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DTSTART;TZID=America/Los_Angeles:20210826T183000
DTEND;TZID=America/Los_Angeles:20210826T200000
DESCRIPTION:&quot;Circuit theory of LPHP-NGD composite for inductor less BP-NGD 
 circuit&quot;\n\nDr. Blaise Ravelo\, Nanjing University of Information Science 
 &amp; Technology\, School of Electronic &amp; Information Engineering Nanjing\, Ch
 ina 210044\n\nEvent Organized By:\n\n[Circuits and Systems Society (CASS)]
 (http://sites.ieee.org/scv-cas/) of the [IEEE Santa Clara Valley Section](
 http://sites.ieee.org/scv/)\n\nPROGRAM:\n\n6:30 - 7:00 PM Networking/Intro
  7:00 - 7:50 PM Lecture7:50 - 8:00 PM Q&amp;A/Adjourn\n\nAbstract:\n\nThis res
 earch work webinar introduces an original innovative theory not familiar t
 o most of Circuit-And-System (CAS) engineers. The original circuit theory 
 is focused on inductor less negative group delay (NGD) topology. The consi
 dered passive cell comprised of resistor and capacitor elements without in
 ductor operates as a bandpass (BP) NGD function. The particular specificat
 ions of NGD functions are defined. The BP-NGD fully lumped circuits genera
 lly available in the literature operate with resonant RLC-network. For the
  introduction\, a lumped circuit was first time identified to exhibit the 
 BP-NGD behavior without the presence of inductive component. The inductor 
 less BP-NGD topology is inspired from the combination of low-pass (LP) and
  high-pass (HP) NGD passive cells. Therefore\, an original LPHP-NGD compos
 ite topology is obtained. The identified BP-NGD topology is constituted on
 ly by passive RC-networks. Then\, theoretical development of BP-NGD analys
 is is explored. The inductor less circuit theory starts with the identific
 ation of BP-NGD canonical form. Then\, the expressions of NGD value\, cent
 er frequency and attenuation in function of RC-network parameters are esta
 blished. The BP-NGD synthesis equations allowing to determine the resistor
  and capacitor elements are derived. Proofs-of-concept are designed and pr
 ototypes are fabricated to verify the effectiveness of the developed LPHP-
 NGD composite theory. To validate the developed original circuit theory\, 
 two prototypes of RC-network based LPHP-NGD composite were designed\, fabr
 icated\, simulated and tested. The two prototypes were synthesized with re
 spect to two different NGD center frequencies 13.5 MHz and 22 MHz. As expe
 cted\, the calculated\, simulated and measurement results are in very good
  agreement with NGD value of about some negative nanoseconds. In the futur
 e\, the characterized inductor less topology enable to overcome the tradit
 ional limitations of RLC-network based BP-NGD circuits because of inductan
 ce self-effect limitation.\n\nBio:\n\nDr. Ravelo (Google scholar h-index(2
 021)=23 and i-index(2021)=64) is a full professor at NUIST &amp; researcher in
  Multiphysics and electronics engineering. He is a pioneer of the negative
  group delay (NGD) concept about negative-time signal travelling physical 
 space. He was research director of 11 PhD students (8 defended)\, postdocs
 \, research engineers and Master internships. He is ranked in Top 2% world
 ’s scientists based on year 2019 by Stanford University\, US. With Europ
 ean\, Asian\, American and African partners\, he is actively involved and 
 contributes on several international research projects. He is member of IE
 T Electronics Letters editorial board as circuit &amp; system subject editor. 
