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Which statement(s) about IPv4 and IPv6 addresses are true?
  1. An IPv6 address is 32 bits long, represented in hexidecimal.
  2. An IPv6 address is 128 bits long, represented in decimal.
  3. An IPv4 address is 32 bits long, represented in decimal.
  4. An IPv6 address is 128 bits long, represented in hexidecimal.
  • a)
    1 and 3 only
  • b)
    2 only
  • c)
    3 and 4
  • d)
    2 and 4
Correct answer is option 'C'. Can you explain this answer?
Verified Answer
Which statement(s) about IPv4 and IPv6 addresses are true? An IPv6 ad...
IPv4 addresses are 32 bits long and are represented in decimal format. IPv6 addresses are 128 bits long and represented in hexadecimal format.
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Which statement(s) about IPv4 and IPv6 addresses are true? An IPv6 ad...
IPv4 and IPv6 Address Facts

IPv4 and IPv6 addresses are two different versions of Internet Protocol addresses used to identify devices on a network. Here are some true statements about IPv4 and IPv6 addresses:

IPv4 Address Facts:

- An IPv4 address is 32 bits long, represented in decimal.
- IPv4 addresses are written in dotted-decimal notation, with four numbers (each ranging from 0 to 255) separated by periods. For example, "192.168.1.1".
- IPv4 addresses have a total of around 4.3 billion possible unique addresses, which is becoming insufficient as more devices connect to the Internet.

IPv6 Address Facts:

- An IPv6 address is 128 bits long, represented in hexadecimal.
- IPv6 addresses are written in eight groups of four hexadecimal digits, separated by colons. For example, "2001:0db8:85a3:0000:0000:8a2e:0370:7334".
- IPv6 addresses have a total of around 340 undecillion possible unique addresses, which should be sufficient for the foreseeable future.

Conclusion:

In summary, options 3 and 4 are the true statements about IPv4 and IPv6 addresses. IPv4 addresses are 32 bits long and represented in decimal, while IPv6 addresses are 128 bits long and represented in hexadecimal.
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Which statement(s) about IPv4 and IPv6 addresses are true? An IPv6 address is 32 bits long, represented in hexidecimal. An IPv6 address is 128 bits long, represented in decimal. An IPv4 address is 32 bits long, represented in decimal. An IPv6 address is 128 bits long, represented in hexidecimal.a)1 and 3 onlyb)2 onlyc)3 and 4d)2 and 4Correct answer is option 'C'. Can you explain this answer?
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Which statement(s) about IPv4 and IPv6 addresses are true? An IPv6 address is 32 bits long, represented in hexidecimal. An IPv6 address is 128 bits long, represented in decimal. An IPv4 address is 32 bits long, represented in decimal. An IPv6 address is 128 bits long, represented in hexidecimal.a)1 and 3 onlyb)2 onlyc)3 and 4d)2 and 4Correct answer is option 'C'. Can you explain this answer? for Quant 2024 is part of Quant preparation. The Question and answers have been prepared according to the Quant exam syllabus. Information about Which statement(s) about IPv4 and IPv6 addresses are true? An IPv6 address is 32 bits long, represented in hexidecimal. An IPv6 address is 128 bits long, represented in decimal. An IPv4 address is 32 bits long, represented in decimal. An IPv6 address is 128 bits long, represented in hexidecimal.a)1 and 3 onlyb)2 onlyc)3 and 4d)2 and 4Correct answer is option 'C'. Can you explain this answer? covers all topics & solutions for Quant 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Which statement(s) about IPv4 and IPv6 addresses are true? An IPv6 address is 32 bits long, represented in hexidecimal. An IPv6 address is 128 bits long, represented in decimal. An IPv4 address is 32 bits long, represented in decimal. An IPv6 address is 128 bits long, represented in hexidecimal.a)1 and 3 onlyb)2 onlyc)3 and 4d)2 and 4Correct answer is option 'C'. Can you explain this answer?.
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