THERMAL ENHANCEMENT OF ETHYLENE GLYCOL BASE MATERIAL WITH HYBRID NANOFLUID FOR OBLIQUE STAGNATION POINT SLIP FLOW

Thermal enhancement of ethylene glycol base material with hybrid nanofluid for oblique stagnation point slip flow

The Seed hybrid nanofluids are more effective and stable to improve the thermal activities of many base liquids.With eminent thermal consequences, the hybrid nanofluids are preferred as compared to simple nanofluids which present the applications in industrial and engineering sectors.This mathematical model described in the thermal applications of

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Combining microscale ATR-FTIR and chemometrics to interpret degradation characteristics of earlywood, latewood, and compression wood in waterlogged archaeological pine wood

Abstract Interpreting the degradation characteristics of waterlogged archaeological wood (WAW) is crucial for the conservation of wooden cultural heritage.Generally, multidisciplinary diagnostic methods, including physical, micromorphological, and chemical approaches, are employed to evaluate the preservation state of WAW.However, primarily focused

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