 He is (co-)authors of more than 350 scientific research papers in new tech
 nologies published in int. conf. and journals. He is lecturer on circuit &amp;
  system theory\, STEM (science\, technology\, engineering\, and math) and 
 applied physics.\n\nZoom Broadcast:\n\nAmit Jha is inviting you to a sched
 uled Zoom meeting.\n\nTopic: Amit Jha&#39;s Zoom Meeting\n\nTime: Aug 26\, 202
 1 06:30 PM Pacific Time (US and Canada)\n\nJoin Zoom Meeting\n\nhttps://us
 02web.zoom.us/j/81719625637?pwd=Y2lVWkY0blhsQTRuOS9NeGRXWWtJQT09\n\nMeetin
 g ID: 817 1962 5637\n\nPasscode: 508957\n\nOne tap mobile\n\n+16699006833\
 ,\,81719625637#\,\,\,\,*508957# US (San Jose)\n\n+13462487799\,\,817196256
 37#\,\,\,\,*508957# US (Houston)\n\nDial by your location\n\n+1 669 900 68
 33 US (San Jose)\n\n+1 346 248 7799 US (Houston)\n\n+1 253 215 8782 US (Ta
 coma)\n\n+1 929 436 2866 US (New York)\n\n+1 301 715 8592 US (Washington D
 C)\n\n+1 312 626 6799 US (Chicago)\n\nMeeting ID: 817 1962 5637\n\nPasscod
 e: 508957\n\nFind your local number: https://us02web.zoom.us/u/km06Jd2rL\n
 \nAdmission Fee:\n\nAll admissions free. Suggested donations:\n\nNon-IEEE:
  $5\, Students (non-IEEE): $3\, IEEE Members (not members of CASS or SSCS)
 : $3\n\n[\nCircuit theory of LPHP-NGD composite for inductorless BP-NGD ci
 rcuit design image\n]\n\nSpeaker(s): Dr. Ljiljana Trajkovic\, \n\nAgenda: 
 \n&quot;Circuit theory of LPHP-NGD composite for inductor less BP-NGD circuit&quot;\
 n\nDr. Blaise Ravelo\, Nanjing University of Information Science &amp; Technol
 ogy\, School of Electronic &amp; Information Engineering Nanjing\, China 21004
 4\n\nEvent Organized By:\n\n[Circuits and Systems Society (CASS)](http://s
 ites.ieee.org/scv-cas/) of the [IEEE Santa Clara Valley Section](http://si
 tes.ieee.org/scv/)\n\nPROGRAM:\n\n6:30 - 7:00 PM Networking/Intro 7:00 - 7
 :50 PM Lecture7:50 - 8:00 PM Q&amp;A/Adjourn\n\nAbstract:\n\nThis research wor
 k webinar introduces an original innovative theory not familiar to most of
  Circuit-And-System (CAS) engineers. The original circuit theory is focuse
 d on inductor less negative group delay (NGD) topology. The considered pas
 sive cell comprised of resistor and capacitor elements without inductor op
 erates as a bandpass (BP) NGD function. The particular specifications of N
 GD functions are defined. The BP-NGD fully lumped circuits generally avail
 able in the literature operate with resonant RLC-network. For the introduc
 tion\, a lumped circuit was first time identified to exhibit the BP-NGD be
 havior without the presence of inductive component. The inductor less BP-N
 GD topology is inspired from the combination of low-pass (LP) and high-pas
 s (HP) NGD passive cells. Therefore\, an original LPHP-NGD composite topol
 ogy is obtained. The identified BP-NGD topology is constituted only by pas
 sive RC-networks. Then\, theoretical development of BP-NGD analysis is exp
 lored. The inductor less circuit theory starts with the identification of 
 BP-NGD canonical form. Then\, the expressions of NGD value\, center freque
 ncy and attenuation in function of RC-network parameters are established. 
