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Journal of Nuclear Medicine Technology

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OtherCONTINUING EDUCATION

X-Ray Imaging Physics for Nuclear Medicine Technologists. Part 1: Basic Principles of X-Ray Production

J. Anthony Seibert
Journal of Nuclear Medicine Technology September 2004, 32 (3) 139-147;
J. Anthony Seibert
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FIGURE 4.

FIGURE 4.
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FIGURE 4.

X-ray production by energy conversion. Events 1, 2, and 3 depict incident electrons interacting in the vicinity of the target nucleus, resulting in bremsstrahlung production caused by the deceleration and change of momentum, with the emission of a continuous energy spectrum of x-ray photons. Event 4 demonstrates characteristic radiation emission, where an incident electron with energy greater than the K-shell binding energy collides with and ejects the inner electron creating an unstable vacancy. An outer shell electron transitions to the inner shell and emits an x-ray with energy equal to the difference in binding energies of the outer electron shell and K shell that are “characteristic” of tungsten.

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Journal of Nuclear Medicine Technology: 53 (1)
Journal of Nuclear Medicine Technology
Vol. 53, Issue 1
March 1, 2025
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X-Ray Imaging Physics for Nuclear Medicine Technologists. Part 1: Basic Principles of X-Ray Production
J. Anthony Seibert
Journal of Nuclear Medicine Technology Sep 2004, 32 (3) 139-147;

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X-Ray Imaging Physics for Nuclear Medicine Technologists. Part 1: Basic Principles of X-Ray Production
J. Anthony Seibert
Journal of Nuclear Medicine Technology Sep 2004, 32 (3) 139-147;
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