Prompt: Electrons play an essential role in numerous physical phenomena, such as electricity, magnetism, chemistry, and thermal conductivity; they also participate in gravitational, electromagnetic, and weak interactions.[16] Since an electron has charge, it has a surrounding electric field; if that electron is moving relative to an observer, the observer will observe it to generate a magnetic field. Electromagnetic fields produced from other sources will affect the motion of an electron according to the Lorentz force law. Electrons radiate or absorb energy in the form of photons when they are accelerated. Laboratory instruments are capable of trapping individual electrons as well as electron plasma by the use of electromagnetic fields. Special telescopes can detect electron plasma in outer space. Electrons are involved in many applications, such as tribology or frictional charging, electrolysis, electrochemistry, battery technologies, electronics, welding, cathode-ray tubes, photoelectricity, photovoltaic solar panels, electron microscopes, radiation therapy, lasers, gaseous ionization detectors, and particle accelerators.
Prompt: Radial gates are rotary gates consisting of cylindrical sections. They may rotate vertically or horizontally. Tainter gates are a vertical design that rotates up to allow water to pass underneath. Low friction trunnion bearings, along with a face shape that balances hydrostatic forces, allow this design to close under its own weight as a safety feature.
Prompt: In a gravity dam, the force that holds the dam in place against the push from the water is Earth's gravity pulling down on the mass of the dam.[42] The water presses laterally (downstream) on the dam, tending to overturn the dam by rotating about its toe (a point at the bottom downstream side of the dam). The dam's weight counteracts that force, tending to rotate the dam the other way about its toe. The designer ensures that the dam is heavy enough that the dam's weight wins that contest. In engineering terms, that is true whenever the resultant of the forces of gravity acting on the dam and water pressure on the dam acts in a line that passes upstream of the toe of the dam.[citation needed] The designer tries to shape the dam so if one were to consider the part of the dam above any particular height to be a whole dam itself, that dam also would be held in place by gravity, i.e., there is no tension in the upstream face of the dam holding the top of the dam down. The designer does this because it is usually more practical to make a dam of material essentially just piled up than to make the material stick together against vertical tension.
Prompt: worn old family home along a muddy ditch road, rural, line art and watercolor in the style of Nikolai Clodt von Jürgensburg, Vladimir Kozlovsky
Prompt: fantasy castle of glass in the space void, dark blue and green tones, surreal, melancholic, intricate, complementary colors, accurate, digital painting, fantasy, fantastic view, intricate background, cinematic lighting, crisp quality, cinematic postprocessing, HQ, 8k, ultra detailed, award winning, a masterpiece, Toosh Toosh, Anna Dittmann, Alphonse Mucha, Jordan Grimmer, Ismail Inceoglu, Huang Guangjian, Dan Witz, Salvador Dalí, Naoto Hattori, Tom Bagshaw, Johnson Tsang, Carrie Ann Baade, Android Jones, Daniel F Gerhartz, Gustave Dore, H.R. Giger, Junji Ito, Meghan Duncanson, Jennifer Lommers, Didier Lourenço, Blake Neubert, Jacek Yerka, Michelangelo, Gediminas Pranckevicius, Catherine Abel, George Callaghan, Jean Baptiste Monge, Jessica Rossier, Brian Froud, Gustave Baumann, Hugo Pratt, Nicki Boehme, Thomas Kinkade, Marianne Fons, Z.L. Feng, Josephine Wall, Artgerm, Artstation
Dream Level: is increased each time when you "Go Deeper" into the dream. Each new level is harder to achieve and
takes more iterations than the one before.
Rare Deep Dream: is any dream which went deeper than level 6.
Deep Dream
You cannot go deeper into someone else's dream. You must create your own.
Deep Dream
Currently going deeper is available only for Deep Dreams.