 The BP-NGD synthesis equations allowing to determine the resistor and capa
 citor elements are derived. Proofs-of-concept are designed and prototypes 
 are fabricated to verify the effectiveness of the developed LPHP-NGD compo
 site theory. To validate the developed original circuit theory\, two proto
 types of RC-network based LPHP-NGD composite were designed\, fabricated\, 
 simulated and tested. The two prototypes were synthesized with respect to 
 two different NGD center frequencies 13.5 MHz and 22 MHz. As expected\, th
 e calculated\, simulated and measurement results are in very good agreemen
 t with NGD value of about some negative nanoseconds. In the future\, the c
 haracterized inductor less topology enable to overcome the traditional lim
 itations of RLC-network based BP-NGD circuits because of inductance self-e
 ffect limitation.\n\nBio:\n\nDr. Ravelo (Google scholar h-index(2021)=23 a
 nd i-index(2021)=64) is a full professor at NUIST &amp; researcher in Multiphy
 sics and electronics engineering. He is a pioneer of the negative group de
 lay (NGD) concept about negative-time signal travelling physical space. He
  was research director of 11 PhD students (8 defended)\, postdocs\, resear
 ch engineers and Master internships. He is ranked in Top 2% world’s scie
 ntists based on year 2019 by Stanford University\, US. With European\, Asi
 an\, American and African partners\, he is actively involved and contribut
 es on several international research projects. He is member of IET Electro
 nics Letters editorial board as circuit &amp; system subject editor. He is (co
 -)authors of more than 350 scientific research papers in new technologies 
 published in int. conf. and journals. He is lecturer on circuit &amp; system t
 heory\, STEM (science\, technology\, engineering\, and math) and applied p
 hysics.\n\nZoom Broadcast:\n\nAmit Jha is inviting you to a scheduled Zoom
  meeting.\n\nTopic: Amit Jha&#39;s Zoom Meeting\n\nTime: Aug 26\, 2021 06:30 P
 M Pacific Time (US and Canada)\n\nJoin Zoom Meeting\n\nhttps://us02web.zoo
 m.us/j/81719625637?pwd=Y2lVWkY0blhsQTRuOS9NeGRXWWtJQT09\n\nMeeting ID: 817
  1962 5637\n\nPasscode: 508957\n\nOne tap mobile\n\n+16699006833\,\,817196
 25637#\,\,\,\,*508957# US (San Jose)\n\n+13462487799\,\,81719625637#\,\,\,
 \,*508957# US (Houston)\n\nDial by your location\n\n+1 669 900 6833 US (Sa
 n Jose)\n\n+1 346 248 7799 US (Houston)\n\n+1 253 215 8782 US (Tacoma)\n\n
 +1 929 436 2866 US (New York)\n\n+1 301 715 8592 US (Washington DC)\n\n+1 
 312 626 6799 US (Chicago)\n\nMeeting ID: 817 1962 5637\n\nPasscode: 508957
 \n\nFind your local number: https://us02web.zoom.us/u/km06Jd2rL\n\nAdmissi
 on Fee:\n\nAll admissions free. Suggested donations:\n\nNon-IEEE: $5\, Stu
 dents (non-IEEE): $3\, IEEE Members (not members of CASS or SSCS): $3\n\n[
 \nCircuit theory of LPHP-NGD composite for inductorless BP-NGD circuit des
 ign image\n]\n\nSanta Clara\, California\, United States\, Virtual: https:
 //events.vtools.ieee.org/m/278241
LOCATION:Santa Clara\, California\, United States\, Virtual: https://events
 .vtools.ieee.org/m/278241
ORGANIZER:ieee.scv.cas@gmail.com
SEQUENCE:1
SUMMARY:Circuit theory of LPHP-NGD composite for inductor less BP-NGD circu
 it by Dr. Blaise Ravelo 
URL;VALUE=URI:https://events.vtools.ieee.org/m/278241
X-ALT-DESC:Description: &lt;br /&gt;&lt;div class=&quot;g-group l-mar-bot-6 l-sm-mar-bot-
 4&quot;&gt;\n&lt;div class=&quot;structured-content g-cell g-cell-10-12 g-cell-md-1-1&quot;&gt;\n&lt;
