Showing 141 - 160 results of 1,723 for search '((pair OR (fabry OR air)) OR ((farm OR (arm OR form)) OR (arms OR aims))) 40', query time: 0.17s Refine Results
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    A compact water window X-ray source based on inverse Compton scattering by Musat, V, Burrows, PN, Doebert, S, Granados, E, Herrador, J, Latina, A, Malyzhenkov, A

    Published 2024
    “…X-rays in the water window (2.33 nm to 4.40 nm wavelength) can be used to provide high quality images of wet biological samples. …”
    Conference item
  6. 146

    Polyoxometalates crystal growth, crystal structure, characterization and photocatalytic activities by Ren, Jie

    Published 2013
    “…The synthesized chemicals were controlled to form micellar POMs and applied for catalysis the wet air oxidation of phenol under ambient conditions. …”
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    Final Year Project (FYP)
  7. 147

    Artificial intelligence model for monitoring biomass growth in semi-batch Chlorella vulgaris cultivation by Peter, Angela Paul, Chew, Kit Wayne, Pandey, Ashok, Lau, Sie Yon, Rajendran, Saravanan, Ting, Huong Yong, Munawaroh, Heli Siti Halimatul, Phuong, Nguyen Van, Show, Pau Loke

    Published 2022
    “…As compared to all other culture ratio combinations, the mixing ratio of recycled medium to fresh medium is at 40 % (40RB) combination yielded the greatest biomass growth (4.52 g/L), lipid (317.40 mg/g), protein (280.57 mg/g), and carbohydrate (451.37 mg/g) content. …”
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    Journal Article
  8. 148

    Modeling and optimization of ACMV systems for energy efficient smart buildings by Zhai, Deqing

    Published 2019
    “…Heating, ventilation and air-conditioning (HVAC) or air conditioning and mechanical ventilation (ACMV) systems, consume around 40% of the total energy, and the systems also directly impact on the environmental conditions, especially the indoor environmental conditions, such as air temperature, air humidity, air velocity, air quality, etc. …”
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    Thesis
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    Timekeeper by Ng, Yang Meng

    Published 2017
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    Final Year Project (FYP)
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    Optimization of the thermal performance of building double-skin envelope by Chua, Wei Jin

    Published 2014
    “…From the parametric studies, it was found out that the double-skin roof efficiency increases as the roof inclination angle increase and finding shows that the optimum inclination angle is 40 degrees. As for the air gap height, the optimum air gap height differs for every parameter change in the double-skin roof. …”
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    Final Year Project (FYP)
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