Serialization delay and (1) delay are the two components of network delay that are improved by increasing bandwidth. Serialization delay, i.e. the amount of time it takes to put the (2) on the wire, and queuing delay (depth of the queue) are improved by increasing the (3) from a 128kbps circuit to a T1. However, three other components of delay, routing/switching delay, distance delay, and protocol delay are components that can not be positively affected by an (4) in bandwidth. If the circuits are not over-utilized, then increasing the bandwidth to improve the (5) of the application will only result in an increased bandwidth with no positive effects on performance.

1.[单选题]Serialization delay and  (1)  delay are the two components of network delay that are improved by increasing bandwidth. Serialization delay, i.e. the amount of time it takes to put the  (2)  on the wire, and queuing delay (depth of the queue) are improved by increasing the  (3)  from a 128kbps circuit to a T1. However, three other components of delay, routing/switching delay, distance delay, and protocol delay are components that can not be positively affected by an  (4)  in bandwidth. If the circuits are not over-utilized, then increasing the bandwidth to improve the  (5)  of the application will only result in an increased bandwidth with no positive effects on performance.
  • A.buffering
  • B.queuing
  • C.receiving
  • D.timing
2.[单选题]Serialization delay and  (1)  delay are the two components of network delay that are improved by increasing bandwidth. Serialization delay, i.e. the amount of time it takes to put the  (2)  on the wire, and queuing delay (depth of the queue) are improved by increasing the  (3)  from a 128kbps circuit to a T1. However, three other components of delay, routing/switching delay, distance delay, and protocol delay are components that can not be positively affected by an  (4)  in bandwidth. If the circuits are not over-utilized, then increasing the bandwidth to improve the  (5)  of the application will only result in an increased bandwidth with no positive effects on performance.
  • A.increase
  • B.decrease
  • C.maintenance
  • D.extension
3.[单选题]Serialization delay and  (1)  delay are the two components of network delay that are improved by increasing bandwidth. Serialization delay, i.e. the amount of time it takes to put the  (2)  on the wire, and queuing delay (depth of the queue) are improved by increasing the  (3)  from a 128kbps circuit to a T1. However, three other components of delay, routing/switching delay, distance delay, and protocol delay are components that can not be positively affected by an  (4)  in bandwidth. If the circuits are not over-utilized, then increasing the bandwidth to improve the  (5)  of the application will only result in an increased bandwidth with no positive effects on performance.
  • A.capability
  • B.cost
  • C.amount
  • D.performance
4.[单选题]Serialization delay and  (1)  delay are the two components of network delay that are improved by increasing bandwidth. Serialization delay, i.e. the amount of time it takes to put the  (2)  on the wire, and queuing delay (depth of the queue) are improved by increasing the  (3)  from a 128kbps circuit to a T1. However, three other components of delay, routing/switching delay, distance delay, and protocol delay are components that can not be positively affected by an  (4)  in bandwidth. If the circuits are not over-utilized, then increasing the bandwidth to improve the  (5)  of the application will only result in an increased bandwidth with no positive effects on performance.
  • A.memory
  • B.cache
  • C.bandwidth
  • D.delay
5.[单选题]Serialization delay and  (1)  delay are the two components of network delay that are improved by increasing bandwidth. Serialization delay, i.e. the amount of time it takes to put the  (2)  on the wire, and queuing delay (depth of the queue) are improved by increasing the  (3)  from a 128kbps circuit to a T1. However, three other components of delay, routing/switching delay, distance delay, and protocol delay are components that can not be positively affected by an  (4)  in bandwidth. If the circuits are not over-utilized, then increasing the bandwidth to improve the  (5)  of the application will only result in an increased bandwidth with no positive effects on performance.
  • A.electricity
  • B.digital
  • C.data
  • D.variable
参考答案: B,A,D,C,C
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