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Video

technology Maturity 9-11 Vital Level 3

Video shows moving pictures.

How to make video.webm
How to make video.webm
It can have sound too. You see it on a TV. You can see it on a phone. It helps us learn and play. Do you like to watch videos?

38 words

Video shows moving pictures.

How to make video.webm
How to make video.webm
It can have sound too. You can watch it on a TV or a phone.

Long ago, people used magnetic tape.

VHS-Video-Tape-Top-Flat.jpg
VHS-Video-Tape-Top-Flat.jpg
This was a way to record video. Now, most video is digital. This means it lives on computers.

Digital video is very good. It can be clear and bright. It is also cheaper to make. You can even use a smartphone to make it.

Video is made of many still pictures. These pictures move very fast. This makes the picture look like it is moving.

Aspect ratios.svg
Aspect ratios.svg
Screens can be wide or tall. Some screens are wide for movies. Some phones use tall video. Do you like watching videos?

119 words

Video is a way to show moving pictures. It can also have sound. The word comes from a Latin word that means "I see."

How to make video.webm
How to make video.webm

In the past, people used analog video. This used electronic signals. They could record these signals on magnetic tape.

VHS-Video-Tape-Top-Flat.jpg
VHS-Video-Tape-Top-Flat.jpg
One team made a machine to record video on tape in 1951. Later, companies sold machines called VCRs to families.

Today, most video is digital. Digital video uses computer files. This makes it easier to store and share. It is also much cheaper. Now, even a smartphone can capture and edit video.

Aspect ratios.svg
Aspect ratios.svg

Video works by showing many still pictures very fast. This is called the frame rate. If you show about 16 pictures every second, the eye sees motion. Professional cameras can show 120 pictures per second or more.

Screens also have different shapes. This is called the aspect ratio. Most TVs are wide. But many people now watch vertical video on phones.

YUV UV plane.svg
YUV UV plane.svg
This video uses color models to show bright and clear images.

177 words

Video is a way to record and show moving pictures. It can also include sound to go with the images. The word comes from the Latin word "video," which means "I see."

How to make video.webm
How to make video.webm
This technology is used everywhere in our world. It helps us learn, play, and share information. We use it for movies, school, and talking to friends online. It is a huge part of how we see the world today.

Video works by showing many still pictures very quickly. This speed is called the frame rate. If you show at least 16 pictures every second, your eyes see motion. This is called persistence of vision. Old cameras used about 6 or 8 frames per second. New professional cameras can show 120 frames per second or even more.

NTSC Signal.png
NTSC Signal.png
Different systems use different speeds, like NTSC at 29.97 frames per second.

In the past, people used analog video technology. This used electronic signals to show images. In 1951, a team led by Charles Ginsburg made a machine to record these signals. They used magnetic videotape to save the images.

VHS-Video-Tape-Top-Flat.jpg
VHS-Video-Tape-Top-Flat.jpg
These machines were very expensive at first. In 1956, a recorder cost about US$50,000. Later, in 1971, Sony began selling VCRs to regular people for their homes.

Today, most video is digital. Digital video uses computer files instead of tape. This makes it much cheaper to make and store. It is also easier to send over the internet.

Aspect ratios.svg
Aspect ratios.svg
Since 2013, Hollywood has used more digital cameras than film cameras. Digital video can also use special tricks to save space. This is called compression. It helps big files fit onto small devices like smartphones.

Video screens also come in different shapes. This shape is called the aspect ratio. Most TVs are wide, with a ratio of 16:9.

YUV UV plane.svg
YUV UV plane.svg
However, many people now watch video vertically on their phones. In 2015, a report showed that vertical video viewing grew a lot. Some video also uses 3D to make images look deep. This can be done with special glasses or even light filters.

349 words

Video is an electronic medium used for recording, copying, and displaying moving visual images. It can function with or without accompanying audio. The word itself comes from the Latin "video," which means "I see."

