Once you have an idea of what positions you might be interested in, come join us on our next mission! Train for the Mission. Join the Next Mission. If you have no idea what Artemis is, start here by watching others play the game! If that looks fun to you, continue forth Cadet!
Read a Tutorial Watch a Tutorial. The helm officer is one of the most important stations on the bridge. The helm officer steers the ship, performs evasive maneuvers, and assists the weapons officer with getting in the best position to make a good, clear shot. Read a Tutorial. The engineering officer is responsible for the damage control teams as well as changing power levels between various systems to ensure peak performance The science officer is responsible for scanning nearby ships and spatial anomalies to help the Captain determine who is friend or foe, as well as helps the weapons officer in determining the weaknesses of enemy ships.
The comms officer is responsible for all ship-to-ship communications, as well as setting Red Alert when necessary. As all comms are text-based, a decent typing speed is preferred for this position. Want to join us on our next Artemis mission? Click the button below to go to our Meetup page to see when the next mission is scheduled! Not quite ready to join the Artemis mission but you'd like to learn more about the game and get some practice in?
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Report to the Bridge! Realism is the key to this. In order to maintain a high level of quality and provide our customer the best experience, we offer service and support 24 hours seven days a week. The latest version of Polaris Ship's Bridge Simulator is 5. Modelling reality Our ship bridge simulator SimFlex4, has been under constant development for over 30 years.
It is renowned for its realism. Right from the very beginning focus has been on correctly modelling the hydro- and aerodynamic physical characteristics. This is done by addressing all the forces acting on the vessel and then solving the equation of motions for the vessel. Each force component is a function of many variables, which each contribute to the total force exerted and the corresponding motion.
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