Data Representation Using Binary Digits



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Лаб2 Аружан

Decade

1970s

1980s

1990s

2000s

Order of magnitude in
Storage capacity


Thousands

Millions

Billions

Trillions

Prefix

Kilo (103)

Mega (106)

Giga (109)

Tera (1012)

Abbreviation

K

M

G

T

In terms of storage, more is better—which means more information in the form of both data and programs that act on that data can be stored. Corresponding to the growth in storage capacity, memory capacity is also increasing. Moreover, memory technologies are getting smaller, lighter, and faster, for about the same price. You will learn more about storage and memory technologies in the next unit of this course.

1.3.2 Number Systems


  • Decimal

  • Binary

  • Hexadecimal

The world of computing uses several number systems to represent data. While the decimal system, also known as base10, will be familiar to people, as it is the numbering system used in everyday life, binary (base2) and hexadecimal (base16) are common number systems used in computing today.

Decimal

We will start our discussion on number systems by examining the decimal system as an example of a number system. The decimal number system contains ten values- 0, 1, 2, 3, 4, 5, 6, 7, 8, and 9. Each number in the decimal number system can be broken into digits by their "place" in the number. Using the number 43,872 as an example, 2 is in its 0th place, 7 is in its first place, 8 in its second, 3 in its third, and 4 in its fourth. Each place has a value that can be represented either exponentially or by its decimal values. The following table shows the exponential and decimal representation for each place in the number 43,872.


Place

4th

3rd

2nd

1st

0th

Digit

4

3

8

7

2


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