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51. STEREO-Wind Radio Positioning of an Unusually Slow Drifting Event

52. Electron heat conduction in the solar wind: transition from Spitzer-H\'{a}rm to the collisionless limit

53. Highly structured slow solar wind emerging from an equatorial coronal hole

54. Alfvénic velocity spikes and rotational flows in the near-Sun solar wind

55. Electromagnetic waves and electron anisotropies downstream of supercritical interplanetary shocks

56. Shocklets, SLAMS, and field-aligned ion beams in the terrestrial foreshock

57. Dispersive Suprathermal Ion Events Observed by the Parker Solar Probe Mission

58. Near-Sun In Situ and Remote-sensing Observations of a Coronal Mass Ejection and its Effect on the Heliospheric Current Sheet

59. Structure on Interplanetary Shock Fronts: Type II Radio Burst Source Regions

60. The 17 April 2021 widespread solar energetic particle event

61. Total electron temperature derived from quasi-thermal noise spectroscopy in the pristine solar wind from Parker Solar Probe observations

62. Whistler waves generated inside magnetic dips in the young solar wind: Observations of the search-coil magnetometer on board Parker Solar Probe

63. Parker Solar Probe: Four Years of Discoveries at Solar Cycle Minimum

66. S/WAVES: The Radio and Plasma Wave Investigation on the STEREO Mission

67. Quantifying the Energy Budget in the Solar Wind from 13.3 to 100 Solar Radii.

68. Statistical Decomposition and Machine Learning to Clean In Situ Spaceflight Magnetic Field Measurements.

71. First Results From the SCM Search‐Coil Magnetometer on Parker Solar Probe

72. Suprathermal Ion Energy Spectra and Anisotropies near the Heliospheric Current Sheet Crossing Observed by the Parker Solar Probe during Encounter 7

73. Langmuir-Slow Extraordinary Mode Magnetic Signature Observations with Parker Solar Probe

74. Flux Rope Merging and the Structure of Switchbacks in the Solar Wind

75. Improving the Alfvén Wave Solar Atmosphere Model Based on Parker Solar Probe Data

76. Sub-Alfvénic Solar Wind Observed by the Parker Solar Probe: Characterization of Turbulence, Anisotropy, Intermittency, and Switchback

77. Parker Solar Probe Evidence for the Absence of Whistlers Close to the Sun to Scatter Strahl and to Regulate Heat Flux

78. Parker Solar Probe Enters the Magnetically Dominated Solar Corona

79. PSP/IS⊙IS observations of the 29 November 2020 solar energetic particle event

80. Simulations of radio-wave anisotropic scattering to interpret type III radio burst data from Solar Orbiter, Parker Solar Probe, STEREO, and Wind

82. Parker Solar Probe’s Measurements of the 29 November 2020 Solar Energetic Particle Event

84. Parker Solar Probe observations of He/H abundance variations in SEP events inside 0.5 au

85. Electron Bernstein waves and narrowband plasma waves near the electron cyclotron frequency in the near-Sun solar wind

86. A new view of energetic particles from stream interaction regions observed by Parker Solar Probe

88. The contribution of alpha particles to the solar wind angular momentum flux in the inner heliosphere

90. Electron heat flux in the near-Sun environment

91. Direct evidence for magnetic reconnection at the boundaries of magnetic switchbacks with Parker Solar Probe

92. Energetic particle behavior in near-Sun magnetic field switchbacks from PSP

93. Detection of small magnetic flux ropes from the third and fourth Parker Solar Probe encounters

94. Wave-particle energy transfer directly observed in an ion cyclotron wave

95. Alfvénic versus non-Alfvénic turbulence in the inner heliosphere as observed by Parker Solar Probe

96. Prevalence of magnetic reconnection in the near-Sun heliospheric current sheet

97. Narrowband oblique whistler-mode waves: comparing properties observed by Parker Solar Probe at <0.3 AU and STEREO at 1 AU

99. Whistler wave occurrence and the interaction with strahl electrons during the first encounter of Parker Solar Probe

100. Solar wind energy flux observations in the inner heliosphere: first results from Parker Solar Probe

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