 div class=&quot;has-user-generated-content&quot; data-automation=&quot;about-this-event-s
 c&quot;&gt;\n&lt;div class=&quot;structured-content-rich-text structured-content__module l
 -align-left l-mar-vert-6 l-sm-mar-vert-4 text-body-medium&quot;&gt;\n&lt;h2&gt;&quot;Circuit 
 theory of LPHP-NGD composite for inductor less BP-NGD circuit&quot;&lt;/h2&gt;\n&lt;p&gt;&amp;n
 bsp\;&lt;/p&gt;\n&lt;h3&gt;Dr. Blaise Ravelo\,&amp;nbsp\;Nanjing University of Information
  Science &amp;amp\; Technology\, School of Electronic &amp;amp\; Information Engin
 eering Nanjing\, China 210044&lt;/h3&gt;\n&lt;h3&gt;Event Organized By:&lt;/h3&gt;\n&lt;p&gt;&lt;a hr
 ef=&quot;http://sites.ieee.org/scv-cas/&quot; target=&quot;_blank&quot; rel=&quot;nofollow noopener
  noreferrer&quot;&gt;Circuits and Systems Society (CASS)&lt;/a&gt;&amp;nbsp\;of the&amp;nbsp\;&lt;a
  href=&quot;http://sites.ieee.org/scv/&quot; target=&quot;_blank&quot; rel=&quot;nofollow noopener 
 noreferrer&quot;&gt;IEEE Santa Clara Valley Section&lt;/a&gt;&lt;/p&gt;\n&lt;h3&gt;&amp;nbsp\;&lt;/h3&gt;\n&lt;h2
 &gt;PROGRAM:&lt;/h2&gt;\n&lt;p&gt;6:30 - 7:00 PM&amp;nbsp\;Networking/Intro 7:00 - 7:50 PM&amp;nb
 sp\;Lecture7:50 - 8:00 PM Q&amp;amp\;A/Adjourn&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;h2&gt;Abstra
 ct:&lt;/h2&gt;\n&lt;p&gt;This research work webinar introduces an original innovative 
 theory not familiar to most of Circuit-And-System (CAS) engineers. The ori
 ginal circuit theory is focused on inductor less negative group delay (NGD
 ) topology. The considered passive cell comprised of resistor and capacito
 r elements without inductor operates as a bandpass (BP) NGD function. The 
 particular specifications of NGD functions are defined. The BP-NGD fully l
 umped circuits generally available in the literature operate with resonant
  RLC-network. For the introduction\, a lumped circuit was first time ident
 ified to exhibit the BP-NGD behavior without the presence of inductive com
 ponent. The inductor less BP-NGD topology is inspired from the combination
  of low-pass (LP) and high-pass (HP) NGD passive cells. Therefore\, an ori
 ginal LPHP-NGD composite topology is obtained. The identified BP-NGD topol
 ogy is constituted only by passive RC-networks. Then\, theoretical develop
 ment of BP-NGD analysis is explored. The inductor less circuit theory star
 ts with the identification of BP-NGD canonical form. Then\, the expression
 s of NGD value\, center frequency and attenuation in function of RC-networ
 k parameters are established. The BP-NGD synthesis equations allowing to d
 etermine the resistor and capacitor elements are derived. Proofs-of-concep
 t are designed and prototypes are fabricated to verify the effectiveness o
 f the developed LPHP-NGD composite theory. To validate the developed origi
 nal circuit theory\, two prototypes of RC-network based LPHP-NGD composite
  were designed\, fabricated\, simulated and tested. The two prototypes wer
 e synthesized with respect to two different NGD center frequencies 13.5 MH
 z and 22 MHz. As expected\, the calculated\, simulated and measurement res
 ults are in very good agreement with NGD value of about some negative nano
 seconds. In the future\, the characterized inductor less topology enable t
 o overcome the traditional limitations of RLC-network based BP-NGD circuit
 s because of inductance self-effect limitation.&lt;/p&gt;\n&lt;h2&gt;Bio:&lt;/h2&gt;\n&lt;p&gt;Dr.
