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Commercial inkjet media is increasingly used in daily life; this use ranges from offices to digital photography. The impact that the development of this technology has had on the paper industry has been phenomenal. However, an increasing amount of paper is discarded and it is often after the introduction of complex chemical ink within its substrate. The understanding of the interactions between the layer of coated media and ink can be used to further understand and develop technology for the use of recycling office and photo papers. This paper presents the innovative concept in characterizing the surface of the inkjet media by atomic force microscopy (AFM) and scanning electron microscopy (SEM). Comparisons are made between the data obtained from both atomic force microscopy and scanning electron microscopy of the receptive layer and surface analysis software that was used to obtain surface characteristics. In this study the hardness and force of interaction has also been examined by the means of nanoindentation measurements using silicon nitride cantilever tips and forces of interaction between a selection of colloid probes and the receptive layer of the inkjet media. The effect of loading force on indentation was studied in terms of approach of impact and type of media tested.  相似文献   
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Industrial pollution has become a serious problem in many developing countries during the past two decades. Support for regulation of industrial pollution has remained lukewarm from many policymakers, despite research suggesting large benefits from pollution reduction even in very poor countries. Since 1993, a World Bank research team on the environment has worked in collaboration with pollution control agencies to understand existing regulatory practices, industry's environmental performance, and pollution abatement costs in developing countries. The researchers'ongoing work has already produced a large number of publicly-available research papers and datasets, and is providing the Bank team with considerable expertise and insights into the design of effective pollution control policies.  相似文献   
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We develop a swamp water mosquito population model that is forced solely by environmental variability. Measured temperature and land surface wetness conditions are used to simulate Anopheles walkeri population dynamics in a northern New Jersey habitat. Land surface wetness conditions, which represent oviposition habitat availability, are derived from simulations using a dynamic hydrology model. Using only these two density-independent effects, population model simulations of biting Anoph. walkeri correlate significantly with light trap collections. These results suggest that prediction of mosquito populations and the diseases they transmit could be better constrained by inclusion of environmental variability.  相似文献   
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