Radio Propagation and Remote Sensing of the Environment - Chapter 12 ppt
... examples of the calculation. Figure 12. 1 © 2005 by CRC Press 338 Radio Propagation and Remote Sensing of the Environment 118.7503 GHz ( λ = 2.53 mm) and an absorptive band at the 5- to 6-mm ... CRC Press 358 Radio Propagation and Remote Sensing of the Environment but the oxygen line absorption wings maintain their role and influence th...
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... Press 298 Radio Propagation and Remote Sensing of the Environment and the solution variance in the uniform metric (metric F): . (10.31) In order to overcome the problem of instability, the stabilizing ... describe the main points of operators (discussed further in Chapter 11) for © 2005 by CRC Press 276 Radio Propagation and Remote Sensing of...
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... A. Armand and V. M. Polyakov Radio Propagation and Remote Sensing of the Environment © 2005 by CRC Press 18 Radio Propagation and Remote Sensing of the Environment The essence of Kirchhoff’s ... 2005 by CRC Press 26 Radio Propagation and Remote Sensing of the Environment Conceptually, we should have to calculate the real part of the...
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Radio Propagation and Remote Sensing of the Environment - Chapter 2 pps
... Press 48 Radio Propagation and Remote Sensing of the Environment is proportional to the total signal energy. The corresponding calculation gives the result: (2.80) A comparison of the shape of the ... Press 44 Radio Propagation and Remote Sensing of the Environment (2.65) Here, matrix M is the Mueller matrix. We do not provide the components...
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Radio Propagation and Remote Sensing of the Environment - Chapter 3 ppsx
... Press 66 Radio Propagation and Remote Sensing of the Environment logical compared to their energy flows. If the following is the power flow density of the incident wave: then the flow density of its ... Press 76 Radio Propagation and Remote Sensing of the Environment , (3.94) where, as before, F 23 (d) is the Fresnel coefficient of reflection from t...
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Radio Propagation and Remote Sensing of the Environment - Chapter 4 potx
... Press 88 Radio Propagation and Remote Sensing of the Environment If angle α between the direction of the ray and the direction of the permittivity is introduced, then: (4.13) Further, it ... Press 106 Radio Propagation and Remote Sensing of the Environment The initial eikonal value is assumed to be zero. Furthermore, let L be the dis...
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Radio Propagation and Remote Sensing of the Environment - Chapter 5 docx
... Press 134 Radio Propagation and Remote Sensing of the Environment we should take into consideration the relation between the magnetic and electric components of the reflected wave. Then, (5.90) and the ... 114 Radio Propagation and Remote Sensing of the Environment volume of a medium having a single section and length ds along the di...
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Radio Propagation and Remote Sensing of the Environment - Chapter 6 pps
... CRC Press 190 Radio Propagation and Remote Sensing of the Environment which represents the section of the antenna pattern by the mean plane of the scat- tering surface. We neglected the difference ... 186 Radio Propagation and Remote Sensing of the Environment The probability integral is now introduced: 45 . (6.117) At τ < 0, before the a...
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Radio Propagation and Remote Sensing of the Environment - Chapter 7 docx
... Press 212 Radio Propagation and Remote Sensing of the Environment (7.2) Here s is the vector orthogonal to the main wave propagation direction (z-axis). The solution of the obtained ... 220 Radio Propagation and Remote Sensing of the Environment 7.5 THE COHERENCE FUNCTION OF A SPHERICAL WAVE The sources function for the spher...
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Radio Propagation and Remote Sensing of the Environment - Chapter 8 pdf
... by CRC Press 224 Radio Propagation and Remote Sensing of the Environment In the case of the receiver responding only to the y-component of waves, we have: (8.9) If the receiver detects ... defined in Chapter 6 © 2005 by CRC Press 222 Radio Propagation and Remote Sensing of the Environment is substituted for its approximate value and (8.3)...
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