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Each ventilation system showed different airflow patterns and the efficiency of each ventilation system in the removal of the particles in the breathing zone showed no correlation with particle size and the various methods of analyses used.
Each system showed different sensitivity and specificity for detection of certain viral pathogens and demonstrated different characteristics such as turnaround time and sample capacity.
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Interestingly, the spacial asymmetric system shows different behaviors due to the presence of particle-hole symmetry [54,55].
Taking into account that the end members of the system show different sequences of LT phase transformations R ( overline{3} ) с − Immb − C2/m (Prand3) and Pm ( overline{3} ) m − I4/mcm (SrTiO3), additional investigations are required in order to shade light on the complex phase and structural behaviour of the mixed aluminates-titanates below RT.
These two systems showed different pore fraction in N2 adsorption test, and displayed different mechanical behaviors in uniaxial tension test.
A single amine in different acid base systems showed different kinetic behaviors, due to the dissociation constants of the chosen buffers.
Although for the multichannel systems (especially 2-ch systems), the instrumental measures more or less coincide with the listening test results, the results obtained with the 1-ch systems showed different trends.
In addition, different management systems showed different degree of exposure to infection [ 26].
In addition, identically constructed structures and systems show different characteristic between each other.
The BaP molecules in the SCWG, SCWPO and SCWO systems show different degradation pathways.
Similar phenomena of the lattice parameters crossover were earlier observed in the mixed cobaltite-ferrites PrCo1-x Fe x O3 and NdCo1-x Fe x O3 [26] 26], as well as in the related rare earth aluminates and gallates R 1-x R' x AlO3 and R 1-x R' x GaO3 [27 30], in which the end members of the systems show different relations of the lattice parameters.
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