  Ravelo (Google scholar h-index(2021)=23 and i-index(2021)=64) is a full p
 rofessor at NUIST &amp;amp\; researcher in Multiphysics and electronics engine
 ering. He is a pioneer of the negative group delay (NGD) concept about neg
 ative-time signal travelling physical space. He was research director of 1
 1 PhD students (8 defended)\, postdocs\, research engineers and Master int
 ernships. He is ranked in Top 2% world&amp;rsquo\;s scientists based on year 2
 019 by Stanford University\, US. With European\, Asian\, American and Afri
 can partners\, he is actively involved and contributes on several internat
 ional research projects. He is member of IET Electronics Letters editorial
  board as circuit &amp;amp\; system subject editor. He is (co-)authors of more
  than 350 scientific research papers in new technologies published in int.
  conf. and journals. He is lecturer on circuit &amp;amp\; system theory\, STEM
  (science\, technology\, engineering\, and math) and applied physics.&lt;/p&gt;\
 n&lt;h2&gt;Zoom Broadcast:&lt;/h2&gt;\n&lt;p&gt;Amit Jha is inviting you to a scheduled Zoom
  meeting.&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p&gt;Topic: Amit Jha&#39;s Zoom Meeting&lt;/p&gt;\n&lt;p&gt;T
 ime: Aug 26\, 2021 06:30 PM Pacific Time (US and Canada)&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/
 p&gt;\n&lt;p&gt;Join Zoom Meeting&lt;/p&gt;\n&lt;p&gt;https://us02web.zoom.us/j/81719625637?pwd
 =Y2lVWkY0blhsQTRuOS9NeGRXWWtJQT09&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p&gt;Meeting ID: 817 
 1962 5637&lt;/p&gt;\n&lt;p&gt;Passcode: 508957&lt;/p&gt;\n&lt;p&gt;One tap mobile&lt;/p&gt;\n&lt;p&gt;+1669900
 6833\,\,81719625637#\,\,\,\,*508957# US (San Jose)&lt;/p&gt;\n&lt;p&gt;+13462487799\,\
 ,81719625637#\,\,\,\,*508957# US (Houston)&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p&gt;Dial by
  your location&lt;/p&gt;\n&lt;p&gt;+1 669 900 6833 US (San Jose)&lt;/p&gt;\n&lt;p&gt;+1 346 248 77
 99 US (Houston)&lt;/p&gt;\n&lt;p&gt;+1 253 215 8782 US (Tacoma)&lt;/p&gt;\n&lt;p&gt;+1 929 436 286
 6 US (New York)&lt;/p&gt;\n&lt;p&gt;+1 301 715 8592 US (Washington DC)&lt;/p&gt;\n&lt;p&gt;+1 312 
 626 6799 US (Chicago)&lt;/p&gt;\n&lt;p&gt;Meeting ID: 817 1962 5637&lt;/p&gt;\n&lt;p&gt;Passcode: 
 508957&lt;/p&gt;\n&lt;p&gt;Find your local number: https://us02web.zoom.us/u/km06Jd2rL
 &lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;h2&gt;
 Admission Fee:&lt;/h2&gt;\n&lt;p&gt;All admissions free. Suggested donations:&lt;/p&gt;\n&lt;p&gt;
 Non-IEEE:&amp;nbsp\; $5\,&amp;nbsp\;Students (non-IEEE): $3\,&amp;nbsp\;IEEE Members (
 not members of CASS or SSCS): $3&lt;/p&gt;\n&lt;/div&gt;\n&lt;div class=&quot;structured-conte
 nt__module l-mar-vert-6 l-sm-mar-vert-4 text-body-medium&quot;&gt;&lt;img class=&quot;stru
 ctured-content__image g-img&quot; src=&quot;https://img.evbuc.com/https%3A%2F%2Fcdn.
