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PRODID:IEEE vTools.Events//EN
CALSCALE:GREGORIAN
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TZID:Asia/Kathmandu
BEGIN:DAYLIGHT
DTSTART:20380119T085907
TZOFFSETFROM:+0545
TZOFFSETTO:+0545
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BEGIN:STANDARD
DTSTART:19860101T001500
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BEGIN:VEVENT
DTSTAMP:20120224T103009Z
UID:EF065559-E5B6-11E7-833E-0050568D7F66
DTSTART;TZID=Asia/Kathmandu:20120218T083000
DTEND;TZID=Asia/Kathmandu:20120218T103000
DESCRIPTION:In the presence of external perturbation\, such as electric\, m
 agnetic fields or temperature gradient electrons move in a definite path e
 ither along the field or in the direction perpendicular to the direction o
 f the applied field. The degree of freedom of such electrons can be quanti
 zed form 3\, 2\, 1 to zero dimension by either spatial quantization or qua
 ntization due to such fields describe above. In such quantized low dimensi
 onal system\, the dimension of the semiconductor system is of the order of
  deBroglie wave length it is very interesting to study the transport param
 eters such as mobility\, seebeck coefficient\, figure of merit due to thei
 r application not only in the present technology but also to know the phys
 ics behind them. Furthermore\, the study of such parameters in metal nanop
 article\, the physical and chemical properties of which depends significan
 tly on the surface area also is equally important and interesting.\n\nCo-s
 ponsored by: GoldenGate Int&#39;l College\n\nSpeaker(s): Sanju Shrestha\, \n\n
LOCATION:
ORGANIZER:bhadrapokharel@ioe.edu.np
SEQUENCE:0
SUMMARY:[Legacy Report] Electronic Transport in Quantized Low Dimensional S
 emiconductor Systems and Metal Nanoparticles
URL;VALUE=URI:https://events.vtools.ieee.org/m/73489
X-ALT-DESC:Description: &lt;br /&gt;In the presence of external perturbation\, su
 ch as electric\, magnetic fields or temperature gradient electrons move in
  a definite path either along the field or in the direction perpendicular 
 to the direction of the applied field. The degree of freedom of such elect
 rons can be quantized form 3\, 2\, 1 to zero dimension by either spatial q
 uantization or quantization due to such fields describe above. In such qua
 ntized low dimensional system\, the dimension of the semiconductor system 
 is of the order of deBroglie wave length it is very interesting to study t
 he transport parameters such as  mobility\, seebeck coefficient\, figure o
 f merit due to their application not only in the present technology but al
 so to know the physics behind them. Furthermore\, the study of such parame
 ters in metal nanoparticle\, the physical and chemical properties of which
  depends significantly on the surface area also is equally important and i
 nteresting.       
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