4.04-1. IPV4/IPV6 co-existence: tunneling (a). Consider the mixed IPV4/IPV6 network shown below, where an IPV4 tunnel exists between IPV6 routers B and E. Suppose that IPV6 router A sends a datagram to IPV6 router F. IPV6 datagrams are shown in blue; the IPV4 datagram is in red (containing the encapsulated IPV6 datagram in blue).
4.04-1. IPV4/IPV6 co-existence: tunneling (a). Consider the mixed IPV4/IPV6 network shown below, where an IPV4 tunnel exists between IPV6 routers B and E. Suppose that IPV6 router A sends a datagram to IPV6 router F. IPV6 datagrams are shown in blue; the IPV4 datagram is in red (containing the encapsulated IPV6 datagram in blue).
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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Question
![4.04-1. IPV4/IPV6 co-existence: tunneling (a). Consider the mixed IPV4/IPV6 network shown below, where an IPV4
tunnel exists between IPV6 routers B and E. Suppose that IPV6 router A sends a datagram to IPV6 router F. IPV6
datagrams are shown in blue; the IPV4 datagram is in red (containing the encapsulated IPV6 datagram in blue).
A
B
C
D
E
F
IPV6
IPV6/v4
IPV4
IPV4
IPV6/v4
IPV6
(a)
(b)
(c)
Perform the matching below to indicate the datagram field value and type at point (a).
[Note: You can find more examples of problems similar to this here.]
]At point (a), the IP version field in the datagram
is:
A. D
В. А
v At point (a), the source IP address is that of host: C IPV4
At point (a), the destination IP address is that of
host:
D. 128
Е. В
At point (a), the number of bits in the destination
F. F
IP address is:
G. IPV6
Н. 32](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F86cb5cb2-44f7-4d21-bcbf-771baafb3ada%2Fec5a0a6d-54d5-4627-bea1-6764b21eda4b%2F3mqs8kt_processed.jpeg&w=3840&q=75)
Transcribed Image Text:4.04-1. IPV4/IPV6 co-existence: tunneling (a). Consider the mixed IPV4/IPV6 network shown below, where an IPV4
tunnel exists between IPV6 routers B and E. Suppose that IPV6 router A sends a datagram to IPV6 router F. IPV6
datagrams are shown in blue; the IPV4 datagram is in red (containing the encapsulated IPV6 datagram in blue).
A
B
C
D
E
F
IPV6
IPV6/v4
IPV4
IPV4
IPV6/v4
IPV6
(a)
(b)
(c)
Perform the matching below to indicate the datagram field value and type at point (a).
[Note: You can find more examples of problems similar to this here.]
]At point (a), the IP version field in the datagram
is:
A. D
В. А
v At point (a), the source IP address is that of host: C IPV4
At point (a), the destination IP address is that of
host:
D. 128
Е. В
At point (a), the number of bits in the destination
F. F
IP address is:
G. IPV6
Н. 32
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