Ващето сверхсветовая скорость существует — достаточно порыться в инете. Много о ней конечно не говорят — нет пока замены теории относительности. Но сверсвет получили даже в лабораторных условиях — объяснить пока тока не могут.
скорость света в материалах может быть меньше скорости света в вакууме, дак получили скорость именно в материале при переходе из одной среды в другую... ненадо разводить антинаучных демагогий :)
Да, абсолютна ерунда, бред. Ничего никто не доказывал. Теория относительности просто не может быть опровержена никем и никогда. Читайте "Наука и Жизнь"...
П.С. Не могу утверждать по-поводу доказательства (далёк, довольно таки от физики), но "эксперемент имел место быть" и, назовём их предположения, тоже были. Короче говоря, кто-то что-то разогнал :-)
а меня всегда удивляют люди верящие сентенциям типа "ученые доказали". хоть бы ссылку давали на доказательство, так ведь нет. потому как инфа из московского комсомольца перпечатана или с мембраны какой.
Про жизнь не факт!! Теоретически жизнь может возникнуть не только на основе углерода, а например на основе кремния. Например 30 лет назад, о химосинтезе небыло нечего известно, а теперь это доказаный факт
"The television system centered around two vidicon cameras, each equipped with an eight-position filter wheel. The vidicons were attached to telescopes mounted on a scan platform that allowed movement in vertical and horizontal directions for precise targeting on the planetary surfaces. These folded optics (Cassegrain) telescopes were required to provide narrow-angle, high-resolution photography. An auxiliary optical system mounted on each camera allowed the acquisition of a wide-angle, lower-quality image. Changing to the wide-angle photography was done by moving a mirror on the filter wheel to a position in the optical path of the auxiliary system. In addition to wide-angle capability, the filter wheels included blue bandpass filters, ultraviolet polarizing filters, minus ultraviolet high-pass filters, clear apertures, ultraviolet bandpass filters, defocussing lenses for calibration, and yellow bandpass filters. A shutter blade controlled the exposure of the 9.8- by 12.3-mm image face of the vidicon for an interval that could be varied from 3 msec to 12 sec. The light image formed on the photosensitive surface of the vidicon produced an electrostatic charge proportional to the relative brightness of points within the image. During vidicon readout, an electron beam scanned the back side of the vidicon and neutralized part of the charge so as to produce electric current variations proportional to the point charge being scanned at the time. These analog signals produced from the vidicon readout process were electronically digitized as 832 discrete dots or picture elements (pixels) per scan line, and presented to the flight data system in the form of 8-bit elements for transmission. Each TV frame-one picture-consisted of 700 of these vidicon scan lines. All timing and control signals, such as frame start, line start/stop, frame erase, shutter open/close, and filter wheel step, were provided by the systems on board the spacecraft. "
Комментарии
ага, ученые.. студенты на лавочке с пивом
какая связь между учёным и студентом ..? если это разные люди в принципе
...мдя.... жизни там явно НЕТ =)
За новость спасибо) еще в школе проходили — напомнил.
space.about.com
Mariner 10 тоже передавал фотографии
petermasek.tripod.com
"The television system centered around two vidicon cameras, each equipped with an eight-position filter wheel. The vidicons were attached to telescopes mounted on a scan platform that allowed movement in vertical and horizontal directions for precise targeting on the planetary surfaces. These folded optics (Cassegrain) telescopes were required to provide narrow-angle, high-resolution photography. An auxiliary optical system mounted on each camera allowed the acquisition of a wide-angle, lower-quality image. Changing to the wide-angle photography was done by moving a mirror on the filter wheel to a position in the optical path of the auxiliary system. In addition to wide-angle capability, the filter wheels included blue bandpass filters, ultraviolet polarizing filters, minus ultraviolet high-pass filters, clear apertures, ultraviolet bandpass filters, defocussing lenses for calibration, and yellow bandpass filters. A shutter blade controlled the exposure of the 9.8- by 12.3-mm image face of the vidicon for an interval that could be varied from 3 msec to 12 sec. The light image formed on the photosensitive surface of the vidicon produced an electrostatic charge proportional to the relative brightness of points within the image. During vidicon readout, an electron beam scanned the back side of the vidicon and neutralized part of the charge so as to produce electric current variations proportional to the point charge being scanned at the time. These analog signals produced from the vidicon readout process were electronically digitized as 832 discrete dots or picture elements (pixels) per scan line, and presented to the flight data system in the form of 8-bit elements for transmission. Each TV frame-one picture-consisted of 700 of these vidicon scan lines. All timing and control signals, such as frame start, line start/stop, frame erase, shutter open/close, and filter wheel step, were provided by the systems on board the spacecraft. "