Sunday, 30 March 2014

VENUS

V e N U s



Venus is a rocky planet and the second  planet from the Sun. Venus spins slowly back wards as it orbits the sun, causing its rotation period to be the longest in the solar system, about 234 Earth days. It is slightly smaller than Earth and probably has a similar internal structure, consisting of a semi-solid metal core , surrounded by a rocky mantle and crust. Venus is the brightest object in the sky after the sun and Moon because its atmosphere reflects sunlight strongly. The main component of the atmosphere is carbon dioxide, which traps heat in a green house effect far stronger than that on Earth. As a result, Venus is the hottest planet, with a maximum surface temperature of about  480°C. The thick cloud layers contain droplets of sulphuric acid and are driven around the planet by wind at speed of up to 360 kilometer per hour. Although the planet takes 243 Earth days to rotate once, the high speed winds cause the clouds to circle the planet in only four days. The high temperature, acidic clouds and enormous atmospheric pressure (about 90 times greater at the surface than that on Earth) make the environment extremely hostile. However, space probes have managed to land on Venus and photograph its dry, dusty surface. The Venusian surface has also been mapped by probes with radar equipment that can see through the cloud layers. Such radar maps reveal a terrain with craters, mountains, volcanoes and ares where craters have been covered by plains of solidified volcanic lava. There are two large high land regions called Aphrodite Terra and Ishtar Terra.



TILT AND ROTATION OF VENUS




Thursday, 27 March 2014

CAMERA AND IT'S WORKING

C a M E r A


A camera is an instrument for recording images on photographic film. It consists of a light-tight box with a shutter, a lens containing a diaphragm, and a viewing system. When the shutter is released, the film is exposed to light from the subject that is being photographed. Adjusting the shutter speed alters the time for which the film is exposed to light. The diaphragm, by altering the aperture of the lens, controls the intensity of light entering the camera. The total amount of light entering the camera is called the exposure. The lens focuses the light on to the film. When there is insufficient  light to produce an adequate image, a flash gun may be used to give extra light.


KEYBOARD INSTRUMENTS

K e Y B o A r D     I n s T r U M e N T s




Keyboard instruments are instruments that are sounded by means of a keyboard. The organ and piano are two of the principal members of the keyboard family. The organ consists of pipes which are operated by one or more manuals (keyboards) and a pedal board. the pipes are are lined up in rows (known as ranks or registers ) on top of a wind chest. The sound of the organ is made when air is admitted into a pipe by pressing a key or pedal. The piano consists of wire strings stretched over a metal frame, and a keyboard and pedals that operate hammers and dampers. The piano frame is either vertical-as in the upright piano. When a key is at rest, a damper lies against the string to stop it vibrating. When a key is pressed down, the damper moves away from the string as the hammer strikes it, causing the string to vibrate and sound a note.



Wednesday, 26 March 2014

ANATOMY OF THE UNIVERSE

A n A t o M y    o F    T h E    U n i V e R S e



The universe contains every thing that exists, from the tiniest subatomic particles to galactic super clusters (the largest structure known). Nobody knows how big the universe is, but astronomers estimate that it contains about 100 billion galaxies, each comprising an average of 100 billion stars. The most widely accepted theory about the origin of the Universe is the Big Bang theory, Which states that the universe came into being in a huge explosion-the Big Bang-that took place between 10 and 20 billion years ago. The Universe initially consisted of a very hot, dense fireball of expanding, cooling gas. After about one million years, the gas probably began to condense into localized clumps called proto galaxies. During the next five billion years, the proto galaxies continued condensing, forming galaxies in which stars were begin to born. Today billions of years later, the Universe as a whole is still expanding, although there are localized areas in which objects are held together by gravity; for example, many galaxies are found in clusters. The big bang theory is supported by the discovery of faint, cool background radiation coming evenly from all directions. This radiation is believed to be the remnant of the radiation produced by Big Bang. Small "ripples" in the temperature of the cosmic background radiation are thought to be evidence of slight fluctuations in the density of the early universe, which resulted in the formation of galaxies. Astronomers do not yet know if the Universe is "closed", which means it will eventually stop expanding and begin to contract, or if it is "open", which means it will continue expanding forever.

THE TRUTH ABOUT DRIVING DISTRACTIONS



Driving distractions is defined as: The voluntary or involuntary diversion of attention away from primary driving tasks.


