Published online by Cambridge University Press: 03 May 2011
Alpert, P., and Tsidulko, M. (1994). Project WIND: numerical simulations with Tel Aviv model PSU-NCAR model run at Tel Aviv University. In Mesoscale Modeling of the Atmosphere (Eds. R.A. Pielke and R. P. Pearce), Meteorological Monographs, 25, No. 47, Boston: American Meteorological Society, pp. 81–95.
Alpert, P., Tsidulko, M., and Stein, U. (1995). Can sensitivity studies yield absolute comparisons for the effect of several processes? J. Atmos. Sci., 52, 597–601.
Alpert, P., Stein U., and Tsidulko, M. (1995). Role of sea fluxes and topography in eastern Mediterranean cyclogenesis. The Global Atmosphere-Ocean System, 3, 55–79.
Alpert, P., Krichak, S. O., Krishnamurti, T. N., Stein, U., and Tsidulko, M. (1996). The relative roles of lateral boundaries, initial conditions and topography in mesoscale simulations of lee cyclogenesis. J. Appl. Meteor., 35(7), 1091–1099.
Alpert, P., Tzidulko, M., Krichak, S. O., and Stein, U. (1996). A multi-stage evolution of an ALPEX cyclone. Tellus, 48A, 209–220.
Alpert, P., Tzidulko, M., and Izigsohn, D. (1999).Ashallow short- lived meso-beta cyclone over the gulf of Antalya, eastern Mediterranean. Tellus, 51A, 249–262.
Alpert, P., Niyogi, D., Pielke, R. A. Sr., et al. (2006). Evidence for carbon dioxide and moisture interactions from the leaf cell up to global scales: Perspective on humancaused climate change. Global and Planetary Change, 54, 202–208.
Berger, A. (2001). The role of CO2, sea-level and vegetation during the Milankovitchforced glacial-interglacial cycles. In Proceedings “Geosphere-Biosphere Interactions and Climate”(Eds. L. O. Bengtsson and, C. U. Hammer), New York: Cambridge University Press, pp. 119–146.
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