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The effects of aspect ratio, volume fraction index on the critical loads and temperatures are also considered.
Parameters like mobility ratio, volume of displaceable oil, volume of displaced oil and displacement efficiency have been obtained as results.
The effect of filling ratio, volume fraction of nano-particles in the base fluid, and heat input rate on the thermal resistance is investigated.
Moreover, the effect of significant parameters such as length-to-thickness ratio, volume fraction, aspect ratio, loading-type, CNTs distribution as well as boundary conditions is discussed.
The effect of significant parameters such as length-to-thickness ratio (slenderness ratio), volume fraction index and material properties, on the natural frequencies and mode shapes, is discussed.
The parameters investigated are the enclosure geometry (aspect ratio, volume and roof pitch), surface absorption and fittings (density, size, surface area, vertical distribution and specific types).
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The results showed that the interaction of hydrolysing solution volume with ethanol ratio, volumes of extracting and disperser solvent is significant in the obtained model.
Numerical results for different side-to-thickness ratio, aspect ratios, volume fraction, and simply supported boundary conditions are compared.
The effect of slenderness ratios, volume fraction indices and boundary conditions on natural frequencies are also examined.
Since the size of MnO NPs increased with increasing CE ratio, 1: 1 volume ratio was preferred over other volume ratios (Supplementary table ST4†).
The ratio of volume of diffusion restrictions to cell volume was kept close to 3%.
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