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Общее количество найденных документов : 42
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1.

A dielectric model at a frequency of 1.4GHz for frozen mineral soils in the temperature range −1 to −30°C/V. L. Mironov [и др.] // Progress in Electromagnetic Research Symposium (PIERS), 2016.-С.2518-2522
2.

A dielectric model of thawed and frozen Arctic soils considering frequency, temperature, texture and dry density/V. L. Mironov, A. Yu. Karavayskiy, Yu. I. Lukin, I. P. Molostov // International Journal of Remote Sensing, 2020. т.Vol. 41,N Is. 10.-С.3845-3865
3.

Dielectric database of organic Arctic soils (DDOAS)/I. Savin, V. Mironov, K. Muzalevskiy [et al.] // Earth System Science Data, 2020. т.Vol. 12,N Is. 4.-С.3481-3487
4.

First use of the Meteor-M No. 2/MTVZA-GYa radiometer for remote sensing of soil moisture and temperature in the Arctic region/K. V. Muzalevskiy [et al.] // Progress in Electromagnetics Research Symposium - Spring:IEEE, 2017.-С.1426-1429
5.

Frequency-, temperature-, and texture-dependent dielectric model for frozen and thawed arctic mineral soi/V. L. Mironov [et al.] // Progress in Electromagnetics Research Symposium (PIERS), 2017.-С.2546-2553
6.

Generalized refractive mixing dielectric model of moist soils considering ionic relaxation of soil water/V. L. Mironov [et al.] // Russian Physics Journal, 2013. т.Vol. 56,N Is. 3.-С.319-324
7.

Joint studies of water phase transitions in Na-bentonite clay by calorimetric and dielectric methods/V. L. Mironov [et al.] // Cold Regions Science and Technology, 2018. т.Vol. 153.-С.172-180
8.

Karavaisky A. Yu. Dielectric model of the upper organic layer of forest soils for a frequency of 435 MHz/A. Yu. Karavaisky, Y. I. Lukin // Izvestiya, Atmospheric and Oceanic Physics, 2023. т.Vol. 59,N Is. 9.-С.1208-1219
9.

Karavayskiy A. Yu. Influence of dielectric relaxations of soil water on the temperature dependence of soil permittivity/A. Yu. Karavayskiy, Yu. I. Lukin // Optics and Spectroscopy, 2023. т.Vol. 131,N Is. 12.-С.1190-1199
10.

Karavayskiy A. Yu. The effect of clay content on the spectra of permetivity of mineral soils at positive temperatures/A. Y. Karavayskiy, Y. I. Lukin // Conference Proceedings - 2023 Radiation and Scattering of Electromagnetic Waves, RSEMW, 2023.-С.456-459
11.

Method of retrieving permittivity from S12 element of the waveguide scattering matrix/V. L. Mironov [et al.] // International Siberian Conference on Control and Communications (SIBCON-2013), 2013.- Ст.6693613
12.

Mironov V. L. Dielectric model in the frequency range 0.05 to 15 GHz at temperatures −30°C to 25°C for the samples of organic soils and litter collected in Alaska, Yamal, and Siberian Taiga/V. L. Mironov, I. V. Savin, A. Yu. Karavaysky // IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing:IEEE-Institute Electrical and Electronics Engineers, 2016.-С.2684-2687
13.

Mironov V. L. Temperature dependent dielectric model at 1.4 GHz for an agricultural soil thawed and frozen/V. L. Mironov, A. Yu. Karavaysky // International Siberian Conference on Control and Communications (SIBCON-2015):IEEE-Institute Electrical and Electronics Engineers, 2015.-С.1-4
14.

Mironov V. L. Temperature dependent multi-relaxation spectroscopic dielectric model for an arctic silt clay loam soil thawed and frozen at 0.1-15 GHZ/V. L. Mironov, I. P. Molostov, A. Yu. Karavaysky // IEEE International Geoscience and Remote Sensing Symposium (IGARSS), 2016.-С.3122-3125
15.

Muzalevskiy K. V. Optimum frequency range for remote sensing of soil moisture with various texture, density and organic matter content/K. Muzalevskiy, S. Fomin, A. Karavayskiy // 2022 IEEE International Multi-Conference on Engineering, Computer and Information Sciences, SIBIRCON 2022:IEEE, 2022.-С.1130-1133
16.

Muzalevskiy K. V. Shielded open-circuited probe for in-situ measurements of soil permittivity in Very high frequency (VHF) and Ultra high frequency (UHF) bands/K. Muzalevskiy, A. Karavaysky // Transactions of the Institute of Measurement and Control, 2021. т.Vol. 43,N Is. 16.-С.3566-3572
17.

Phase transition analysis in freezing moist soils carried out on the basis of phase transitions characteristic to the different types of soil water/V. L. Mironov [и др.] // IEEE International Geoscience and Remote Sensing Symposium (IGRASS). -Munich, 2012.-С.4497-4500
18.

Single-frequency dielectric model of frozen mineral soils for frequencies of the basic satellites/V. L. Mironov [et al.] // Progress in Electromagnetics Research Symposium (PIERS), 2017.-С.2155-2161
19.

Temperature and texture dependent spectroscopic dielectric model for frozen mineral soils at 0.1-15GHz/V. L. Mironov [et al.] // Progress in Electromagnetics Research Symposium (PIERS):IEEE, 2016.-С.4754-4754
20.

Temperature- and texture-dependent dielectric model for frozen and thawed mineral soils at a frequency of 1.4 GHz/V. L. Mironov [et al.] // Remote Sensing of Environment:Elsevier, 2017. т.Vol. 200.-С.240-249
 

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