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  1. Guiding soil sampling strategies using classical and spatial statistics: A review
    2020/01/01 by Patrick G. Lawrence, Wayne Roper, Wayne R. Roper +2 · 8 citations
    Agricultural and Biological Sciences · Environmental Science · Mathematics · #Agriculture #Biology #Computer science #Ecology #Mathematics #Nutrient management #Protocol (science) #Sample (material) #Sample size determination #Sampling (signal processing) #Sampling design #Simple random sample #Soil Carbon and Nitrogen Dynamics #Soil Geostatistics and Mapping #Soil and Water Nutrient Dynamics #Spatial analysis #Spatial ecology #Spatial variability #Statistics #Stratified sampling
  2. Disconnection, random walks, and random interlacements
    2014/12/31 by Alain-Sol Sznitman · 2 citations
    Mathematics · Physics and Astronomy · #Dimension (graph theory) #Homothetic transformation #Markov Chains and Monte Carlo Methods #Random Matrices and Applications #Random variable #Simple (philosophy) #Simple random sample #Stochastic processes and statistical mechanics #Upper and lower bounds #math-ph #math.MP #math.PR #msc:60F10 #msc:60J27 #msc:60K35 #msc:82B43
  3. A lower bound for disconnection by simple random walk
    2014/12/12 by Xinyi Li · 1 citation
    Mathematics · #Analytic Number Theory Research #Combinatorics #Computer science #Disconnection #Discrete mathematics #Heterogeneous random walk in one dimension #Infinity #Mathematical Approximation and Integration #Mathematical analysis #Mathematics #Moment (physics) #Physics #Random walk #Set (abstract data type) #Simple (philosophy) #Simple random sample #Statistics #Stochastic processes and statistical mechanics #Upper and lower bounds #math.PR #msc:60F10 #msc:60J27 #msc:60K35 #msc:82B43
  4. Random walk models in biology
    2008/04/15 by Edward A. Codling, Michael J. Plank, Simon Benhamou · 11 citations
    Biochemistry, Genetics and Molecular Biology · Mathematics · Medicine · #Biological dispersal #Biology #Computer science #Context (archaeology) #Diffusion and Search Dynamics #Mathematical Biology Tumor Growth #Mathematical and Theoretical Epidemiology and Ecology Models #Mathematical model #Mathematics #Physics #Population #Random walk #Random walker algorithm #Simple (philosophy) #Simple random sample #Statistical physics #Statistics #Stochastic modelling #Stochastic process
  5. A conditioned Latin hypercube method for sampling in the presence of ancillary information
    2006/02/08 by Budiman Minasny, Alex B. McBratney · 13 citations
    Agricultural and Biological Sciences · Engineering · Environmental Science · Mathematics · #Algorithm #Computer science #Discrete mathematics #Hypercube #Latin hypercube sampling #Mathematics #Monte Carlo method #Multivariate statistics #Population #Replicate #Sampling (signal processing) #Sampling design #Simple random sample #Simulated annealing #Soil Geostatistics and Mapping #Soil and Unsaturated Flow #Soil erosion and sediment transport #Statistics #Stratified sampling
  6. Scale-free networks generated by random walkers
    2004/04/05 by Jari Saramäki, Jari Saramaki, Kimmo Kaski · 2 citations
    Mathematics · Physics and Astronomy · #Cluster analysis #Clustering coefficient #Combinatorics #Complex Network Analysis Techniques #Complex network #Computer science #Degree (music) #Exponent #Graph #Mathematics #Mechanism (biology) #Node (physics) #Physics #Preferential attachment #Random graph #Random walk #Random walker algorithm #Scale (ratio) #Scale-free network #Simple (philosophy) #Simple random sample #Statistical physics #Statistics #Stochastic processes and statistical mechanics #Theoretical and Computational Physics #cond-mat.dis-nn #cond-mat.stat-mech
  7. A Comparison of Three Methods for Selecting Values of Input Variables in the Analysis of Output From a Computer Code
    2000/02/01 by M. D. Mckay, Michael D. McKay, Richard J. Beckman +2 · 154 citations
    Decision Sciences · Economics, Econometrics and Finance · Mathematics · #Code (set theory) #Computer science #Estimator #Financial Risk and Volatility Modeling #Importance sampling #Mathematics #Monte Carlo method #Probability and Risk Models #Programming language #Sample (material) #Sampling (signal processing) #Sampling design #Simple (philosophy) #Simple random sample #Statistical Distribution Estimation and Applications #Statistics #Variance (accounting)
  8. Stein's method and the zero bias transformation with application to simple random sampling
    1997/11/01 by Larry Goldstein, Gesine Reinert · 1 citation
    Mathematics · #Distribution (mathematics) #Geometry and complex manifolds #Markov Chains and Monte Carlo Methods #Random Matrices and Applications #Random variable #Random variate #Simple (philosophy) #Simple random sample #Transformation (genetics) #Variance (accounting) #Zero (linguistics) #math.PR #msc:60E10 #msc:60F05 #msc:62D05
  9. Large Sample Properties of Simulations Using Latin Hypercube Sampling
    1987/05/01 by Michael Stein, Michael L. Stein · 26 citations
    Decision Sciences · Engineering · Mathematics · #Applied mathematics #Asymptotically optimal algorithm #Computer science #Degree (music) #Discrete mathematics #Dynamics and Control of Mechanical Systems #Hypercube #Latin hypercube sampling #Mathematical optimization #Mathematics #Monte Carlo method #Probabilistic and Robust Engineering Design #Sample (material) #Sampling (signal processing) #Simple random sample #Simulation Techniques and Applications #Statistics #Variance (accounting) #Variance reduction
  10. Comparison of Three Methods for Selecting Values of Input Variables in the Analysis of Output from a Computer Code
    1979/05/01 by M. D. McKay, Michael D. McKay, R. J. Beckman +2 · 27 citations
    Decision Sciences · Economics, Econometrics and Finance · Mathematics · #Computer science #Estimator #Financial Risk and Volatility Modeling #Importance sampling #Mathematics #Monte Carlo method #Probability and Risk Models #Sampling (signal processing) #Sampling design #Simple (philosophy) #Simple random sample #Statistical Distribution Estimation and Applications #Statistics #Variance (accounting)