1. Which of the following are valid Network IDs?

Question 1 of 50

2. Match the addresses for a 192.168.10.64/26 network to their usage
Network ID
192.168.10.127

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192.168.10.65

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192.168.10.126

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192.168.10.128

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192.168.10.64

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Broadcast ID
192.168.10.127

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192.168.10.65

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192.168.10.126

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192.168.10.128

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192.168.10.64

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Valid Host
192.168.10.127

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192.168.10.65

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192.168.10.126

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192.168.10.128

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192.168.10.64

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Invalid Host
192.168.10.127

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192.168.10.65

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192.168.10.126

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192.168.10.128

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192.168.10.64

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Valid Host
192.168.10.127

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192.168.10.65

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192.168.10.126

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192.168.10.128

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192.168.10.64

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Question 2 of 50

3. Which subnet mask would support 30 networks from 171.16.0.0/17?

Question 3 of 50

4. Which of the following are valid subnet masks?

Question 4 of 50

5. Match the subnet bits to the subnet mask
/30
255.255.255.252

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255.255.255.240

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255.255.248.0

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255.255.254.0

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/28
255.255.255.252

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255.255.255.240

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255.255.248.0

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255.255.254.0

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/23
255.255.255.252

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255.255.255.240

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255.255.248.0

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255.255.254.0

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/21
255.255.255.252

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255.255.255.240

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255.255.248.0

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255.255.254.0

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Question 5 of 50

6. In which class would the IP address 141.10.99.3 fall?

Question 6 of 50

7. Match the Class name with its default subnet mask
Class A
255.0.0.0

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255.255.0.0

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Does not have any subnet mask

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255.255.255.0

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Class B
255.0.0.0

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255.255.0.0

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Does not have any subnet mask

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255.255.255.0

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Class C
255.0.0.0

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255.255.0.0

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Does not have any subnet mask

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255.255.255.0

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Class D
255.0.0.0

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255.255.0.0

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Does not have any subnet mask

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255.255.255.0

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Question 7 of 50

8. If there are 5 host bits available, how many usable hosts can you accommodate?

Question 8 of 50

9. Match the Class name with its address range
Class A
128.0.0.0 - 191.255.255.255

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192.0.0.0 - 223.255.255.255

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240.0.0.0 - 255.255.255.254

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1.0.0.0 - 126.255.255.255

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224.0.0.0 - 239.255.255.255

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Class B
128.0.0.0 - 191.255.255.255

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192.0.0.0 - 223.255.255.255

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240.0.0.0 - 255.255.255.254

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1.0.0.0 - 126.255.255.255

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224.0.0.0 - 239.255.255.255

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Class C
128.0.0.0 - 191.255.255.255

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192.0.0.0 - 223.255.255.255

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240.0.0.0 - 255.255.255.254

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1.0.0.0 - 126.255.255.255

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224.0.0.0 - 239.255.255.255

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Class D
128.0.0.0 - 191.255.255.255

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192.0.0.0 - 223.255.255.255

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240.0.0.0 - 255.255.255.254

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1.0.0.0 - 126.255.255.255

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224.0.0.0 - 239.255.255.255

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Class E
128.0.0.0 - 191.255.255.255

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192.0.0.0 - 223.255.255.255

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240.0.0.0 - 255.255.255.254

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1.0.0.0 - 126.255.255.255

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224.0.0.0 - 239.255.255.255

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Question 9 of 50

10. How many subnets can be created by the subnet mask 255.255.255.224?

Question 10 of 50

11. You work as a network administrator in a company and have been asked to create subnets capable of hosting approximately 500 hosts. Which subnet mask you would use?

Question 11 of 50

12. Which of the following statements are true about subnetting?

Question 12 of 50

13. If the dotted decimal is 255.255.0.0, what is the correct Classless Inter-domain Routing (CIDR) notation?

Question 13 of 50

14. How many IP addresses you will get when using CIDR notation /32?

Question 14 of 50

15. How many bits are in the host ID of an IP address after subnetting a class C network into 8 subnets?

Question 15 of 50

16. What is the next valid assignable IP address after 171.168.10.254 if the subnet mask is 255.255.240.0?

Question 16 of 50

17. The number of networks increases and hosts per subnet decreases when subnet bits are borrowed

Question 17 of 50

18. Which binary value represents the decimal value of 224?

Question 18 of 50

19. What is the range of usable addresses for the first subnet created by using the subnet mask of 255.255.255.128 in the 172.16.0.0 class B network?

