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Simon ist 17 Jahre alt und schwul. Das weiß aber niemand, und Simon würde es gern auch dabei belassen. Einzig einem anonymen Brieffreund vertraut er sich an. Als eine dieser Mails seinem Klassenkameraden Martin in die Hände fällt und dieser Simon erpressen will, wird das Coming-out erstmals zur Option.
Caleb kann sein Glück kaum fassen: Er gewinnt einen Aufenthalt im privaten Domizil des genialen Konzernchefs Nathan. Was er hier sieht, übersteigt seine kühnsten Vermutungen hinsichtlich künstlicher Intelligenz: Eine wunderschöne Roboterfrau bringt ihn dazu, alle moralischen Fragen neu zu formulieren.
Im Jahr 2035 sind Roboter ein normaler Teil des Alltagslebens: Man vertraut ihnen und lässt sie alle unliebsamen Aufgaben verrichten. Doch dann stirbt ein Wissenschaftler, und Detective Del Spooner ist überzeugt davon, dass nur ein Roboter der Mörder sein kann. Wirtschaftlich ist diese Theorie ein Desaster.
Anhand des Beispiels von Meereswellen vermittelt der Film dem Zuschauer die Möglichkeit, alle Formen mechanischer Wellen zu verstehen. Die Wellen und ihre Interaktionen werden stellvertretend für andere Wellen mit Formeln, Grafiken, Aufnahmen und Animationen verständlich erklärt und dargestellt.
Christine ist jung, anarchisch und künstlerisch veranlagt. Leidenschaftlich gern würde sie statt an der West- an der Ostküste leben. Trotz geringer Chancen setzt sie alles daran, ihren Traum zu verwirklichen – beeinflusst von Mutter und Vater, ihrer besten Freundin und zwei aufregenden jungen Männern.
Mildred Hayes ist gebrochen, als ihre Tochter ermordet aufgefunden wird. Dass der Sheriff und der Officer in ihrer Heimatstadt Ebbing den Fall nur lustlos angehen und lieber die schwarze Bevölkerung schikanieren, macht sie unendlich wütend. Sie kritisiert die Polizei auf drei Plakatwänden vor der Stadt.
Mitte des 18. Jahrhunderts wurde in England die Dampfmaschine erfunden. In 150 Jahren veränderte sie unsere Welt. Mit ihr kamen Licht, Lärm und Energie ins Leben der Menschen. NZZ Format widmet sich dem mechanischen Kraftprotz und stellt fest: Dampfmaschinen waren die Geburtshelfer der Globalisierung.
Der Regisseur nimmt die Zuschauer mit auf eine Reise zum einschneidenden Erlebnis im Leben seines Vaters: Nach einem Autounfall verlor dieser all seine Erinnerungen und fing ein ganz neues Leben an. Allerdings kommen Fragen auf, ob hinter der Amnesie nicht vielleicht doch noch etwas anderes steckte.
Nikola Tesla, Entdecker des Wechselstromprinzips, wollte schon um 1900 Energie drahtlos übertragen und sie so für jedermann frei verfügbar machen. Seine Vision ging nicht in Erfüllung. Tesla ist heute fast vergessen. Diese Dokumentation macht sich daran, alles über ihn herauszufinden.
When light rays fall through a small hole in the front wall of an otherwise light-proof box, the image of the object that is in direct line in front of the hole is imaged overhead on the inside back of the box. The film describes step by step how this image is created and how to calculate the image size.
Taking water as an example, the film explains the different states of aggregation of a substance. Below 0 °C, water is solid – it exists as ice. At its melting temperature of 0 °C it takes on liquid form, and at boiling temperature of 100 °C it changes to the gaseous state at normal pressure.
Die Film Flat bietet über 8.000 rechtssichere Unterrichtsfilme für alle Schulformen, Fächer und Altersklassen. Das Angebot umfasst Lehrfilme, Dokumentationen und Spielfilme. Lehrkräfte können die Videos streamen, herunterladen und mit ihren Schülerinnen und Schülern teilen.
