Nghĩa của từ bremsstrahlung bằng Tiếng Ả Rập

Bremsstrahlung بريمستراهلنج

Đặt câu có từ "bremsstrahlung"

Dưới đây là những mẫu câu có chứa từ "bremsstrahlung", trong bộ từ điển Từ điển Tiếng Anh - Tiếng Ả Rập. Chúng ta có thể tham khảo những mẫu câu này để đặt câu trong tình huống cần đặt câu với từ bremsstrahlung, hoặc tham khảo ngữ cảnh sử dụng từ bremsstrahlung trong bộ từ điển Từ điển Tiếng Anh - Tiếng Ả Rập

1. Bremsstrahlung relative to normal Bremsstrahlung, i.e

2. Bremsstrahlung German: braking radiation

3. The name Bremsstrahlung comes from the German.

4. What does Bremsstrahlung mean? Information and translations of Bremsstrahlung in the most comprehensive dictionary definitions resource on the web.

5. The 'lost' energy is emitted as X-ray photons, specifically bremsstrahlung radiation (Bremsstrahlung is German for 'braking radiation').

6. Bremsstrahlung radiation (Background) Bremsstrahlung means, literally, braking radiation and is an important phenomenon for ED-XRF spectrometry

7. Definition of Bremsstrahlung in the Definitions.net dictionary

8. Bremsstrahlung Radiation due to the acceleration of a charge in the Coulomb field of another charge is called Bremsstrahlung or free-free emission

9. In this paper, we identify the conditions under which the inverse Bremsstrahlung emissivity is significant relative to that for normal Bremsstrahlung in shocked astrophysical plasmas.

10. Beta's interact with matter and produce Bremsstrahlung x-rays as they travel

11. (1955) Spektum and Rich tungsverteieng der Rtgen-Bremsstrahlung ein dnen Antikathode

12. Bremsstrahlung, or braking radiation, occurs when charged particles change direction

13. 7.1.3 Comparison of Bremsstrahlung and Collisional Energy Loss The question now arises of the relative importance of Bremsstrahlung in calculating the energy loss of an energetic particle in matter

14. Bremsstrahlung is treated for the cases where the electron is scattered by a pure

15. ‘Go back to the Bremsstrahlung spectrum and see how it fades gradually to zero for long wavelengths.’ ‘The restricted energy loss for muon Bremsstrahlung with relative transfers can be calculated as follows.’ ‘The energy radiated as Bremsstrahlung is typically 100000 times smaller than the energy lost to the plasma electrons.’

16. ‘Go back to the Bremsstrahlung spectrum and see how it fades gradually to zero for long wavelengths.’ ‘The restricted energy loss for muon Bremsstrahlung with relative transfers can be calculated as follows.’ ‘The energy radiated as Bremsstrahlung is typically 100000 times smaller than the energy lost to the plasma electrons.’

17. Bremsstrahlung is the radiation (X-rays) produced when a charged particle (electron) decelerates

18. Bremsstrahlung, or braking radiation, is emitted by a charged particle moving in an electric field, E

19. The term "Bremsstrahlung" is German and means "braking the radiation"

20. What does Bremsstrahlung mean? The electromagnetic radiation produced by the acceleration of an electrically charged

21. Bremsstrahlung can be produced with any energy less than the incident charged particle's kinetic energy

22. This problem was suggested by an investigation of photo-Coulomb interference arising from coherent bremsstrahlung.

23. Commercially the radioactive isotope bismuth-213 can be produced by bombarding radium with bremsstrahlung photons from a linear particle accelerator.

24. In a broader sense, Bremsstrahlung is the radiation emitted when any charged particle is accelerated by any force

25. 13 Fire a high energy electron beam at a metal target and bremsstrahlung effect produces intense X-rays.

26. Bremsstrahlung, German for 'braking radiation', is the continuum emission created by the interaction of two "free" charged particles.Since unlike radiative or dielectronic recombination the interacting particle begins and ends the process without being 'bound', Bremsstrahlung is often called 'free-free' radiation.

