About This GameMoney literally lies beneath our feet, but only few are willing to make an effort to get it. You are one of those enthusiasts who are not afraid of hard work and possible risks, and bravely go down to the bowels of the earth to find their wealth. Neither the severe climate of Siberia, nor professional challenges can stop you from achieving your cherished goal - to get enough resources for a lunar station. Run large Russian enterprises whose mission is to explore, exploit and sell both minerals and processing products. Organize your work in a way to minimize costs and increase profits, expand your business on domestic market and gain access to external ones. Search for new reserves, but don't forget about competition: it’s not only you who wants to make these mines their own gold ones. Convert your income into gold reserve to top the leaderboard. GEOGRAPHIC ACCURACYExploration and exploitation are being carried out on the same territories of the Russian Federation as in real life.MANAGEMENT TASKSLarge enterprises are in your hands, which means that you have to make important decisions affecting the future of your business.ELEMENT OF COMPETITIONTry to top the Steam leaderboard by earning a gold reserve larger than other players.1075eedd30
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Sneak Peek #21 - Tardigrade: radiation resistance secret:
STONE COAL - solid fuel mineral from plant origin - a kind of fossil coal, intermixture of brown coal and anthracite. Coal is a dense rock of black or gray-black color, making a black line on a porcelain plate. Organic matter contains 75-92% carbon, 2.5-5.7% hydrogen, 1.5-15% oxygen. The highest calorific value in terms of dry ash-free state is 30.5-36.8 MJ / kg. Most hard coal belongs to the humolites; sapropelites and humitosapropelites are present in the form of lenses or small layers. Coals are in the form of layers and lenticular deposits of various thickness (from fractions of meters to several tens and hundreds of meters) at different depths (from surface outlets up to 2500m and deeper). Coals are formed from decomposition products of organic residues of higher plants that have undergone changes (metamorphism) under the pressure of the surrounding rocks of the earth's crust and relatively high temperatures.. Sneak Peek #14 - Lunar-orbit space station: The biggest step of the Moon as well as near-lunar space exploration program is the construction of a moon-orbiting space station, brought within a few thousand kilometers of the lunar surface. It is intended to serve as a solar-powered communications hub, science laboratory, short-term habitation module, and holding area for rovers and other robots. With its help, mankind will be able to colonize the Moon and launch flights to other planets, such as Mars. The station will have four main modules: habitat module, the module to generate electricity, modules that'll help to control the whole station and conduct experiments, and also docking and spacewalks modules. The technologies needed to develop not only the Moon, but also deep space, will be tested on board the station. In particular, it will provide an opportunity to explore the lunar surface using the lunar rovers and landing stations.. Sneak Peek #6 - BUCKET-WHEEL EXCAVATOR: BUCKET-WHEEL EXCAVATOR is a heavy equipment used in surface mining. The primary function of BWEs is to act as a continuous digging machine in large-scale open-pit mining operations, removing thousands of tons of overburden a day. What sets BWEs apart from other large-scale mining equipment, such as bucket chain excavators, is their use of a large wheel consisting of a continuous pattern of buckets used to scoop material as the wheel turns. They rank among the largest vehicles (land or sea) ever produced, and the largest of the bucket-wheel excavators (the 14,200 ton Bagger 293) still holds the Guinness World Record for the heaviest land-based vehicle ever constructed by man. Bucket-wheel excavators have been used in mining for the past century, with some of the first being manufactured in the 1920s. They are used in conjunction with many other pieces of mining machinery (conveyor belts, spreaders, crushing stations, heap-leach systems, etc.) to move and mine massive amounts of overburden (waste). The principal components of a BWE are the bucket-wheel with its buckets, the bucket-wheel drive at the head of the wheel boom, the slewable superstructure with counterweight boom, the substructure with crawler undercarriage and a transfer boom or loading unit (crawler-mounted loading bridge) for transfer of material to the bench conveyor. In the 1950s two German mining firms ordered the world's first extremely large BWEs, and had three BWEs built for mining lignite near Cologne, Germany. The German BWEs had a wheel of over 16 m (52 ft) in diameter, weighed 5,500 short tons (5,000 t) and was over 180 m (600 ft) long, with eighteen crawler units for movement and could cut a swath of over 180 m (600 ft) at one time. Sneak Peek #16 - The colonization of the Moon: The colonization of the Moon is one of the main strategic goals of astronautics. The lunar base is a unique place for maintaining scientific experiments in the field of planetology, astronomy, cosmology, space biology, and other disciplines. The study of the lunar crust is vital for tracing both the evolutionary history of the solar system and the emergence of life. The absence of the atmosphere allows building optical and radio telescopes on the lunar surface, which are able to get much more detailed images than with using terrestrial telescopes. An important reason for the colonization of the Moon is also the presence of minerals on it, the reserves of which are coming to an end on the Earth (helium-3) or the delivery of which to the orbit is too expensive (iron, aluminum, titanium). On the Moon there are deposits of water ice - a source of water, oxygen, hydrogen. In some cases, it is easier to use lunar material than to deliver it from Earth. According to the experts' assessments, the Moon contains at least 1 million tons of helium-3, which will fully provide the thermonuclear energy of mankind for a period of more than 1000 years. Today it takes approximately 30 tons of helium-3 to supply the entire population of the Earth for a year. The extraction of helium-3 and the change-over to thermonuclear energy is especially important, given the fact that the hydrocarbons reserves on Earth will dry up in about 50-90 years. The deep vacuum and the availability of cheap solar energy open up new horizons for electronics, metallurgy, metalworking and materials science. In fact, the conditions for the processing of metals and the creation of microelectronic devices on Earth are less favorable because of the large amount of free oxygen in the atmosphere, which deteriorates the quality of casting and welding, making it impossible to produce ultra-pure alloys and chip substrates at huge volumes. Due to its impressive landscapes and exoticism, the Moon will most likely be a viable space tourist destinations, which can attract a significant amount of funds for its development, contribute to the popularization of space travelling, encourage many people to study the lunar surface. Space tourism will require certain infrastructure solutions. Infrastructure development, in turn, will contribute to a more extensive lunar penetration.. Sneak Peek #15 - Placer mining: Placer mining, ancient method of using water to excavate, transport, concentrate, and recover heavy minerals from alluvial or placer deposits. Examples of deposits mined by means of this technique are the gold-bearing sands and gravel that settle out from rapidly moving streams and rivers at points where the current slows down. Placer mining takes advantage of gold’s high density, which causes it to sink more rapidly from moving water than the lighter siliceous materials with which it is found. Though the basic principles of placer mining have not altered since early times, methods have improved considerably. Specific placer mining equipment is needed for each of the methods which can be classified according to the several methods of excavating and transporting the gravel, or they may be designated to correspond with the various ways of saving the gold. The actual moving of the gravel from place is always the principal concern of the miner, and often the gold-saving is entirely incidental to the working of the deposit. The following classification, therefore, seems the most logical and is the one generally used by placer miners:
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