Optical devices influence the course of light rays through lenses. The film shows how lenses are made in the eye and in visual aids such as glasses. The much stronger lenses of magnifying glasses and microscopes are also examined in detail. It is explained how exactly the multiple magnification is achieved.
Optical lenses are transparent, light-refracting bodies with at least one curved surface. The video introduces the different forms of lenses and how they work and shows their uses. Important terms such as focal point, refractive power and focal length are explained and the two lens formulas are derived.
If the curvature of a curved mirror is convex, it distorts the mirror image. If it is concave, this is also true, except that the image is also upside down. The film explains why this is so and how the laws of reflection explain it. In addition, the video shows possible applications for everyday life.
The moon does not shine itself, but only reflects the light of the sun. That is why the phases of the moon depend on it. The film shows how the moon changes in our perception depending on the angle it is at to the sun. At an angle of zero degrees it is new moon, at an angle of 180 degrees it is full moon.
Mass is one of the seven basic physical quantities. This video gives an understandable definition of this quantity, names its unit of measurement and explains how it is related to the force of weight. Colloquially and outside the physical context, mass is also called weight, which can lead to confusion.
This video explains the concept of a magnetic field. It clearly describes some essential effects of magnetism and illustrates the concept of field lines. The film shows what the Earth´s magnetic field is all about, it clarifies geographical and magnetic poles and goes into the phenomenon of declination.
Lorentz force describes the effect of magnetic fields on moving electrons. It acts perpendicularly to the magnet´s field lines and to the direction of the electrons. The film shows how to determine the direction of movement of the electrons using the three-finger rule and where this force is used for technical purposes.
Power is a measure of the speed of work, and the watt is the unit in which energy consumption is measured. The film gives the definition of watt. You can compare mechanical, thermal and electrical power and easily convert them into each other. This video explains why and how this conversion is possible.
The invention of the diode was soon followed by the development of another electrode - the triode. This was the first amplifier. These amplifiers were used extensively until the transistor almost completely replaced them. As the video shows, electron tubes are now only used in high-end guitar amplifiers.
For a surface to reflect light, it must be very smooth. A regular reflection is given, for example, by processed glass and metal, which are used to make mirrors. The film explains the law of reflection, the creation of illusions through partial reflection, and that the mirror image is a result of our own perception.
The first semiconductors were discovered in passing when people wanted to make the light bulb more economical. Since then, a lot has changed about them. The film retraces this development and explains not only how the diode works, but also some important technical terms and the use of semiconductor diodes.
This film presents four common semiconductors that we use frequently in everyday life. It explains the structure and functioning of the thyristor, the triac, the photo-semiconductor, and the LED and shows examples of where they are used - such as washing machines, elevators, light switches and headlights.
No other component is used as frequently in electronic devices as the transistor. This video tells the story of the component: how it was invented, how it revolutionized and drove technology, how exactly it works and what uses have been found for it over time - especially since the beginning of the digital age.
Levers are simple machines, or more precisely, they are mechanical force converters that magnify the force which is applied. The film explains the law of levers and shows the different forms of levers. Examples of different lever tools are given, such as scissors, tweezers, wheelbarrows, and nutcrackers.
In addition to conductors and non-conductors, there are also so-called semiconductors with regard to electrical conductivity. Using the example of silicon, the film explains how a substance can change from a non-conductor to a conductor under certain conditions. It mentions the many possible uses of semiconductors.
With the colours blue, yellow and purple, all colours can be produced. This is due to subtractive colour mixing: the colours act like a filter that prevents you from still seeing the original colours. The video explains understandable how the absorption spectrum of the filter makes some colours visible.
For a temperature measurement procedure to be exact, it has to be reliable and repeatable. This films looks at different temperature measuring devices, namely the thermometer, the bimetallic thermometer, and the resistance thermometer, which depend on changeable substance properties at different temperatures.
This video shows how the state of motion, gravity and magnetic attraction of objects changes when different physical forces act on them. The film shows that the effects of these forces are measured in Newtons and that they are vector quantities. The law of interaction is also explained with examples.