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The Propagation of An Impulsive Coronal Mass Ejections (CMEs) due to the High Solar Flares and Moreton Waves

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper provides a short review of some of the basic concepts related to the origin of Coronal Mass Ejections (CMEs). The numerous ideas which have been put forward to elucidate the initiation of CMEs are categorized in terms of whether this event is a gradual CME or impulsive CME. In this case, an earth-directed Coronal Mass Ejection (CME) was observed on April 2, 2014 by the Large Angle Spectrometric Coronagraph (LASCO) C2. This recent observations obtained a large impulsive CMEs. The CME, originating from the active region AR2027. The speed of CMEs is 1600 kms-1. A halo CME, a bright expanding ring at the North-West region is exploded beginning at about 14:36 UT, and the process of departing, expansion and propagation are highlighted. We discuss the correspondence of this event with the structure of the CME in the LASCO data. It is believed that the high solar flare and a Moreton waves initiate this kind of CMEs.
Słowa kluczowe
Rocznik
Strony
118--126
Opis fizyczny
Bibliogr. 41 poz., rys.
Twórcy
autor
  • School of Physics and Material Sciences, Faculty of Sciences, MARA University of Technology, 40450, Shah Alam, Selangor, Malaysia
  • Academy of Contemporary Islamic Studies (ACIS), MARA University of Technology, 40450, Shah Alam, Selangor, Malaysia
Bibliografia
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  • [18] Z. S.Hamidi, Z. Abidin, Z. Ibrahim, N. Shariff, C. Monstein, Modification and Performance of Log Periodic Dipole Antenna, International Journal of Engineering Research and Development 3 (2012) 36-39.
  • [19] Z. S.Hamidi, Z. Abidin, Z. Ibrahim, C. Monstein, N. Shariff, Signal Detection Performed by Log Periodic Dipole Antenna (LPDA) in Solar Monitoring, International Journal of Fundamental Physical Sciences 2 (2012) 32-34.
  • [20] Z. S.Hamidi, N. M.Anim, N. N.S.Hakimi, N.Hamzan, A.Mokhtar, N.Syukri, S.Rohizat, I.Sukma, Z.A. Ibrahim, Z. Z.Abidin, N. N. M.Shariff, C.Monstein, Application of Log Periodic Dipole Antenna (LPDA) in Monitoring Solar Burst at Low Region Frequencies Region, International Journal of Fundamental Physical Sciences 2 (2012) 4.
  • [21] Z.S.Hamidi, N .N. M. Shariff, Determination of Isotropic Source Spectral Power of the Log Periodic Dipole Antenna (LPDA), International Journal of Science and Mathematics 2 (2014) 3.
  • [22] Z. S.Hamidi, Z. Abidin, Z. Ibrahim, N. Shariff, Indication of radio frequency interference (RFI) sources for solar burst monitoring in Malaysia, ICPAP 2011, AIP Publisher, Indonesia, 2012, pp. 6.
  • [23] Z.S. Hamidi, N .N. M. Shariff, C. Monstein, High Time Resolution Observation of Solar Radio of A Group Type III And U Burst Associated of Solar Flares Event, The International Journal of Engineering 1 (2012) 3.
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  • [37] Z. S. Hamidi, N. N. M. Shariff, C. Monstein, International Letters of Chemistry, Physics and Astronomy 11(2) (2014) 135-145.
  • [38] Z. S. Hamidi, N. N. M. Shariff, C. Monstein, International Letters of Chemistry, Physics and Astronomy 11(2) (2014) 167-176.
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  • [41] Z. Hamidi, N. Shariff, C. Monstein, International Letters of Chemistry, Physics and Astronomy 12 (2014) 84-102.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-dd3058f6-b04b-440b-8123-2b2cb3ff1742
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