Exam HPE7-A01 Preview - New HPE7-A01 Test Preparation

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HP HPE7-A01, also known as the Aruba Certified Campus Access Professional certification exam, is a popular certification program designed for IT professionals who want to master the art of network access control and deployment. HPE7-A01 exam is developed by the Aruba Networks and is designed to test the candidate’s knowledge in deploying and managing secure wireless LANs, implementing network access control, and troubleshooting network issues.

HP HPE7-A01 (Aruba Certified Campus Access Professional) Exam is a certification exam designed for IT professionals who work in the field of network infrastructure. HPE7-A01 exam is specifically tailored to assess a candidate's knowledge and skills in designing, implementing, and managing enterprise-level wireless and wired networks using Aruba products and technologies. Passing HPE7-A01 exam validates the candidate's expertise in configuring Aruba controllers, access points, and switches, as well as their ability to troubleshoot network issues and implement security policies.

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Quiz HP - Reliable HPE7-A01 - Exam Aruba Certified Campus Access Professional Exam Preview

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HP HPE7-A01 certification exam is designed to test the knowledge and skills of IT professionals in the area of campus access networks. Aruba Certified Campus Access Professional Exam certification is aimed at network engineers, solutions architects, and technical consultants who are responsible for designing, implementing, and managing enterprise-level campus networks. HPE7-A01 exam tests a candidate’s understanding of Aruba’s networking technologies and their ability to design, configure, and troubleshoot Aruba-based networks.

HP Aruba Certified Campus Access Professional Exam Sample Questions (Q25-Q30):

NEW QUESTION # 25
You are doing tests in your lab and with the following equipment specifications
* AP1 has a radio that generates a 10 dBm signal
* AP2 has a radio that generates a 11 dBm signal
* AP1 has an antenna with a gain of 9 dBi
* AP2 has an antenna with a gain of 12 dBi.
* The antenna cable for AP1 has a 2 dB loss
* The antenna cable for AP2 has a 3 dB loss
What would be the calculated Equivalent Isotropic Radiated Power (EIRP) for APT?

  • A. 17 dBm
  • B. 26 dBm
  • C. -12 dBm
  • D. 30 dBm

Answer: A

Explanation:
Explanation
The calculated Equivalent Isotropic Radiated Power (EIRP) for AP1 is 17 dBm.
EIRP is the measured radiated power of an antenna in a specific direction. It is equal to the input power to the antenna multiplied by the gain of the antenna. It can also take into account the losses in transmission line, connectors, and other components. The formula for EIRP is:
EIRP = P + G - L
where P is the output power of the radio, G is the gain of the antenna, and L is the loss of the cable and connectors.
For AP1, we have:
P = 10 dBm G = 9 dBi L = 2 dB
Therefore,
EIRP = 10 + 9 - 2 EIRP = 17 dBm


NEW QUESTION # 26
You need lo have different routing-table requirements with Aruba CX 6300 VSF configuration Assuming the correct layer-2 VLAN already exists how would you create a new OSPF configuration for a separate routing table?

  • A. Attach OSPF process ID in the VRF configuration.
  • B. Create a new OSPF process ID with vrf name.
  • C. Create a new OSPF area, and attach VRF name.
  • D. Attach a new OSFP process ID with a custom routing table

Answer: B

Explanation:
Explanation
To create a new OSPF configuration for a separate routing table, you need to create a new OSPF process ID with vrf name. This will create a new OSPF instance that is associated with the specified VRF and its routing table. The other options are incorrect because they either do not create a new OSPF instance or do not associate it with a VRF. References:
https://www.arubanetworks.com/techdocs/AOS-CX/10.04/HTML/5200-6728/bk01-ch02.html
https://www.arubanetworks.com/techdocs/AOS-CX/10.04/HTML/5200-6728/bk01-ch03.html


NEW QUESTION # 27
For the Aruba CX 6400 switch, what does virtual output queueing (VOQ) implement that is different from most typical campus switches?

  • A. VSX
  • B. large ingress packet buffers
  • C. large egress packet buffers
  • D. per port ASICs

Answer: B

Explanation:
The Aruba CX 6400 switch is a modular switch that supports high-performance and high-density Ethernet switching for campus and data center networks. One of the features that distinguishes the Aruba CX 6400 switch from most typical campus switches is virtual output queueing (VOQ).
VOQ is a technique that implements large ingress packet buffers on each port to prevent head-of- line blocking and packet loss due to congestion2. VOQ allows each port to have multiple queues for different output ports and prioritize packets based on their destination and QoS class2. VOQ enables the Aruba CX 6400 switch to achieve high throughput and low latency for various traffic types and scenarios.


NEW QUESTION # 28
Describe the difference between Class of Service (CoS) and Differentiated Services Code Point (DSCP).

  • A. CoS is only contained in VLAN Tag fields DSCP is in the IP Header and preserved throughout the IP packet flow
  • B. CoS has much finer granularity than DSCP
  • C. CoS is only used to determine CLASS of traffic DSCP is only used to differentiate between different Classes.
  • D. They are similar and can be used interchangeably.

Answer: A

Explanation:
CoS and DSCP are both methods of marking packets for quality of service (QoS) purposes. QoS is a mechanism that allows network devices to prioritize and differentiate traffic based on certain criteria, such as application type, source, destination, etc. CoS stands for Class of Service and is a 3-bit field in the 802.1Q VLAN tag header. CoS can only be used on Ethernet frames that have a VLAN tag, and it can only be preserved within a single VLAN domain. DSCP stands for Differentiated Services Code Point and is a 6-bit field in the IP header. DSCP can be used on any IP packet, regardless of the underlying layer 2 technology, and it can be preserved throughout the IP packet flow, unless it is modified by intermediate devices. Reference: https://www.cisco.com/c/en/us/td/docs/ios-xml/ios/qos/configuration/15-mt/qos-15-mt-book/qos-overview.html https://www.cisco.com/c/en/us/support/docs/lan-switching/8021q/17056-741-4.html https://www.cisco.com/c/en/us/support/docs/quality-of-service-qos/qos-packet-marking/10103-dscpvalues.html


NEW QUESTION # 29
You are doing tests in your lab and with the following equipment specifications
* AP1 has a radio that generates a 10 dBm signal
* AP2 has a radio that generates a 11 dBm signal
* AP1 has an antenna with a gain of 9 dBi
* AP2 has an antenna with a gain of 12 dBi.
* The antenna cable for AP1 has a 2 dB loss
* The antenna cable for AP2 has a 3 dB loss
What would be the calculated Equivalent Isotropic Radiated Power (EIRP) for APT?

  • A. 17 dBm
  • B. 26 dBm
  • C. -12 dBm
  • D. 30 dBm

Answer: A

Explanation:
The calculated Equivalent Isotropic Radiated Power (EIRP) for AP1 is 17 dBm.
EIRP is the measured radiated power of an antenna in a specific direction. It is equal to the input power to the antenna multiplied by the gain of the antenna. It can also take into account the losses in transmission line, connectors, and other components. The formula for EIRP is:
EIRP = P + G - L
where P is the output power of the radio, G is the gain of the antenna, and L is the loss of the cable and connectors.
For AP1, we have:
P = 10 dBm G = 9 dBi L = 2 dB
Therefore,
EIRP = 10 + 9 - 2 EIRP = 17 dBm


NEW QUESTION # 30
......

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