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Data storage

technology Maturity 9-11

We can save facts and ideas.

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PersonalStorageDevices.agr.jpg
We use things to keep them. Some use paper. Some use machines. This helps us remember things. It is like a brain for tools. Do you like to save things?

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We save information to keep it.

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EdisonPhonograph.jpg
We use things called media to hold it.
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Reel-to-reel recorder tc-630.jpg
Some media are like paper or film. Some use magnets to hold data.
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PersonalStorageDevices.agr.jpg
Tiny parts in our bodies also hold data. These are called DNA. Machines use electricity to find this data. Electronic files take up very little space. This helps us save many things at once. It is a great way to remember.

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Data storage is a way to keep information. We use a physical material called a medium to hold it.

EdisonPhonograph.jpg
EdisonPhonograph.jpg
One old medium was a cylinder for a phonograph.
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Reel-to-reel recorder tc-630.jpg
You can also use magnetic tape to store data.
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PersonalStorageDevices.agr.jpg
Some media are very small. Electronic devices use electricity to save and find data. This is called digital data.
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RNA-comparedto-DNA thymineAndUracilCorrected.png
Even living things store data. Molecules like DNA and RNA hold information in our bodies.

Digital storage has grown very fast. In 1986, only 1% of storage was digital. By 2007, it was 97%. This means most information is now digital. Digital files take up much less space than paper. This helps us save a huge amount of things. In 2002, people made five exabytes of new information. Most of that went onto hard disk drives. The amount of digital storage doubles every three years. We are making more data than we can hold.

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Data storage is how we record and keep information. To do this, we use a physical material called a medium.

EdisonPhonograph.jpg
EdisonPhonograph.jpg
This medium holds the data so it can be used later. Information can be seen or heard in many ways. It can flow through the Internet or on the radio. We can also observe information directly. Some storage is even part of living things.
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RNA-comparedto-DNA thymineAndUracilCorrected.png
Molecules like DNA and RNA act as biological storage.

There are many ways that recording works. You can use almost any form of energy to record things. Electronic storage needs electrical power to save and find data.

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PersonalStorageDevices.agr.jpg
This type of data is often called digital data. Digital information is stored on electronic media in different formats. We can use print, film, magnetic, or optical media.
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Reel-to-reel recorder tc-630.jpg
Some media are even temporary. For example, smoke signals or skywriting do not last long.

People have used many different tools over time. Early machines used cylinders to record sound. Later, people used magnetic tape for recording.

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Reel-to-reel recorder tc-630.jpg
We also use optical discs to store information today. Some art tools like crayons act as both equipment and medium. The wax or charcoal becomes part of the surface. This shows how many ways we can leave a mark.

Digital storage has grown at a very fast rate. In 1986, only 1% of the world's storage was digital. By 1993, that number grew to 3%. It jumped to 25% in the year 2000. By 2007, digital storage reached 97% of the total.

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PersonalStorageDevices.agr.jpg
In 2002, people produced five exabytes of new information. About 92% of that data went onto hard disk drives. The amount of digital storage doubles roughly every three years.

Digital data helps us manage a huge amount of work. Electronic documents take up much less space than paper. This is a key job for any general-purpose computer. We can also use barcodes to record data on paper. This makes the information easy for machines to read. Even though we make a lot of data, we keep growing. The amount of data generated will reach 181 zettabytes in 2025.

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Data storage is the process of recording and keeping information. This information is often called data. To hold this data, we use a physical material known as a storage medium.

EdisonPhonograph.jpg
EdisonPhonograph.jpg
A medium can be many things, such as magnetic tape or an optical disc. Even handwriting on paper acts as a form of storage. In the world of computers, storing data is a core function.
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PersonalStorageDevices.agr.jpg
Without storage, a general-purpose computer could not perform its most important tasks. Digital data is a specific type of information stored in a machine-readable format.

Recording information can happen using almost any form of energy. When we use electronic data storage, we must use electrical power. This power is necessary to both store the data and retrieve it later.

Reel-to-reel recorder tc-630.jpg
Reel-to-reel recorder tc-630.jpg
There are several main ways to distribute and store newly created information. These include print, film, magnetic, and optical media. Information can also flow through systems like the telephone, radio, television, or the Internet. Some media are even biological.
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RNA-comparedto-DNA thymineAndUracilCorrected.png
Molecules like DNA and RNA are considered biological storage media by some researchers.

Storage media can be categorized by how long they last. Some media are permanent, while others are temporary by nature. For example, smoke signals or skywriting are temporary forms of recording. Even a liquid surface like a lake or a gas like the atmosphere can be temporary media. Some people even use volatile organic compounds to make data expire over time. In the world of art, certain tools act as both equipment and medium. For instance, the wax from a crayon or the charcoal from a stick becomes part of the surface. This makes the material itself the medium.

We can also look at how data is recorded on physical objects like paper. Barcodes are one way to record machine-readable data on a page. Another method is magnetic ink character recognition, often called MICR. These methods allow machines to read information quickly from printed materials. Electronic documents are very efficient because they take up much less space than paper documents. This efficiency helps manage the massive amounts of information produced globally.

History shows a massive shift from analog to digital storage. In 1986, only about 1% of the world's storage capacity was in a digital format. By 1993, this grew to 3%. By the year 2000, digital storage reached 25%. By 2007, it reached 97% of the total capacity.

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PersonalStorageDevices.agr.jpg
A 2011 article in Science Magazine noted that 2002 was the beginning of the digital age. This was the era when more information began to be stored on digital devices than on analog ones.

Specific numbers show how fast this growth has happened. In 2002, about five exabytes of new information were produced. About 92% of that data was stored on hard disk drives. During that same year, nearly 18 exabytes of data were transmitted over telecommunications systems. Telephone calls made up 98% of that transmitted information. The total amount of digital data produced actually exceeded global storage capacity in 2007. Researchers estimated that the amount of digital storage doubles roughly every three years.

Today, the scale of data is difficult to imagine. In 2007, the total amount of digital data was 281 exabytes. In 1986, the world held less than three compressed exabytes of digital data. By 2007, that number had grown to 295 compressed exabytes. This growth continues to move forward at a rapid pace. It is estimated that the amount of data generated will reach 181 zettabytes by the year 2025. This shows how central data storage has become to our modern world.

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🖼️ Images & Media (4)
File:EdisonPhonograph.jpg
EdisonPhonograph.jpg
File:Reel-to-reel recorder tc-630.jpg
Reel-to-reel recorder tc-630.jpg
File:PersonalStorageDevices.agr.jpg
PersonalStorageDevices.agr.jpg
File:RNA-comparedto-DNA thymineAndUracilCorrected.png
RNA-comparedto-DNA thymineAndUracilCorrected.png
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