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Warframe is a free-to-play action role-playing third-person shooter multiplayer online game developed and published by Digital Extremes.First released for Windows personal computers in March 2013, it was later ported to PlayStation 4 in November 2013, Xbox One in September 2014, Nintendo Switch in November 2018, PlayStation 5 in November 2020, Xbox Series X/S in April 2021, and iOS in February ...
Digital Extremes Ltd. is a Canadian video game developer founded in 1993 by James Schmalz. They are best known for creating Warframe, a free-to-play cooperative online action game, and co-creating Epic Games' Unreal series of games.
Tom Clancy's The Division 2 is a 2019 online-only action role-playing video game developed by Massive Entertainment and published by Ubisoft.The game, which is the sequel to Tom Clancy's The Division (2016), is set in a near-future Washington, D.C., in the aftermath of the release of a genetically engineered virus known as "Green Poison", and follows an agent of the Strategic Homeland Division ...
These paradoxes have stirred extensive philosophical and mathematical discussion throughout history, [1] [2] particularly regarding the nature of infinity and the continuity of space and time. Initially, Aristotle 's interpretation, suggesting a potential rather than actual infinity, was widely accepted. [ 1 ]
Unobtainium (or unobtanium) is a term used in fiction, engineering, and common situations for a material ideal for a particular application but impractically difficult or impossible to obtain.
Critical Role is a creator-owned streaming show where the cast play an ongoing Dungeons & Dragons campaign, with Matthew Mercer as the show's Dungeon Master for the seven other cast members.
In fluid dynamics, pipe network analysis is the analysis of the fluid flow through a hydraulics network, containing several or many interconnected branches. The aim is to determine the flow rates and pressure drops in the individual sections of the network.
This equation is called the mass continuity equation, or simply the continuity equation. This equation generally accompanies the Navier–Stokes equation. In the case of an incompressible fluid, Dρ / Dt = 0 (the density following the path of a fluid element is constant) and the equation reduces to: