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SERCS has other advantages for monitoring diffusion.
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This paper conceptualises the development of an innovation diffusion readiness (IDR) framework used for monitoring innovation diffusion maturity levels within the architectural and engineering design (AED) firm context.
The agency was established by representatives of more than 80 countries in October 1956, nearly three years after U.S. President Dwight D. Eisenhower's "Atoms for Peace" speech to the United Nations General Assembly, in which Eisenhower called for the creation of an international organization for monitoring the diffusion of nuclear resources and technology.
An electrochemical method monitoring diffusion of electroactive molecules through the nanotube has been used to determine the radius of the nanotube R as a function of nanotube length L for the two configurations.
In this paper, we consider the use of sensor networks for the monitoring of diffusion fields.
These results were in agreement with the variations found by other studies [34, 35] and also fulfil the ±25 % uncertainty requirement of the European Directive for indicative monitoring with diffusion samplers [36].
These statistics highlight that the distribution of concentrations across the study region are slightly higher for monitors compared to diffusion tubes with median values of 34.55 μgm−3 and 29.95 μgm−3 respectively.
It is suggested therefore that active sampling is best used when the air space in a storage room or similar is to be monitored whereas passive sampling (which involves collection of a known volume of air by diffusion) is recommended for monitoring small volumes (drawers, cabinets, or contained objects).
We investigated the value of diffusion-weighted imaging (DWI) for monitoring soft tissue changes adjacent to bone during MR-guided HIFU.
Zheng and colleagues developed a new ultrasound system for monitoring transient depth-dependent osmotic swelling and solute diffusion in articular cartilage [ 14- 16].
Further studies have recently been carried out by Zheng and colleagues [ 14] and Wang and colleagues [ 15, 16], who developed a new ultrasound system for monitoring transient depth-dependent osmotic swelling and solute diffusion in articular cartilage.
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