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X-WR-CALNAME:International Moon Day
X-ORIGINAL-URL:https://internationalmoonday.org
X-WR-CALDESC:Events for International Moon Day
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TZID:Asia/Riyadh
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DTSTART:20240101T000000
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DTSTART;TZID=Asia/Riyadh:20250719T170000
DTEND;TZID=Asia/Riyadh:20250719T180000
DTSTAMP:20250718T212843Z
CREATED:20250714T080302Z
LAST-MODIFIED:20250718T212843Z
UID:10000224-1752944400-1752948000@internationalmoonday.org
SUMMARY:Space drones round trips to the moon: how are they possible?
DESCRIPTION:A science and technology presentation by the founder and CEO of Gaseous electronics LLC (www.gaselco.com). Riyadh\, Saudi Arabia.———AbstractThis presentation assesses the technical viability of a multi-stage propulsion concept for a 15-meter drone undertaking a lunar mission. The proposed architecture sequentially employs solid fuel for Low Earth Orbit (LEO) insertion\, an air-breathing engine for LEO-to-vacuum transition\, and a vacuum-optimized plasma thruster for trans-lunar cruise. Analysis indicates that while solid fuel propulsion is a mature and feasible solution for initial LEO insertion\, capable of delivering drone-scale payloads (e.g.\, 4-500 kg) \, the subsequent air-breathing engine stage presents a critical functional mismatch. Current Air-Breathing Electric Propulsion (ABEP) systems are designed for milli-Newton thrust levels (e.g.\, 6 mN) to compensate for atmospheric drag in Very Low Earth Orbit (VLEO) (120-250 km altitude)\, not to provide the substantial delta-V (3.2-3.6 km/s)  required for a rapid “kick” into vacuum or Trans-Lunar Injection (TLI). This inherent low-thrust characteristic renders ABEP unsuitable for orbital escape maneuvers. Conversely\, vacuum-optimized plasma thrusters (e.g.\, Ion\, Hall Effect\, VASIMR) are highly efficient for long-duration trans-lunar cruising\, achieving high specific impulse (2\,000-12\,000 s) with low thrust (mN to few N)\, leading to travel times of several months. However\, these systems demand continuous\, high-power electrical input (kW to MW range)\, necessitating significant advancements in compact\, high-power density energy sources and robust thermal management systems for drone integration. The overall concept’s viability is currently limited by the fundamental inability of proposed plasma technologies to provide high impulsive thrust for orbital escape and the substantial mass/complexity of required power infrastructure.
URL:https://internationalmoonday.org/event/space-drones-round-trips-to-the-moon-how-are-they-possible/
LOCATION:Riyadh\, Saudi Arabia\, Saudi Arabia
CATEGORIES:Online
ATTACH;FMTTYPE=image/png:https://internationalmoonday.org/wp-content/uploads/2025/07/Gaselco-modified.png
ORGANIZER;CN="Gaseous electronics LLC":MAILTO:amhala@gaselco.com
GEO:24.712160563211;46.671983564158
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BEGIN:VEVENT
DTSTART;TZID=UTC:20260712T000000
DTEND;TZID=UTC:20260712T235959
DTSTAMP:20260720T151212Z
CREATED:20260713T073646Z
LAST-MODIFIED:20260720T151212Z
UID:10000510-1783814400-1783900799@internationalmoonday.org
SUMMARY:The Lunar Stadium: Gaming Athletic Activities On The Moon
DESCRIPTION:This presentation and game engineering demonstration marks an official participation in International Moon Day 2026\, serving as a direct call to action for utilizing electronic sports as a frontier to explore lunar and space environments through artificial intelligence and advanced physics concepts. By shifting standard athletic mechanics into extreme atmospheric regimes—such as mapping sensorimotor execution noise and gravitational phase variances between Earth and Lunar habitats—the project illustrates how interactive\, simulation-driven gaming can model complex extraterrestrial physical constraints. It provides a bridge connecting modern physics\, computational AI models\, and competitive digital frameworks to inspire researchers and developers to leverage e-sports architectures for next-generation aerospace visualization\, training\, and planetary exploration workflows. \n\n\n\nWatch on Youtube
URL:https://internationalmoonday.org/event/the-lunar-stadium-gaming-athletic-activities-on-the-moon/
LOCATION:Riyadh\, Saudi Arabia\, Saudi Arabia
CATEGORIES:Online
ATTACH;FMTTYPE=image/png:https://internationalmoonday.org/wp-content/uploads/2026/07/Screenshot-2026-07-11-122934.png
ORGANIZER;CN="Gaseous electronics LLC":MAILTO:amhala@gaselco.com
GEO:24.712160563211;46.671983564158
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