 evbuc.com%2Fimages%2F142617817%2F53572422154%2F1%2Foriginal.20210725-18174
 9?h=2000&amp;amp\;w=720&amp;amp\;auto=format%2Ccompress&amp;amp\;q=75&amp;amp\;sharp=10&amp;am
 p\;s=1b9f24465b0b41879be5d56431081cc9&quot; alt=&quot;\n		Circuit theory of LPHP-NGD
  composite for inductorless BP-NGD circuit design image\n&quot; /&gt;&lt;/div&gt;\n&lt;/div
 &gt;\n&lt;/div&gt;\n&lt;/div&gt;\n&lt;div class=&quot;g-group l-lg-mar-bot-6 l-md-mar-bot-4 l-pad
 -bot-6&quot;&gt;\n&lt;div class=&quot;g-cell g-cell-10-12 g-cell-md-12-12&quot;&gt;&amp;nbsp\;&lt;/div&gt;\n
 &lt;/div&gt;&lt;br /&gt;&lt;br /&gt;Agenda: &lt;br /&gt;&lt;div class=&quot;g-group l-mar-bot-6 l-sm-mar-b
 ot-4&quot;&gt;\n&lt;div class=&quot;structured-content g-cell g-cell-10-12 g-cell-md-1-1&quot;&gt;
 \n&lt;div class=&quot;has-user-generated-content&quot; data-automation=&quot;about-this-even
 t-sc&quot;&gt;\n&lt;div class=&quot;structured-content-rich-text structured-content__modul
 e l-align-left l-mar-vert-6 l-sm-mar-vert-4 text-body-medium&quot;&gt;\n&lt;h2&gt;&quot;Circu
 it theory of LPHP-NGD composite for inductor less BP-NGD circuit&quot;&lt;/h2&gt;\n&lt;p
 &gt;&amp;nbsp\;&lt;/p&gt;\n&lt;h3&gt;Dr. Blaise Ravelo\,&amp;nbsp\;Nanjing University of Informat
 ion Science &amp;amp\; Technology\, School of Electronic &amp;amp\; Information En
 gineering Nanjing\, China 210044&lt;/h3&gt;\n&lt;h3&gt;Event Organized By:&lt;/h3&gt;\n&lt;p&gt;&lt;a
  href=&quot;http://sites.ieee.org/scv-cas/&quot; target=&quot;_blank&quot; rel=&quot;nofollow noope
 ner noreferrer&quot;&gt;Circuits and Systems Society (CASS)&lt;/a&gt;&amp;nbsp\;of the&amp;nbsp\
 ;&lt;a href=&quot;http://sites.ieee.org/scv/&quot; target=&quot;_blank&quot; rel=&quot;nofollow noopen
 er noreferrer&quot;&gt;IEEE Santa Clara Valley Section&lt;/a&gt;&lt;/p&gt;\n&lt;h3&gt;&amp;nbsp\;&lt;/h3&gt;\n
 &lt;h2&gt;PROGRAM:&lt;/h2&gt;\n&lt;p&gt;6:30 - 7:00 PM&amp;nbsp\;Networking/Intro 7:00 - 7:50 PM
 &amp;nbsp\;Lecture7:50 - 8:00 PM Q&amp;amp\;A/Adjourn&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;h2&gt;Abs
 tract:&lt;/h2&gt;\n&lt;p&gt;This research work webinar introduces an original innovati
 ve theory not familiar to most of Circuit-And-System (CAS) engineers. The 
 original circuit theory is focused on inductor less negative group delay (
 NGD) topology. The considered passive cell comprised of resistor and capac
 itor elements without inductor operates as a bandpass (BP) NGD function. T
 he particular specifications of NGD functions are defined. The BP-NGD full
 y lumped circuits generally available in the literature operate with reson
 ant RLC-network. For the introduction\, a lumped circuit was first time id
 entified to exhibit the BP-NGD behavior without the presence of inductive 
 component. The inductor less BP-NGD topology is inspired from the combinat
 ion of low-pass (LP) and high-pass (HP) NGD passive cells. Therefore\, an 
 original LPHP-NGD composite topology is obtained. The identified BP-NGD to
 pology is constituted only by passive RC-networks. Then\, theoretical deve
 lopment of BP-NGD analysis is explored. The inductor less circuit theory s
 tarts with the identification of BP-NGD canonical form. Then\, the express
 ions of NGD value\, center frequency and attenuation in function of RC-net
 work parameters are established. The BP-NGD synthesis equations allowing t
 o determine the resistor and capacitor elements are derived. Proofs-of-con
