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The track regularly conducts the National Championship races for go-karts, motorcycle road racing and formula racing events. [5] [6] [7] The track is also approved by the CIK and FIA to hold races up to the Formula 3 category. The category of cars that race in this track include Formula Maruti, Formula LGB, and Formula Rolon Chevrolet. The ...
A typical LGB model train on a garden railway layout.. LGB stands for Lehmann Gross Bahn - the "Lehmann Big Train" in German. Made by Ernst Paul Lehmann Patentwerk in Nuremberg, Germany, since 1968 [1] and by Märklin since 2007, it is the most popular garden railway model in Europe, although there are also many models of U.S. and Canadian prototypes. [2]
Hornby Track-Master is a birds eye 2D Planning tool, distinct from Hornby Virtual Railway (HVR). HVR [ note 1 ] uses a 3D Planning Environment in which one can plan, build and test a layout. However, being released many years ago, it has fairly low quality graphics.
A garden railway's scale is usually in the range of 1/32 to 1/12 (1:12), running on either 45 mm (1.772 in) or 32 mm (1.26 in) gauge track. 1/32 scale (1:32) is also called "three-eighths scale" meaning 3/8 of an inch on the model represents one foot on the real thing.
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1:29 G scale boxcar by Aristo-Craft on G gauge track 1:32 scale 2-bay offset hopper by Mainline America. G scale or G gauge, also called large scale (45 mm or 1 + 3 ⁄ 4 inches), is a track gauge for model railways which is often used for outdoor garden railways because of its size and durability.
A journey planner, trip planner, or route planner is a specialized search engine used to find an optimal means of travelling between two or more given locations, sometimes using more than one transport mode.
Too tight a 'crest' curve could result in the train leaving the track as it drops away beneath it; too tight a 'trough' and the train will plough downwards into the rails and damage them. More precisely, the support force R exerted by the track on a train as a function of the curve radius r, the train mass m, and the speed v, is given by
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