[1] T. A. Boden, G. Marland and R. J. Andres, Global Emissions from
Fossil-Fuel Burning, Cement Manufacture, and Gas Flaring: 1751-2008.
NDP-030, CDIAC, Oak Ridge National Laboratory, (2011). Available at
http://cdiac.ornl.gov/ftp/ndp030/global.1751-2008.e
ms
[2] F. Campolongo, S. Tarantola and A. Saltelli, Tackling
quantitatively large dimensionality problems, Comput. Phys. Commun.
117 (1999), 75-85.
[3] F. Campolongo and A. Saltelli, Sensitivity analysis of an
environmental model: An application of different analysis methods,
Reliability Engineering and System Safety 57 (1997), 49-69.
[4] W. S. Cleveland, Visualizing Data, Hobart Press, Murray Hill, NJ,
1993.
[5] W. S. Cleveland and N. I. Fisher, Good graphs for better business,
The Quality Magazine 7(4) (1998), 64-68.
[6] R. M. Cooke and J. M. Noortwijk, Graphical Methods, In Sensitivity
Analysis, A. Saltelli, K. Chan and E. M. Scott, Eds., John
Wiley & Sons, 245-264, West Sussex, 2000.
[7] M. Crosetto, S. Tarantola and A. Saltelli, Sensitivity and
uncertainty in spatial modelling based on GIS, Agric. Ecosyst.
Environ. 81 (2000), 71-79.
[8] S. H. C. du Toit, A. G. W. Steyn and R. H. Stumpf, Graphical
Exploratory Data Analysis, Springer-Verlag, New York, 1986.
[9] W. R. Emanuel, G. G. Killough, W. M. Post and H. H. Shugart,
Modeling terrestrial ecosystems in the global carbon cycle with shifts
in carbon storage capacity by land use change, Ecology 65 (1984),
970-983.
[10] W. R. Emanuel, G. G. Killough, W. M. Post, H. H. Shugart and M.
P. Stevenson, Computer Implementation of a Globally Averaged Model of
the World Carbon Cycle, TR010, DOE/NBB-0062, Oak Ridge National
Laboratory, Oak Ridge, TN, 1984.
[11] S. GazioÄŸlu, Application of Sensitivity and Uncertainty
Analyses to Linear, Time-Invariant Compartmental Models, Ph.D. Thesis,
Department of Statistics, University of Glasgow, Glasgow, UK, 2002.
[12] S. GazioÄŸlu and E. M. Scott, Sensitivity analysis of linear
time-invariant compartmental models with steady-state constraint, J.
Appl. Stat. 38 (2011), 2485-2509.
[13] J. C. Helton, J. D. Johnson, M. D. McKay, A. W. Shiver and J. L.
Sprung, Robustness of an uncertainty and sensitivity analysis of early
exposure results with the MACCS reactor accident consequence model,
Reliability Engineering and System Safety 48 (1995), 129-148.
[14] J. C. Helton and F. J. Davis, Latin hypercube sampling and the
propagation of uncertainty in analyses of complex systems, Reliability
Engineering and System Safety 81 (2003), 23-69.
[15] J. C. Helton and F. J. Davis, Sampling-Based Methods for
Uncertainty and Sensitivity Analysis, Sandia National Laboratories,
SAND99-2240, New Mexico, 2000.
[16] J. T. Houghton, B. A. Callander and S. K. Varney, (Editors),
Climate Change 1992: The Supplementary Report to the IPCC Scientific
Assessment, WMO/UNEP, International Panel on Climate Change,
Bracknell, 1992.
[17] N. B. Robbins, Dot Plots: A Useful Alternative to Bar Charts,
(2006).
Available at http://cdiac.esd.ornl.gov/ndps/ndp030.html<
br />
[18] N. B. Robbins, Creating More Effective Graphs, John Wiley & Sons,
Hoboken, NJ, 2005.
[19] A. Saltelli, What is Sensitivity Analysis, In Sensitivity
Analysis, A. Saltelli, K. Chan and E. M. Scott, Eds., John Wiley &
Sons, 3-13, West Sussex, 2000.
[20] A. Saltelli, K. Chan and E. M. Scott, (Editors), Sensitivity
Analysis, John Wiley & Sons, West Sussex, 2000.
[21] R. Tomović and M. Vukobratović, General Sensitivity
Theory, American Elsevier Publishing Company, Inc., New York, 1972.