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NEW QUESTION # 31
Which of the following are classful addresses? (Select all that apply below)
Answer: B,C
Explanation:
Classful addressing follows the original IP address classes: Class A (/8), Class B (/16), and Class C (/24).
Option A (10.225.30.0/8) is a Class A address, and C (172.16.0.0/16) is a Class B address. Option B (10.225.30.0/16) and D (172.16.0.0/24) use non-standard masks for their respective ranges, making them classless (CIDR). The original document incorrectly lists only A. Fortinet routing supports both classful and classless addressing. Exact extract: "Classful addressing uses fixed subnet masks: Class A (/8), Class B (/16), and Class C (/24)... Addresses like 10.0.0.0/8 and 172.16.0.0/16 are classful, while non-standard masks indicate classless addressing."
NEW QUESTION # 32
What are the advantages of using a hub-and-spoke IPSec VPN configuration instead of a fully-meshed set of IPSec tunnels? (Select all that apply below)
Answer: A,B
Explanation:
Hub-and-spoke IPsec VPN reduces the number of tunnels needed (one per spoke to hub instead of n(n-1)/2 in full mesh), simplifying configuration and routing tables with summarized routes at the hub. It does not inherently provide stronger encryption or require for redundancy (though can be made redundant). Exact extract: I want to have a way to quickly (preferably automated) setup VPN's to my 2 hubs from each spoke.
However we do not want/need VPNs between spokes. Hub Configuration: Configure the FortiGate unit as the hub. Set up IPsec VPN tunnels for each spoke. Use preshared keys for authentication. The purpose of this document is to describe the requirements and general information for building a Hub & Spoke architecture using FortiGate-VM on Oracle Cloud ... The remote sites do not need to have connectivity to each other nor does the customer want them to have connectivity to each other. Given these ... This article gives a brief configuration example from one spoke to other spoke using IPsec, through the Hub firewall.
NEW QUESTION # 33
What are source and destination MAC addresses of an ARP request?
Answer: B
Explanation:
An ARP (Address Resolution Protocol) request is broadcast to resolve an IP address to a MAC address. The source MAC is the sender's MAC address, and the destination MAC is the broadcast address (FF:FF:FF:FF:
FF:FF) to reach all devices on the local network. Fortinet devices handle ARP for Layer 2 communication.
Options B, C, and D are incorrect as switches don't originate ARP requests, the target's MAC is unknown, and ARP uses broadcast, not multicast. Exact extract: "In an ARP request, the source MAC address is that of the sending device, and the destination MAC address is the broadcast address (FF:FF:FF:FF:FF:FF), sent to all devices in the local network segment."
NEW QUESTION # 34
Which of the following protocols operates at Layer 4
Answer: B
Explanation:
IPsec operates at Layer 4 (Transport Layer) in the OSI model, providing secure communication via protocols like ESP and AH, which work with TCP or UDP. BGP and OSPF are Layer 3 (Network Layer) routing protocols, and ARP operates at Layer 2 (Data Link Layer). Fortinet's FortiGate uses IPsec for VPNs at Layer
4. Exact extract: "IPsec operates at the Transport Layer (Layer 4) to secure communications, encapsulating TCP or UDP packets... BGP and OSPF function at the Network Layer, while ARP resolves IP to MAC addresses at the Data Link Layer."
NEW QUESTION # 35
A Company is running an outdated version of a Webserver software that is vulnerable to multiple code execution and injection attacks. Which Security feature can protect the Webserver until the security patches are applied?
Answer: C
Explanation:
An Intrusion Prevention System (IPS) actively blocks malicious traffic, such as code execution or injection attacks, by matching against known signatures or anomalies, protecting the webserver until patches are applied. Intrusion Detection System (IDS) only detects and alerts, not blocks. Anti-virus and anti-rootkit are less effective for web-based attacks. The original document's answer B is incorrect, as IDS does not prevent attacks. Exact extract: "IPS provides active protection by blocking malicious traffic based on signatures or anomaly detection... Unlike IDS, which only detects and alerts, IPS can drop packets to prevent attacks like code execution or SQL injection."
NEW QUESTION # 36
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