Chapter three: methodology of exposure modeling.
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[1] P. Haddad,et al. Ion Chromatography , 2004, Analytical and bioanalytical chemistry.
[2] K. R. Smith,et al. Indoor and outdoor PM2.5 and CO in high- and low-density Guatemalan villages* , 2000, Journal of Exposure Analysis and Environmental Epidemiology.
[3] PAUL J LIOY,et al. Responses to the Region 5 NHEXAS time/activity diary , 1999, Journal of Exposure Analysis and Environmental Epidemiology.
[4] J. Sundquist,et al. Neighborhood environment and self-reported health status: a multilevel analysis. , 1999, American journal of public health.
[5] P. Lioy,et al. Typical household vacuum cleaners: the collection efficiency and emissions characteristics for fine particles. , 1999, Journal of the Air & Waste Management Association.
[6] Sheldon Landsberger,et al. Elemental analysis of airborne particles , 1999 .
[7] Ronald E. Hester,et al. Receptor modeling for air quality management , 1997 .
[8] L. Wallace,et al. Indoor particles: a review. , 1996, Journal of the Air & Waste Management Association.
[9] Stuart Schare,et al. Particulate emission rates of simple kerosene lamps , 1995 .
[10] H Ozkaynak,et al. A population-based exposure model for benzene. , 1995, Journal of exposure analysis and environmental epidemiology.
[11] K Sexton,et al. An introduction to the National Human Exposure Assessment Survey (NHEXAS) and related phase I field studies. , 1995, Journal of exposure analysis and environmental epidemiology.
[12] M A Callahan,et al. Overview of important design issues for a National Human Exposure Assessment Survey. , 1995, Journal of exposure analysis and environmental epidemiology.
[13] J C Chow,et al. Measurement methods to determine compliance with ambient air quality standards for suspended particles. , 1995, Journal of the Air & Waste Management Association.
[14] J. Pacyna,et al. Chemical Mass Balance , 1995 .
[15] J. C. Solomon,et al. Time-activity patterns and diurnal variation of respiratory status in a panel of asthmatics: implications for short-term air pollution effects. , 1994, Journal of exposure analysis and environmental epidemiology.
[16] G. Grell,et al. A description of the fifth-generation Penn State/NCAR Mesoscale Model (MM5) , 1994 .
[17] J. Fergusson,et al. Concentrations and sources of cadmium, copper, lead and zinc in house dust in Christchurch, New Zealand. , 1993, The Science of the total environment.
[18] Sandeep Shah,et al. Characterization and problems of indoor pollution due to cooking stove smoke , 1993 .
[19] Judith C. Chow,et al. The dri thermal/optical reflectance carbon analysis system: description, evaluation and applications in U.S. Air quality studies , 1993 .
[20] Ingrid Ritchie,et al. Indoor Air Pollution: A Health Perspective , 1992, Annals of Internal Medicine.
[21] T. Johnson,et al. Activity patterns in elementary and high school students exposed to oxidant pollution. , 1992, Journal of exposure analysis and environmental epidemiology.
[22] G Löfroth,et al. Indoor sources of mutagenic aerosol particulate matter: smoking, cooking and incense burning. , 1991, Mutation research.
[23] Judith C. Chow,et al. Chapter 4 - Chemical Mass Balance , 1991 .
[24] P. Lioy,et al. Human exposure assessment for airborne pollutants: advances and opportunities , 1991 .
[25] J. E. Yocom,et al. Measuring Indoor Air Quality: A Practical Guide , 1991 .
[26] Lewis Cw,et al. Sources of air pollutants indoors: VOC and fine particulate species. , 1991 .
[27] C W Lewis. Sources of air pollutants indoors: VOC and fine particulate species. , 1991, Journal of exposure analysis and environmental epidemiology.
[28] Judith C. Chow,et al. The USEPA/DRI chemical mass balance receptor model, CMB 7.0 , 1990 .
[29] J. Konz,et al. Exposure factors handbook , 1989 .
[30] R. Stevens,et al. A refinement of the potassium tracer method for residential wood smoke , 1989 .
[31] J. Bare. Indoor air pollution source database. , 1988, JAPCA.
[32] R. Spear,et al. Integrating uncertainty and interindividual variability in environmental risk assessment. , 1987, Risk analysis : an official publication of the Society for Risk Analysis.
[33] P. Koutrakis,et al. Characterizing sources of indoor and outdoor aerosols using PIXE , 1987 .
[34] T Lionel,et al. A comparative study of combustion in kerosine heaters. , 1986, Environmental science & technology.
[35] S. Sudman,et al. Time, Goods, and Well-Being , 1985 .
[36] D T Mage,et al. Personal exposures to respirable particulates and implications for air pollution epidemiology. , 1985, Environmental science & technology.
[37] John G. Watson,et al. The effective variance weighting for least squares calculations applied to the mass balance receptor model , 1984 .
[38] G R Cass,et al. Source-receptor reconciliation of routine air monitoring data for trace metals: an emission inventory assisted approach. , 1983, Environmental science & technology.
[39] J. E. Yocom. Indoor - outdoor air quality relationships: a critical review , 1982 .
[40] Gregory J. McRae,et al. Minimizing the cost of air pollution control , 1981 .
[41] G. Cass. Sulfate air quality control strategy design , 1981 .
[42] D. Turner. Atmospheric dispersion modeling. a critical review , 1979 .
[43] Noel de Nevers,et al. Rollback Modeling: Basic and Modified , 1975 .
[44] F. Chapin. Human activity patterns in the city , 1974 .
[45] Cincinnati. WORKBOOK OF ATMOSPHERIC DISPERSION ESTIMATES , 1970 .
[46] D. S. Barth,et al. Federal motor vehicle emission goals for CO, HC, and NOx based on desired air quality levels. , 1970, Journal of the Air Pollution Control Association.