Question 19 of 50

20. The address will always have 255 in the first octet and mask will never have 255 in the first octet

Question 20 of 50

21. How many bits and octets are there in an IP address?

Question 21 of 50

22. A laptop with an IP address of 172.16.10.54 and a subnet mask of 255.255.255.128 is on the same network with which of the following IP address?

Question 22 of 50

23. Which of the following IP addresses is reserved for internal loopback functions?

Question 23 of 50

24. You have changed the subnet mask from 255.255.255.0 to 255.255.255.240. How many bits were borrowed and how many networks were created due to this change?

Question 24 of 50

25. When dividing the Class C network 192.168.10.0 into 4 separate networks, what are the ranges of usable host IP addresses from the following?

Question 25 of 50

26. Any system that uses a public IP address cannot route its packets out to the Internet

Question 26 of 50

27. Match the IP address class to its characteristic
Class A
The value of the first octet ranges from 128 to 191

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Used for multicast applications

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Uses 8 bits for the network ID and 24 bits for the host ID

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It provides 254 addresses

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Class B
The value of the first octet ranges from 128 to 191

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Used for multicast applications

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Uses 8 bits for the network ID and 24 bits for the host ID

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It provides 254 addresses

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Class C
The value of the first octet ranges from 128 to 191

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Used for multicast applications

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Uses 8 bits for the network ID and 24 bits for the host ID

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It provides 254 addresses

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Class D
The value of the first octet ranges from 128 to 191

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Used for multicast applications

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Uses 8 bits for the network ID and 24 bits for the host ID

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It provides 254 addresses

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Question 27 of 50

28. Which subnet mask can be used in class A networks to make them the size of a class B network?

Question 28 of 50

29. Which of the following statements are not true about IP addresses?

Question 29 of 50

30. The subnet mask divides an IP address into a network portion and a host portion

Question 30 of 50

31. What is the binary equivalent of IP address 172.16.40.1?

Question 31 of 50

32. You have two directly connected router as shown below

Ensuring the efficient use of the address space, which CIDR notation you would use for the connection between the two routers?

 

Question 32 of 50

33. You need to subnet a Class C network and create 16 subnetworks. How many bits do you need to borrow?

Question 33 of 50

34. Given the IP address of 172.16.20.141 255.255.255.128. What is the subnet address?

Question 34 of 50

35. You work as a network administrator in a company. You have been given a network address 172.20.0.0. The requirement is to design a classful addressing scheme for three subnets with 50, 60 and 100 hosts. What subnet mask would accommodate this network?

Question 35 of 50

36. Which of the following statements describe the IP address 172.16.20.32/27?

Question 36 of 50

37. You have been assigned 192.168.10.0 subnet with the CIDR notation /26. Which of the following addresses cannot be assigned to hosts with in the same subnet?

Question 37 of 50

38. You have configured an IP address 172.29.113.1/20 under a DHCP scope. What is the maximum number of hosts allowed on this subnet?

Question 38 of 50

39. Which of the following must be determined to find the valid range of addresses in a subnet?

Question 39 of 50

40. The first address of each subnet is the network ID, and it cannot be used as a host address

Question 40 of 50

41. If you use three bits of the host ID for subnetting, how many subnets can be created?

Question 41 of 50

42. Following formula can be used to determine the number of hosts returned by the mask
2^n -2 = X

What does n and X represents in the above formula?

Question 42 of 50

43. In which of the following networks does the address 192.168.10.131/25 reside?

Question 43 of 50

44. When a class C address such as 192.168.1.0 is subnetted with the subnet mask 255.255.255.192, what would be the interval between the network IDs of the resulting subnets?

Question 44 of 50

45. Which network address and subnet mask will allow two file servers to be on the same network and provide the highest number of subnets?

Question 45 of 50

46. Which subnet mask would be appropriate to cater for four networks, with each network containing 10 to 60 hosts?

Question 46 of 50

47. Which of the following is known as the 'Magic number', used to find the subnet interval?

Question 47 of 50

48. The number in the CIDR notation determine the host component of an IP address

Question 48 of 50

49. Which of the following is a way to determine the broadcast address of the subnet?

Question 49 of 50

50. In a broadcast address, the network ID bits of the IP address are all binary ones

Question 50 of 50