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and Instrumentation. Part, 38(11), 931–937. https://doi.org/10.1016/0883-
2889(87)90263-2
Kalyani, B., & Manjula, K. (2014). Review Article Food Irradiation - Technology and
Application. International Journal of Current Microbiology and Applied Science,
3(4), 549–555.
Klassen, N. V, Shortt, K. R., Seuntjens, J., & Ross, C. K. (1999). Fricke dosimetry:
The difference between G(Fe3+) for 60Co $γ$-rays and high-energy x-rays.
Physics in Medicine and Biology, 44(7), 1609–1624.
https://doi.org/10.1088/0031-9155/44/7/303
Kranzer, R., Poppinga, D., Weidner, J., Schüller, A., Hackel, T., Looe, H. K., &
Poppe, B. (2021). Ion collection efficiency of ionization chambers in ultra-high
dose-per-pulse electron beams. Medical Physics, 48(2), 819–830.
https://doi.org/10.1002/mp.14620
Krauss, A., & Kapsch, R. P. (2014). Experimental determination of kQ factors for
cylindrical ionization chambers in 10 cm × 10 cm and 3 cm × 3 cm photon
beams from 4 MV to 25 MV. Physics in Medicine and Biology, 59(15), 4227–
4246. https://doi.org/10.1088/0031-9155/59/15/4227
Kuntz, F., & Strasser, A. (2016). The specifics of dosimetry for food irradiation
applications. Radiation Physics and Chemistry, 129, 46–49.
https://doi.org/10.1016/j.radphyschem.2016.08.023
McEwen, M., Dewerd, L., Ibbott, G., Followill, D., Rogers, D. W. O., Seltzer, S., &
Seuntjens, J. (2014). Addendum to the AAPM’s TG-51 protocol for clinical
reference dosimetry of high-energy photon beams. Medical Physics, 41(4).
https://doi.org/10.1118/1.4866223
McEwen, M., Miller, A., Pazos, I., & Sharpe, P. (2020). Determination of a
consensus scaling factor to convert a Co-60-based alanine dose reading to
yield the dose delivered in a high energy electron beam. Radiation Physics and
Chemistry, 171(May 2019), 108673.
https://doi.org/10.1016/j.radphyschem.2019.108673
McEwen, M. R., DuSautoy, A. R., & Williams, A. J. (1998). The calibration of therapy
level electron beam ionization chambers in terms of absorbed dose to water.
Physics in Medicine and Biology, 43(9), 2503–2519.
https://doi.org/10.1088/0031-9155/43/9/006
McEwen, M. R., Sharpe, P. H. G., Pazos, I. M., Miller, A., Pawlak, E., Ninlaphruk,
S., Zhang, Y., & Kessler, C. (2022). Supplementary comparison CCRI(I)-S3 of
standards for absorbed dose to water in 60Co gamma radiation at radiation
processing dose levels. Metrologia, 59(1 A), 1–18.
https://doi.org/10.1088/0026-1394/59/1A/06012
McEwen, M., Sharpe, P., & Vörös, S. (2015). Evaluation of alanine as a reference
dosimeter for therapy level dose comparisons in megavoltage electron beams.
Metrologia, 52(2), 272–279. https://doi.org/10.1088/0026-1394/52/2/272
Miller, A. (1995). Polystyrene calorimeter for electron beam dose measurements.
Radiation Physics and Chemistry, 46(4-6 PART 2), 1243–1246.
https://doi.org/10.1016/0969-806X(95)00361-Z
Miller, A., & Kovacs, A. (1985). Calorimetry at industrial electron accelerators.
Nuclear Inst. and Methods in Physics Research, B, 10–11(PART 2), 994–997.
https://doi.org/10.1016/0168-583X(85)90156-9
Miller, R. B. (2005). Electronic Irradiation of Foods: An Introduction to the
Technology. Springer New York Heidelberg Dordrecht London Library.
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