C-SWEPA Publications
“Earth-Moon-Mars Radiation Environment Module framework”, Space Weather, vol. 8, p. S00E02, 2010.
, “Earth-Moon-Mars Radiation Environment Module framework”, Space Weather, vol. 8, p. S00E02, 2010.
, “Earth-Moon-Mars Radiation Environment Module framework”, Space Weather, vol. 8, p. S00E02, 2010.
, “Lunar radiation environment and space weathering from the Cosmic Ray Telescope for the Effects of Radiation (CRaTER)”, Journal of Geophysical Research (Planets), vol. 117, p. E00H13, 2012.
, “Lunar radiation environment and space weathering from the Cosmic Ray Telescope for the Effects of Radiation (CRaTER)”, Journal of Geophysical Research (Planets), vol. 117, p. E00H13, 2012.
, “Lunar radiation environment and space weathering from the Cosmic Ray Telescope for the Effects of Radiation (CRaTER)”, Journal of Geophysical Research (Planets), vol. 117, p. E00H13, 2012.
, “An analysis of heliospheric magnetic field flux based on sunspot number from 1749 to today and prediction for the coming solar minimum”, Journal of Geophysical Research (Space Physics), vol. 118, pp. 7525-7531, 2013.
, “An analysis of heliospheric magnetic field flux based on sunspot number from 1749 to today and prediction for the coming solar minimum”, Journal of Geophysical Research (Space Physics), vol. 118, pp. 7525-7531, 2013.
, “The CRaTER Special Issue of Space Weather: Building the observational foundation to deduce biological effects of space radiation”, Space Weather, vol. 11, pp. 47-48, 2013.
, “The CRaTER Special Issue of Space Weather: Building the observational foundation to deduce biological effects of space radiation”, Space Weather, vol. 11, pp. 47-48, 2013.
, “The CRaTER Special Issue of Space Weather: Building the observational foundation to deduce biological effects of space radiation”, Space Weather, vol. 11, pp. 47-48, 2013.
, “Decline and Recovery of the Interplanetary Magnetic Field during the Protracted Solar Minimum”, \apj, vol. 775, p. 59, 2013.
, “Decline and Recovery of the Interplanetary Magnetic Field during the Protracted Solar Minimum”, \apj, vol. 775, p. 59, 2013.
, “Global Numerical Modeling of Energetic Proton Acceleration in a Coronal Mass Ejection Traveling through the Solar Corona”, \apj, vol. 778, p. 43, 2013.
, “Initiation of Coronal Mass Ejections by Sunspot Rotation”, \solphys, vol. 286, pp. 453-477, 2013.
, “The Interaction of Two Coronal Mass Ejections: Influence of Relative Orientation”, \apj, vol. 778, p. 20, 2013.
, “Validation of PREDICCS using LRO/CRaTER observations during three major solar events in 2012”, Space Weather, vol. 11, pp. 350-360, 2013.
, “Validation of PREDICCS using LRO/CRaTER observations during three major solar events in 2012”, Space Weather, vol. 11, pp. 350-360, 2013.
, “Validation of PREDICCS using LRO/CRaTER observations during three major solar events in 2012”, Space Weather, vol. 11, pp. 350-360, 2013.
, “Validation of PREDICCS using LRO/CRaTER observations during three major solar events in 2012”, Space Weather, vol. 11, pp. 350-360, 2013.
, “Weakest Solar Wind of the Space Age and the Current ``Mini'' Solar Maximum”, \apj, vol. 779, p. 2, 2013.
, “Weakest Solar Wind of the Space Age and the Current ``Mini'' Solar Maximum”, \apj, vol. 779, p. 2, 2013.
, “Weakest Solar Wind of the Space Age and the Current ``Mini'' Solar Maximum”, \apj, vol. 779, p. 2, 2013.
, “Coronal electron temperature in the protracted solar minimum, the cycle 24 mini maximum, and over centuries”, Journal of Geophysical Research (Space Physics), vol. 119, pp. 1486-1492, 2014.
, “Coronal electron temperature in the protracted solar minimum, the cycle 24 mini maximum, and over centuries”, Journal of Geophysical Research (Space Physics), vol. 119, pp. 1486-1492, 2014.
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