 cept are designed and prototypes are fabricated to verify the effectivenes
 s of the developed LPHP-NGD composite theory. To validate the developed or
 iginal circuit theory\, two prototypes of RC-network based LPHP-NGD compos
 ite were designed\, fabricated\, simulated and tested. The two prototypes 
 were synthesized with respect to two different NGD center frequencies 13.5
  MHz and 22 MHz. As expected\, the calculated\, simulated and measurement 
 results are in very good agreement with NGD value of about some negative n
 anoseconds. In the future\, the characterized inductor less topology enabl
 e to overcome the traditional limitations of RLC-network based BP-NGD circ
 uits because of inductance self-effect limitation.&lt;/p&gt;\n&lt;h2&gt;Bio:&lt;/h2&gt;\n&lt;p&gt;
 Dr. Ravelo (Google scholar h-index(2021)=23 and i-index(2021)=64) is a ful
 l professor at NUIST &amp;amp\; researcher in Multiphysics and electronics eng
 ineering. He is a pioneer of the negative group delay (NGD) concept about 
 negative-time signal travelling physical space. He was research director o
 f 11 PhD students (8 defended)\, postdocs\, research engineers and Master 
 internships. He is ranked in Top 2% world&amp;rsquo\;s scientists based on yea
 r 2019 by Stanford University\, US. With European\, Asian\, American and A
 frican partners\, he is actively involved and contributes on several inter
 national research projects. He is member of IET Electronics Letters editor
 ial board as circuit &amp;amp\; system subject editor. He is (co-)authors of m
 ore than 350 scientific research papers in new technologies published in i
 nt. conf. and journals. He is lecturer on circuit &amp;amp\; system theory\, S
 TEM (science\, technology\, engineering\, and math) and applied physics.&lt;/
 p&gt;\n&lt;h2&gt;Zoom Broadcast:&lt;/h2&gt;\n&lt;p&gt;Amit Jha is inviting you to a scheduled Z
 oom meeting.&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p&gt;Topic: Amit Jha&#39;s Zoom Meeting&lt;/p&gt;\n&lt;
 p&gt;Time: Aug 26\, 2021 06:30 PM Pacific Time (US and Canada)&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\
 ;&lt;/p&gt;\n&lt;p&gt;Join Zoom Meeting&lt;/p&gt;\n&lt;p&gt;https://us02web.zoom.us/j/81719625637?
 pwd=Y2lVWkY0blhsQTRuOS9NeGRXWWtJQT09&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p&gt;Meeting ID: 8
 17 1962 5637&lt;/p&gt;\n&lt;p&gt;Passcode: 508957&lt;/p&gt;\n&lt;p&gt;One tap mobile&lt;/p&gt;\n&lt;p&gt;+1669
 9006833\,\,81719625637#\,\,\,\,*508957# US (San Jose)&lt;/p&gt;\n&lt;p&gt;+13462487799
 \,\,81719625637#\,\,\,\,*508957# US (Houston)&lt;/p&gt;\n&lt;p&gt;&amp;nbsp\;&lt;/p&gt;\n&lt;p&gt;Dial
  by your location&lt;/p&gt;\n&lt;p&gt;+1 669 900 6833 US (San Jose)&lt;/p&gt;\n&lt;p&gt;+1 346 248
  7799 US (Houston)&lt;/p&gt;\n&lt;p&gt;+1 253 215 8782 US (Tacoma)&lt;/p&gt;\n&lt;p&gt;+1 929 436 
 2866 US (New York)&lt;/p&gt;\n&lt;p&gt;+1 301 715 8592 US (Washington DC)&lt;/p&gt;\n&lt;p&gt;+1 3
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 ntent__module l-mar-vert-6 l-sm-mar-vert-4 text-body-medium&quot;&gt;&lt;img class=&quot;s
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 1749?h=2000&amp;amp\;w=720&amp;amp\;auto=format%2Ccompress&amp;amp\;q=75&amp;amp\;sharp=10
 &amp;amp\;s=1b9f24465b0b41879be5d56431081cc9&quot; alt=&quot;\n		Circuit theory of LPHP-
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END:VEVENT
END:VCALENDAR