27. In a broader sense, Bremsstrahlung is the radiation emitted when any charged particle is accelerated by any force

28. Bremsstrahlung (pronounced [ˈbʁɛmsˌʃtʁaːlʊŋ] (help·info), from German bremsen "to brake" and Strahlung "radiation", i.e

29. 1 day ago · An Astrophysical Source Emits Thermal Bremsstrahlung With A Cut-off At Hv-4 KeV

30. Bremsstrahlung is one of the processes by which cosmic rays dissipate some of their energy in the Earth’s atmosphere. Solar X rays have been attributed to Bremsstrahlung generated by fast electrons passing through the matter in the part of the Sun’s atmosphere called the chromosphere.

31. The ratio of external to internal Bremsstrahlung varied for the different sources by more than two orders of magnitude

32. The continuous and broad energy distribution of Bremsstrahlung photons, however, imposes substantial challenges on accurate quantification of the activity distribution

33. There are 11 words containing B, H, L, M, N, R, S and T: BLAMEWORTHINESS BREMSSTRAHLUNG Bremsstrahlungs THROMBOPLASTIN THROMBOPLASTINS UNSMOTHERABLE

34. Bremsstrahlung or “braking rays” however, resulting from the interaction of beta particles with tissue, are sufficiently penetrative for detection outside the body

35. The Bremsstrahlung spent plasma debris experiences the large electromagnetic forces between the cathode and anode, resulting in a counter flow of ions

36. The complement I want to add that a classical X-ray tube spectrum is made of both Bremsstrahlung and characteristic radiation

37. Expressions are derived for the total energy loss and photon-production spectrum by the processes of Compton scattering, Bremsstrahlung, and synchrotron radiation from highly relativistic electrons

38. Bremsstrahlung definition, radiation emitted by a charged particle when accelerating, as x-rays emitted by an electron that is scattered by a nucleus

39. The aim of this work was to develop and evaluate an improved quantitative (90)Y Bremsstrahlung SPECT reconstruction method appropriate for these imaging applications.

40. Broadly speaking, Bremsstrahlung or braking radiation is any radiation produced due to the deceleration (negative acceleration) of a charged particle, which includes synchrotron radiation (i.e

41. This conversion of energy from beta particle to Bremsstrahlung is quite inefficient, but, when therapeutic doses of beta particles are administered, sufficient radiation escapes

42. Bremsstrahlung definition is - the electromagnetic radiation produced by the sudden deceleration of a charged particle in an intense electric field (as of an atomic nucleus); also : …

43. Bremsstrahlung (or “braking radiation”) is the radiation given off by free electrons that are deflected (i.e., accelerated) in the electric fields of charged particles and the nuclei of atoms.

44. The word “Bremsstrahlung” is a German word meaning “braking radiation,” which refers to the way in which electrons are “braked” when they hit a metal target

45. Only 1% of electrons interact with the Target Material to produce X-RAYS.From That Material interactions (1%) up to 85-100% results in Bremsstrahlung x-ray p

46. The Energy-Angular Distribution of Electron Pairs Produced by a Bremsstrahlung Spectrum and Multiply Scattered; DIE ENERGIE-RICHTUNGSVERTEILUNG VON PAAR-ELEKTRONEN, DIE DURCH EIN Bremsstrahlungs-SPEKTRUM ERZEUGT WERDEN UND VIELFACHSTREUUNG ERLEIDEN

47. Two types of X-rays are produced by interaction of the electron beam with the sample in both the SEM and TEM: Bremsstrahlung (which means ‘braking radiation’) and Characteristic X-rays.

48. Bremsstrahlung (countable and uncountable, plural Bremsstrahlungs) the electromagnetic radiation produced by the deceleration of a charged particle, such as an electron, when it is deflected by another charged particle, such as an atomic nucleus

49. To a great extent, as a source of photons in the ultraviolet and soft x-ray region for the investigation of atomic structure (particularly in solids), Bremsstrahlung from x-ray tubes has been replaced by synchrotron radiation.

50. The Bremsstrahlung is electromagnetic radiation produced by the acceleration or deceleration of a charged particle when deflected by magnetic fields (an electron by magnetic field of particle accelerator) or another charged particle (an electron by an atomic nucleus).