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Results: 31 to 60 of 256 found      Go to page: 1 2 3 4 5 > >>

[31] Il Yoo, Bong Jin Kim and Byoung Soo Kim. A change of scale formula for a function space integral on $C_{a,b}[0,T]$. Proc. Amer. Math. Soc. 141 (2013) 2729-2739.
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[32] Georgiĭ Shevchenko. On a constant related to American type options. Theor. Probability and Math. Statist. 82 (2011) 171-175. MR 2790492.
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[33] V. P. Zubchenko. Properties of solutions of stochastic differential equations with random coefficients, non-Lipschitzian diffusion, and Poisson measures. Theor. Probability and Math. Statist. 82 (2011) 11-26. MR 2790480.
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[34] Tonći Antunović, Yuval Peres and Brigitta Vermesi. Brownian motion with variable drift can be space filling. Proc. Amer. Math. Soc. 139 (2011) 3359-3373. MR 2811290.
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[35] Ya. M. Khusanbaev. Some limit theorems for controlled branching processes. Theor. Probability and Math. Statist. 81 (2010) 51-58. MR 2667309.
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[36] Gregory F. Lawler. Martingales. The Student Mathematical Library 55 (2010) 101-133.
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[37] Gregory F. Lawler. Random walk and discrete heat equation. The Student Mathematical Library 55 (2010) 1-48.
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[38] Gregory F. Lawler. Brownian motion and the heat equation. The Student Mathematical Library 55 (2010) 49-99.
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[39] Gregory F. Lawler. Random Walk and the Heat Equation. The Student Mathematical Library 55 (2010) MR MR2732325.
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[40] Gregory F. Lawler. Fractal dimension. The Student Mathematical Library 55 (2010) 135-154.
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[41] V. P. Zubchenko and Yu. S. Mishura. Existence and uniqueness of solutions of stochastic differential equations with non-Lipschitz diffusion and Poisson measure. Theor. Probability and Math. Statist. 80 (2010) 47-59. MR 2541951.
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[42] Thomas M. Liggett. Appendix. Graduate Studies in Mathematics 113 (2010) 247-266.
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[43] Thomas M. Liggett. Feller processes. Graduate Studies in Mathematics 113 (2010) 91-132.
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[44] Thomas M. Liggett. One-dimensional Brownian motion. Graduate Studies in Mathematics 113 (2010) 1-55.
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[45] Thomas M. Liggett. Continuous time Markov chains. Graduate Studies in Mathematics 113 (2010) 57-90.
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[46] Thomas M. Liggett. Continuous Time Markov Processes. Graduate Studies in Mathematics 113 (2010) MR MR2574430.
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[47] Thomas M. Liggett. Stochastic integration. Graduate Studies in Mathematics 113 (2010) 193-226.
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[48] Thomas M. Liggett. Interacting particle systems. Graduate Studies in Mathematics 113 (2010) 133-192.
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[49] Thomas M. Liggett. Multi-dimensional Brownian motion and the Dirichlet problem. Graduate Studies in Mathematics 113 (2010) 227-246.
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[50] Julie O'Donovan. Brownian motion in a ball in the presence of spherical obstacles. Proc. Amer. Math. Soc. 138 (2010) 1711-1720. MR 2587456.
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[51] Ross G. Pinsky. Spectral analysis of a class of nonlocal elliptic operators related to Brownian motion with random jumps. Trans. Amer. Math. Soc. 361 (2009) 5041-5060. MR 2506436.
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[52] T. Byczkowski, J. Małecki and M. Ryznar. Bessel potentials, hitting distributions and Green functions. Trans. Amer. Math. Soc. 361 (2009) 4871-4900. MR 2506430.
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[53] Boris Baeumer, Mark M. Meerschaert and Erkan Nane. Brownian subordinators and fractional Cauchy problems. Trans. Amer. Math. Soc. 361 (2009) 3915-3930. MR 2491905.
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[54] S. V. Posashkov. The optimal hedging price of a European type contingent claim. Theor. Probability and Math. Statist. 77 (2008) 147-154. MR 2432778.
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[55] N. Chernov and D. Dolgopyat. Brownian Brownian motion. I. Memoirs of the AMS 198 (2009) MR 2499824.
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[56] Gregory F. Lawler. Conformal invariance and $2D$ statistical physics. Bull. Amer. Math. Soc. 46 (2009) 35-54. MR 2457071.
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[57] Jesse Ratzkin and Andrejs Treibergs. A capture problem in Brownian motion and eigenvalues of spherical domains. Trans. Amer. Math. Soc. 361 (2009) 391-405. MR 2439411.
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[58] Alan Hammond and Yuval Peres. Fluctuation of a planar Brownian loop capturing a large area. Trans. Amer. Math. Soc. 360 (2008) 6197-6230. MR 2434284.
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[59] Daniel Levin and Mark Wildon. A combinatorial method for calculating the moments of Lévy area. Trans. Amer. Math. Soc. 360 (2008) 6695-6709. MR 2434307.
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[60] Gregory F. Lawler. More results about $SLE$. Math. Surveys Monogr. 114 (2008) 177-185.
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