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Filling weight. 18,739 lb (8,500 kg) Blast yield. 11 tons TNT (46 GJ) The GBU-43/B Massive Ordnance Air Blast (MOAB, / ˈmoʊæb /, colloquially explained as " mother of all bombs ") is a large-yield bomb, developed for the United States military by Albert L. Weimorts, Jr. of the Air Force Research Laboratory. [1][2] It was first tested in 2003.
The airstrike was carried out using the largest non-nuclear bomb in the United States' arsenal, the GBU-43/B Massive Ordnance Air Blast (MOAB), with the goal of destroying tunnel complexes used by the Islamic State – Khorasan Province (IS-KP). [5] [6] [7] The bomb was dropped from the rear cargo door of a United States Air Force Lockheed MC-130.
April 14, 2017 at 4:45 PM. The 11-ton "mother of all bombs" dropped by U.S. forces on ISIS-linked fighters in Afghanistan is a highly specialized weapon with a heritage dating back to huge bombs ...
This weapon was claimed to be the most powerful conventional (non-nuclear) weapon in the world, more powerful than GBU-43/B Massive Ordnance Air Blast, which is often unofficially called "Mother of All Bombs" or MOAB. [1] [2] FOAB was successfully field-tested in the late evening of 11 September 2007. [3]
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The GBU-43B known as the Massive Ordnance Air Blast took $314 million to develop and has a unit cost of $16 million.
Moab. A theoretical map of the region around 830 BCE. Moab is shown in purple on this map, between the Arnon and Zered rivers. Moab[a] (/ ˈmoʊæb /) is an ancient Levantine kingdom whose territory is today located in southern Jordan. The land is mountainous and lies alongside much of the eastern shore of the Dead Sea.
A thermobaric weapon, also called an aerosol bomb, or a vacuum bomb, [1] is a type of explosive munition that works by dispersing an aerosol cloud of gas, liquid or powdered explosive. [2][3] The fuel is usually a single compound, rather than a mixture of multiple molecules. [4] Many types of thermobaric weapons can be fitted to hand-held ...