How to make video.webm
How to make video.webm
Today, video technology is essential for communication, entertainment, and education. It allows information to be shared across broadcast television, physical media, and internet platforms. While it began as a tool for live transmission, it has evolved into a complex digital system.

To understand how video works, one must look at the concept of frame rate. This is the number of still pictures shown per unit of time. To create the illusion of motion, a phenomenon called persistence of vision, a system needs at least 16 frames per second (fps). Modern professional cameras can reach 120 fps or higher. Different standards use different rates. For example, the NTSC standard uses 29.97 fps, while PAL and SECAM use 25 fps. Film is typically shot at 24 fps, which can make transferring it to video slightly complicated.

Video systems also use different methods to scan and display these frames. Progressive scan systems update every scan line in a frame in sequence. This provides the best spatial resolution for both still and moving parts. In contrast, interlaced scanning was invented to reduce flicker in older CRT displays. Interlacing divides a frame into two fields: an odd field and an even field. The device displays these fields one after another. This effectively doubles the perceived frame rate without requiring more bandwidth. NTSC, PAL, and SECAM are all interlaced formats.

NTSC Signal.png
NTSC Signal.png

Historically, video technology moved from mechanical systems to analog electronic signals. Early mechanical scanners, like the Nipkow disk, were patented in 1884. These were eventually replaced by cathode-ray tube (CRT) systems. In these systems, an electron beam scans a photoconductive plate to create a voltage signal. This signal represents the brightness of the image. A major breakthrough occurred in 1951 when Charles Ginsburg led an Ampex team to develop a video tape recorder (VTR). This device wrote electrical signals onto magnetic tape.

VHS-Video-Tape-Top-Flat.jpg
VHS-Video-Tape-Top-Flat.jpg
In 1956, these recorders cost about US$50,000. By 1971, Sony brought videocassette recorders (VCRs) to the consumer market.

Digital video has largely replaced analog video because it offers higher quality at lower costs. The introduction of the DVD in 1997 and Blu-ray in 2006 led to a decline in videotape use. Digital technology allows for efficient compression and storage. This means even smartphones can capture and edit video. Digital broadcasting is also making analog video a legacy technology. In Hollywood, the shift is massive. Since 2013, the use of digital cameras has surpassed the use of film cameras.

Visual presentation is also defined by the aspect ratio. This is the proportional relationship between a screen's width and height. Traditional television uses a 4:3 ratio. High-definition televisions use a wider 16:9 ratio.

Aspect ratios.svg
Aspect ratios.svg
The way pixels are shaped can also change. While computer pixels are usually square, digital video often uses non-square pixels. Interestingly, mobile phone use has changed how we view video. In 2015, vertical video viewing grew to 29% of all viewing. Vertical ads are actually watched in their entirety nine times more often than landscape ads.

Color and data management are also vital to video quality. Systems use different color models, such as YUV for PAL or YCbCr for digital video. To save data, engineers use chroma subsampling. This process reduces the amount of color data while keeping the brightness data (luminance) intact. This works because the human eye is less sensitive to color detail than brightness.

YUV UV plane.svg
YUV UV plane.svg
To manage large file sizes, digital video uses compression. This involves reducing spatial redundancy within a frame and temporal redundancy between frames. Common standards include MPEG-2 for DVDs and MPEG-4 for the internet.

Finally, video can be expanded into three dimensions through stereoscopy. This creates a sense of depth for the viewer. One method uses two channels, one for each eye, often paired with polarized filters. Another method is anaglyph 3D, which uses red and cyan color-coded layers. A third method uses LCD shutter glasses that alternate which eye sees which frame. This is common in virtual reality. These various technologies all work together to shape how we experience moving images.

711 words
🖼️ Images & Media (5)
How to make video.webm
File:NTSC Signal.png
NTSC Signal.png
File:Aspect ratios.svg
Aspect ratios.svg
File:YUV UV plane.svg
YUV UV plane.svg
File:VHS-Video-Tape-Top-Flat.jpg
VHS-Video-Tape-Top-Flat.jpg
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