Radiometry example sentences

Related (3): photometry, radiometer, radiometric

"Radiometry" Example Sentences

1. Radiometry is used to measure the intensity of electromagnetic radiation.
2. The radiometry of the Sun is used to measure its total energy output.
3. Radiometry can be used to detect the thermal energy of a system.
4. Radiometry is an important tool for the study of the atmosphere.
5. Radiometry can be used to measure the temperature of a surface.
6. Radiometry is used to measure the amount of energy emitted from a source.
7. Radiometry is used to measure the amount of energy absorbed by a material.
8. Radiometry is used to measure the amount of energy reflected from a surface.
9. Radiometry is used to measure the amount of energy transmitted through a material.
10. Radiometry is used to measure the amount of energy scattered by a material.
11. Radiometry is used to measure the amount of energy absorbed by an object.
12. Radiometry is used to measure the amount of energy emitted by an object.
13. Radiometry is used to measure the amount of energy reflected by an object.
14. Radiometry is used to measure the amount of energy transmitted by an object.
15. Radiometry is used to measure the amount of energy scattered by an object.
16. Radiometry is used to measure the spectral radiance of a surface.
17. Radiometry can be used to detect the presence of specific materials.
18. Radiometry is used to measure the spectral reflectance of a surface.
19. Radiometry is used to measure the spectral transmittance of a material.
20. Radiometry is used to measure the spectral absorption of a material.
21. Radiometry is used to measure the spectral emission of a material.
22. Radiometry is used to measure the spectral scattering of a material.
23. Radiometry is used to measure the spectral polarization of a material.
24. Radiometry is used to measure the spectral characteristics of a material.
25. Radiometry is used to measure the spectral properties of a material.
26. Radiometry is used to measure the optical properties of a material.
27. Radiometry is used to measure the thermal properties of a material.
28. Radiometry is used to measure the electrical properties of a material.
29. Radiometry is used to measure the chemical properties of a material.
30. Radiometry is used to measure the physical properties of a material.
31. Radiometry is used to measure the optical response of a material.
32. Radiometry is used to measure the thermal response of a material.
33. Radiometry is used to measure the electrical response of a material.
34. Radiometry is used to measure the chemical response of a material.
35. Radiometry is used to measure the physical response of a material.
36. The radiometry of a surface can be used to determine its temperature.
37. Radiometry can be used to measure the amount of light reflected from a surface.
38. Radiometry is used to measure the amount of light transmitted through a material.
39. Radiometry is used to measure the amount of light scattered by a material.
40. Radiometry is used to measure the amount of light absorbed by a material.
41. Radiometry is used to measure the amount of light emitted from a material.
42. Radiometry is used to measure the amount of light reflected by an object.
43. Radiometry is used to measure the amount of light transmitted by an object.
44. Radiometry is used to measure the amount of light scattered by an object.
45. Radiometry is used to measure the amount of light absorbed by an object.
46. Radiometry is used to measure the amount of light emitted by an object.
47. Radiometry is used to measure the thermal radiation of a system.
48. Radiometry is used to measure the optical radiation of a system.
49. Radiometry is used to measure the electrical radiation of a system.
50. Radiometry is used to measure the chemical radiation of a system.
51. Radiometry is used to measure the physical radiation of a system.
52. Radiometry is used to measure the spectral radiation of a system.
53. Radiometry is used to measure the spectral properties of a system.
54. Radiometry is used to measure the optical properties of a system.
55. Radiometry is used to measure the thermal properties of a system.
56. Radiometry is used to measure the electrical properties of a system.
57. Radiometry is used to measure the chemical properties of a system.
58. Radiometry is used to measure the physical properties of a system.
59. Radiometry is used to measure the optical response of a system.
60. Radiometry is used to measure the thermal response of a system.
61. Radiometry is used to measure the electrical response of a system.
62. Radiometry is used to measure the chemical response of a system.
63. Radiometry is used to measure the physical response of a system.
64. Radiometry is used to measure the spectral response of a system.
65. Radiometry is used to measure the spectral reflectance of a system.
66. Radiometry is used to measure the spectral transmittance of a system.
67. Radiometry is used to measure the spectral absorption of a system.
68. Radiometry is used to measure the spectral emission of a system.
69. Radiometry is used to measure the spectral scattering of a system.
70. Radiometry is used to measure the spectral polarization of a system.
71. Radiometry is used to study the interaction of light with a material.
72. Radiometry is used to study the interaction of radiation with a material.
73. Radiometry is used to study the interaction of electromagnetic radiation with a material.
74. Radiometry is used to study the interaction of thermal radiation with a material.
75. Radiometry is used to study the interaction of optical radiation with a material.
76. Radiometry is used to study the interaction of electrical radiation with a material.
77. Radiometry is used to study the interaction of chemical radiation with a material.
78. Radiometry is used to study the interaction of physical radiation with a material.
79. Radiometry is used to study the interaction of light with an object.
80. Radiometry is used to study the interaction of radiation with an object.
81. Radiometry is used to study the interaction of electromagnetic radiation with an object.
82. Radiometry is used to study the interaction of thermal radiation with an object.
83. Radiometry is used to study the interaction of optical radiation with an object.
84. Radiometry is used to study the interaction of electrical radiation with an object.
85. Radiometry is used to study the interaction of chemical radiation with an object.
86. Radiometry is used to study the interaction of physical radiation with an object.
87. Radiometry is used to measure the amount of energy in a system.
88. Radiometry is used to measure the amount of energy in an environment.
89. Radiometry is used to measure the amount of energy in a material.
90. Radiometry is used to measure the amount of energy in an object.
91. Radiometry is used to measure the amount of energy stored in a material.
92. Radiometry is used to measure the amount of energy stored in an object.
93. Radiometry is used to measure the amount of energy dissipated by a material.
94. Radiometry is used to measure the amount of energy dissipated by an object.
95. Radiometry is used to measure the amount of energy transferred by a material.
96. Radiometry is used to measure the amount of energy transferred by an object.
97. Radiometry is used to measure the amount of energy radiated by a material.
98. Radiometry is used to measure the amount of energy radiated by an object.
99. Radiometry is used to measure the amount of energy absorbed by a system.
100. Radiometry is used to measure the amount of energy emitted by a system.

Common Phases

Radiometric Calibration; Radiometric Measurement; Radiometric Correction; Radiometric Analysis; Radiometric Modeling

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