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Accurate microwave resonant method for complex permittivity measurements of liquids [biological]
A method available for accurate measurements of lossy liquids is presented, tested on standard materials, and compared with the perturbation technique commonly adopted in cavity measurements. The method is based on numerically solving a complex characteristic equation. Realization of the method was...
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Published in: | IEEE transactions on microwave theory and techniques 2000-11, Vol.48 (11), p.2159-2164 |
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container_end_page | 2164 |
container_issue | 11 |
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container_title | IEEE transactions on microwave theory and techniques |
container_volume | 48 |
creator | Yu, K.B. Ogourtsov, S.G. Belenky, V.G. Maslenikov, A.B. Omar, A.S. |
description | A method available for accurate measurements of lossy liquids is presented, tested on standard materials, and compared with the perturbation technique commonly adopted in cavity measurements. The method is based on numerically solving a complex characteristic equation. Realization of the method was done using an E/sub 010/ cylindrical cavity. Results show that measurement errors may be decreased with application of the method presented. The method excludes uncertainties in complex permittivity determination when material has losses and high permittivity. |
doi_str_mv | 10.1109/22.884209 |
format | article |
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The method excludes uncertainties in complex permittivity determination when material has losses and high permittivity.</description><subject>Biological materials</subject><subject>Equations</subject><subject>Liquids</subject><subject>Loss measurement</subject><subject>Materials testing</subject><subject>Measurement standards</subject><subject>Microwave theory and techniques</subject><subject>Permittivity measurement</subject><subject>Perturbation methods</subject><subject>Resonance</subject><issn>0018-9480</issn><issn>1557-9670</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2000</creationdate><recordtype>article</recordtype><recordid>eNpd0M9LwzAUB_AgCs7pwaun4EHw0JmkSZscx_AXDLzsJhLT9lUz2qZL0un-eysbHjw9Hu_D470vQpeUzCgl6o6xmZScEXWEJlSIPFFZTo7RhBAqE8UlOUVnIazHlgsiJ-h9XpaDNxFwa0vvvswWsIfgOtNF3EL8dBWuncela_sGvnEPvrUx2q2Nu3FuwuChhS4G7Grc2M1gq4BfC-sa92FL07ydo5PaNAEuDnWKVg_3q8VTsnx5fF7Ml0mZ5iQmghe1rCWQSopUEJ4JIFAJyKmoOCihinR8pOasUIyqtChkJhRjVUZVBrVJp-hmv7b3bjNAiLq1oYSmMR24IWiWM5amXIzw-h9cu8F342laSkGzLFfZiG73aIwkBA-17r1tjd9pSvRvzpoxvc95tFd7awHgzx2GP6sceOw</recordid><startdate>20001101</startdate><enddate>20001101</enddate><creator>Yu, K.B.</creator><creator>Ogourtsov, S.G.</creator><creator>Belenky, V.G.</creator><creator>Maslenikov, A.B.</creator><creator>Omar, A.S.</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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subjects | Biological materials Equations Liquids Loss measurement Materials testing Measurement standards Microwave theory and techniques Permittivity measurement Perturbation methods Resonance |
title | Accurate microwave resonant method for complex permittivity measurements of liquids [biological] |
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