across the solder interface and bulk copper14,19, as well as the resistance across the composite copper-epoxy region near the surface of the sample. While the embedded epoxy produces in-plane temperature variations on the surface, it does not greatly impact the overall thermal resistance of the sample itself. For the extremely thin samples tested in this work (1 mm thickness), the increase in overall thermal resistance of the substrate was ~6% for the N = 4 cm−1 design. For a more realistic wall thickness of 1/4 inch (6.35 mm), the increase in thermal resistance associated with adding embedded epoxy divisions drops to less than 1%.
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