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3.5 References

3.5 References - Topp, C.G. and P.A. Ferré, 3.1 Water Content, in Methods of Soil Analysis: Part 4 Physical Methods, J.H. Dane and C.G. Topp, Editors. 2002, Soil Science Society of America: Madison, Wisconsin. p. 417-546. - Entekhabi, D., et al., The soil moisture active passive (SMAP) mission. Proceedings of the IEEE, 2010. 98(5): p. 704-716. - Kerr, Y.H., et al., The SMOS mission: New tool for monitoring key elements of the global water cycle. Proceedings of the IEEE, 2010. 98(5): p. 666-687. - Larson, K.M., et al., Use of GPS receivers as a soil moisture network for water cycle studies. Geophys. Res. Lett., 2008. 35(24): p. L24405. - Small, E.E., et al., Validation of GPS-IR Soil Moisture Retrievals: Comparison of Different Algorithms to Remove Vegetation Effects. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2016. PP(99): p. 1-12. - Dong, J., et al., Calibration and validation of the COSMOS rover for surface soil moisture measurement. Vadose Zone Journal, 2014. - Zreda, M., et al., COSMOS: The COsmic-ray Soil Moisture Observing System. Hydrology and Earth System Sciences, 2012. 16(11): p. 4079. - Dong, J., et al., Determining soil moisture and soil properties in vegetated areas by assimilating soil temperatures. Water Resources Research, 2016. 52(6): p. 4280-4300. - Sayde, C., et al., Feasibility of soil moisture monitoring with heated fiber optics. Water Resources Research, 2010. 46(6): p. W06201. - Cosh, M.H., et al., The Soil Moisture Active Passive Marena, Oklahoma, In Situ Sensor Testbed (SMAP-MOISST): Testbed Design and Evaluation of In Situ Sensors. Vadose Zone Journal, 2016. 15(4). - Robinson, D.A., et al., Soil Moisture Measurement for Ecological and Hydrological Watershed-Scale Observatories: A Review. Vadose Zone J, 2008. 7(1): p. 358-389. - Topp, G.C., J.L. Davis, and A.P. Annan, Electomagnetic determination of soil water content: Measurements in coaxial transmission lines. Water Resources Research, 1980. 16: p. 574-582. - Ochsner, T.E., et al., State of the Art in Large-Scale Soil Moisture Monitoring. Soil Science Society of America Journal, 2013. 77(6): p. 1888-1919. - Krueger, E.S., et al., Concurrent and antecedent soil moisture relate positively or negatively to probability of large wildfires depending on season. International Journal of Wildland Fire, 2016. 25(6): p. 657-668. - Rosenberg, E.A., A.W. Wood, and A.C. Steinemann, Informing Hydrometric Network Design for Statistical Seasonal Streamflow Forecasts. Journal of Hydrometeorology, 2013. 14(5): p. 1587-1604. - Torres, G.M., R.P. Lollato, and T.E. Ochsner, Comparison of Drought Probability Assessments Based on Atmospheric Water Deficit and Soil Water Deficit. Agron. J., 2013. 105(2): p. 428-436. - Dexter, A.R. and N.R.A. Bird, Methods for predicting the optimum and the range of soil water contents for tillage based on the water retention curve. Soil and Tillage Research, 2001. 57(4): p. 203-212. - Dexter, A.R., Soil physical quality: P
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