ANATOMY OF DISTRACTIONS

VISUALLooking at something 
other than the road
AUDITORY
Hearing something not
 related to driving



PHYSICALManipulating other
 than the wheel
COGNITIVE
Thinking about something 
other than driving








SOURCES OF DISTRACTIONS



INTERNAL

TECH BASED
TECH BASED


NON-TECH BASED
NON-TECH BASED



EXTERNAL





10 MOST COMMON DISTRACTION


MANIPULATING VEHICLE CONTROL
MANIPULATING VEHICLE CONTROL

MANIPULATING MUSIC/AUDIO CONTROLS
MANIPULATING MUSIC/AUDIO CONTROLS


MOBILE PHONES
MOBILE PHONES


EXTERNAL DISTRACTIONS
EXTERNAL DISTRACTIONS
CONVERSING
CONVERSING






EATING,DRINKING ACCIDENTAL SPILLING
EATING,DRINKING ACCIDENTAL
 SPILLING
GROOMING
GROOMING




OTHER PASSENGERS IN THE CAR
OTHER PASSENGERS IN THE CAR



READING AND WRITING
READING AND WRITING
SMOKING
SMOKING









ONE THIRD of all distractions are estimated to be outside the vehicle distractions


15%-20% of all distractions involve driver interaction with technology.

Sunday, 23 March 2014

APS AND DIGITAL PHOTOGRAPHY

A P S   a N d    D i G I t a L   P h O T o G R a p h Y



The advanced photo system was announced in 1995 as a break through in photographic technology. Developed over five years by a consortium of the film and camera manufactures (Kodak, Nikon, Fuji, Canon, Minolta), the APS was designed to maximize the quality of the image taken by amateur photographers, and to over come some of the most common problems encountered. The key to this new system is the "smart" film with its drop-in and automatic-load cassette. The film contains a magnetic strip, which records information specific to each shot, such as lighting conditions, magnification, date and time, and communicates this data to the processing equipment in the mini lab. Once processed, the photographer receives a set of index prints, the photographs in any one of three different print sizes and the developed film stored within the original cassette. APS film can be directly scanned and digitized, allowing the new system to bridge the gap between conventional 35mm film and digital photography.




PRINT FORMATS: A great advantage of APS is the variety it allows in the format of the print. When taking a picture there are three different formats which can be selected: C (classic) gives a normal 35mm print, H (HDTV) is for a wider view and P (Panorama) provides the extra-wide landscape shot.







Information about each frame- such as lighting conditions, selected print format, and exposure speed- is recorded on magnetic data strips. In a process called "information exchange" this data is read by processing equipment, which adjusts itself to produce the best result for each individual picture.






APS FILM AND CARTRIDGE: To avoid mis feeding, the cassette loads, advances and reacts the film automatically and is also used to store processed film. A data disc tells the camera the film speed, type and exposure length. 






DIGITAL IMAGE SCANNER: The digital imag scanner alows user to input developed APS film cartridges into their personal computer. The index view instantly displays thumbnail versions of all the images stored on the roll.



INFORMATIVE DATA AND INDEX PRINTS: IX allows a variety of information to be imprinted on the back of each photo. Not only is the date and time given, but a title for each shot can be chosen. At-a-glance index prints are also provide showing the C, H or P formats at each frame plus the print number.





DIGITAL IMAGE WORKSTATION: Photographs are digitized and placed on templates for printing out on a colour printer. The workstation can also store the images on floppy discs or send them on-line to other locations.





DIGITAL CAMERA


KODAK DC50
KODAK DC50
NO FILM OR PROCESSING REQUIRED: Film less digital camera are a technological advancement in the professional photography  world. Within minutes a picture can be taken and transmitted anywhere in the world, either via telephone or E-mail. Digital cameras are also ideal for desktop publishing, business presentations and a variety of scientific or industrial applications.




CANON EOS-1 WITH KODAK DCS 3C





TRANSMITTING LIGHT INTO DIGITAL DATA:   Electronic sensors inside the camera transmit the different levels of light, which enter through the red, green and blue  filters onto a CCD (photo-sensitive semi conductor). The CCD digitally records the image and stores it onto a PCM-CIA card-a tiny hard disc drive.








FROM DATA TO ON-SCREEN IMAGE:  Digital cameras can be plugged into a computer's  serial port and the pictures can be instantly transferred from the camera's hard disc into popular applications such as Word perfect and page maker.





Wednesday, 19 March 2014

MOSAIC THE ART OF MAKING

M o S a I C



MOSAIC IS THE ART OF MAKING patterns and pictures from tesserae (small, coloured pieces of glass, marble and other materials). Different materials are cut into tesserae using different tools. Smalti (glass enamel) and marble are cut into pieces using a hammer and a hardy ( a pointed blade) embedded in a log. Vitreous glass is cut into pieces using a pair of nippers. Mosaics can be made using direct or indirect method. In the direct method, the tesserae are laid directly into a bed of cement-based adhesive. In the indirect method, the design is drawn in reverse on paper or cloth. The tesserae are then stuck face down on the paper or cloth using water soluble glue. Adhesive is spread with a towel on to a solid surface -such as wall- and the back of the mosaic is laid into the adhesive. Finally, the paper or cloth is soaked off to reveal the mosaic. Gaps between tesserae can be filled with grout. Grout is forced into gaps by dragging a grouting squeegee across the  face of the mosaic. Mosaics are usually used to decorate walls and floors, but they can also be applied to smaller objects.