Throughput is raised as latency decreases.
Throughput is based on available bandwidth.
Throughput is lowered as latency decreases.
Latency is measured by SYNs returned for each metapacket.
第1题:
Which two queuing methods will allow a percentage of the available bandwidth to be allocated to each queue?()
第2题:
What happens when you enable QoS bandwidth detection? ()(Choose two.)
第3题:
SDM creates a low latency queuing (LLQ) service policy with its associated classes. What are the two types of low latency queuing available using the SDM QoS wizard?()
第4题:
Which two statements describe the criteria bandwidth detection uses to dynamically alter bandwidth allocation?()(Choose two.)
第5题:
Which two environments would take advantage of TCP Acceleration (AFP)? ()(Choose two.)
第6题:
satellite networks
low-latency networks
long-haul link with 95% compressibility.
long-haul link with 10% compressibility.
第7题:
The statistics show savings for all CIFS traffic.
The traffic transfered over 4,000 seconds faster.
There was a bandwidth savings of almost 68.9%.
The acceleration is only working for 68.9% of the traffic
第8题:
Circuit speed is reduced by 2% for overhead.
WAN speed can be configured to the LAN speed.
Bandwidth is adjusted based on minimum and maximum settings.
WAN bandwidth is detected based on acknowledgement of metapackets.
第9题:
It is compatible with all wireless clients.
It reduces roaming latency through reduced client RF channel scanning enhancements.
It reduces roaming latency to targeted times of less than 75ms.
Roaming occurs without reauthentication through a centralized RADIUS server.
It is enabled through WLSE deployment.
第10题:
LDP uses Down Stream On Demand.
RSVP uses Down Stream On Demand.
LDP uses Down Stream Unsolicited.
RSVP uses Down Stream Unsolicited.
第11题:
low-latency networks
high-latency networks
long-haul, low-bandwidth links
long-haul, high-bandwidth links
第12题:
Only one I/O calibration process can run at a time
It automates the resource allocation for the Automated Maintenance Tasks
It improves the performance of the performance-critical sessions while running
It can be used to estimate the maximum number of I/Os and maximum latency time for the system
The latency time is computed only when the TIMED_STATISTICS initialization parameter is set to TRUE
第13题:
To have the best possible voice quality and to utilize effectively the available bandwidth, which queuing and compression mechanisms need to be used?()
第14题:
Which two scenarios would benefit the most from TCP Acceleration? ()(Choose two.)
第15题:
Which two of these statements best describe fast secure roaming? (Choose two.)()
第16题:
What happens when you enable QoS bandwidth detection? ()(Choose two.)
第17题:
Click the Exhibit button.Which two are correct about CIFS acceleration based on the exhibit?() (Choose two.)
第18题:
Throughput is raised as latency decreases.
Throughput is based on available bandwidth.
Throughput is lowered as latency decreases.
Latency is measured by SYNs returned for each metapacket
第19题:
class-based weighted fair queuing (CBWFQ)
low latency queuing (LLQ)
priority queuing (PQ) or custom queuing (CQ)
Real-Time Transport Protocol (RTP) header compression
TCP header compression
UDP header compression
第20题:
Throughput is raised as latency decreases.
Throughput is based on available bandwidth.
Throughput is lowered as latency decreases.
Latency is measured by SYNs returned for each metapacket.
第21题:
Circuit speed is reduced by 2% for overhead.
WAN speed can be configured to the LAN speed.
Bandwidth is adjusted based on minimum and maximum settings
WAN bandwidth is detected based on acknowledgement of metapackets.
第22题:
issuing the ALTER SYSTEM ENABLE RESUMABLE; statement
issuing the ALTER SESSION ENABLE RESUMABLE; statement
modifying the RESUMABLE_TIMEOUT initialization parameter to a nonzero value
issuing the ALTER SYSTEM SET RESUMABLE_TIMEOUT=
第23题:
first-in, first-out queuing (FIFO)
priority queuing (PQ)
custom queuing (CQ)
weighted fair queuing (WFQ)
class-based WFQ (CBWFQ)
low latency queuing (LLQ)
第24题:
security contexts
- transparent firewall
WebVPN
Active/Active failover
low latency queuing
AIP-SSM intrusion prevention