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Sinai Post-Acute, Nursing and Rehab Center is ready to celebrate New Years in style! We wish all our friends and families a happy and health 2020 and look forward to celebrating the New Year with you!
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Erlab Captair 483 Smart is the 4ft (1298 mm) length Ductless Fume Hood, with AFNOR NFX 15-211 and SEFA 9 filtration efficiency standard (classes 1 and 2). The configurable filtering system can be adapted to filter gases, solvents, powders and particulates keeping the user and the laboratory protected by safely and efficiently recirculating air within the room, free from any toxic hazardous chemicals.
Built-in Smart Technology enables visual light and audio communication to indicate the status of the hood. To alert you, the light will pulse, an audio pattern will indicate if : Air Flow is Compromised, Fan Failure and Filter Breakthrough.
No ductwork cost, Less compliance cost and significantly reduce the energy cost, if compared with the ducted system. Energy consumption of the Erlab Captair 483 Smart Ductless Fume Hood is only 160 W.
2 identical molecular filters located below and above a fan/detection chamber ensuring no chemical escape when the lower layered filter reached its saturation. Upper layered filter will replace the saturated lower layered filter. Upper layer will be replaced with a new molecular filter.
I have taken @apolak's answer and turned it in to a recursive loop for all folders underneath the input folder. It will retain the directory layout of the input folder, and you can set a max-depth for it to recurse through. The output directory must not be a child of the input directory or it will error, to stop accidental infinite recursion. It should also be fine with spaces in filenames and paths.
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Cell structureand working mechanisms of various decoupled waterelectrolyzers. (a) Two-step, three-electrode water electrolysis witha frequent on/off switch. (b) Two-cell, four-electrode water electrolysis.(c) Our proposed pH-universal two-electrode electrolytic cell forthe decoupling of H2 and O2 generation. Theelectrolytes can be acidic, neutral, and alkaline solutions.
Electrochemical performance of the scaled-up alkaline-CDWE andits practical demonstration. (a) Digital photos and SEM images ofthe NiMoCo electrode (5 10 cm2) and carbon electrode(5 10 cm2). (b) Digital photo of the scaled-up alkaline-CDWE(10 10 4.8 cm3). (c) Voltage curves of theH2/O2 generation cycle at a current of 1 A withan operational time of 720 s for each cycle. The inset is the correspondingphoto of H2 generation at a current of 1 A. (d) Photo profileof the HER of photovoltaic-powered water electrolysis under naturalsunlight. The rated power, voltage, and current of each solar panelare 1.2 W, 3 V, and 400 mA, respectively.
This research work was supportedby startup fundsfrom the USTC (Grant No. KY2060000150) and the Fundamental ResearchFunds for the Central Universities (WK2060000040). We thank the supportfrom the USTC Center for Micro and Nanoscale Research and Fabrication.
CRediT: Zhengxin Zhu data curation, investigation, methodology, projectadministration, writing-original draft, writing-review & editing; Taoli Jiang visualization; Jifei Sun visualization; Zaichun Liu visualization; Zehui Xie visualization; Shuang Liu visualization; Yahan Meng visualization; Qia Peng visualization; Weiping Wang visualization; Hongxu Liu visualization; Yuan Yuan visualization; Ke Li visualization; Wei Chen funding acquisition,project administration, writing-original draft, writing-review &editing.
An important aspect of environmental engineering is the prediction of the behavior of a foreign substance introduced into the environment. In environmental fluid mechanics a knowledge of the environmental conditions (the transporting system) is generally assumed and the problem is that of predicting the behavior of an ensemble of contaminated (marked) fluid particles released into the transporting system. The fundamental idea behind the use of tracers for the determination of transport is essentially the inverse problem, i. e., one deliberately marks a finite number of particles within the transporting system with the expectation of gaining information about the characteristics of the transporting system itself by monitoring the behavior of the marked particles (the tracers). 59ce067264
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