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You're in charge of a research facility handling cutting-edge projects. Due to the nature of your work, you're concerned about sophisticated cyberattacks. Which firewall configuration would be most effective at countering advanced threats?0.5 MarksApplication Firewall at the network perimeterHost-based Firewall with Intrusion Prevention System (IPS) Network-based Firewall with Content FilteringStateful Inspection Firewall with Virtual Private Network (VPN)Hardware Firewall with Deep Packet Inspection (DPI)

Question

You're in charge of a research facility handling cutting-edge projects. Due to the nature of your work, you're concerned about sophisticated cyberattacks. Which firewall configuration would be most effective at countering advanced threats?0.5 MarksApplication Firewall at the network perimeterHost-based Firewall with Intrusion Prevention System (IPS) Network-based Firewall with Content FilteringStateful Inspection Firewall with Virtual Private Network (VPN)Hardware Firewall with Deep Packet Inspection (DPI)

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Solution

To effectively counter advanced cyber threats in a research facility handling cutting-edge projects, a combination of multiple firewall configurations is recommended.

Firstly, an Application Firewall at the network perimeter would be beneficial. This type of firewall is specifically designed to monitor and control the traffic based on the application layer protocols. It can detect and block any malicious activities targeting specific applications, providing an additional layer of security.

Secondly, a Host-based Firewall with Intrusion Prevention System (IPS) should be implemented. This firewall is installed on individual devices and can detect and prevent unauthorized access or malicious activities at the host level. The IPS component adds an extra layer of protection by actively monitoring network traffic and blocking any suspicious or known attack patterns.

Additionally, a Network-based Firewall with Content Filtering can be employed. This type of firewall can inspect and filter network traffic based on predefined rules and policies. It can block access to malicious websites, restrict certain types of content, and prevent the transmission of sensitive information, thereby reducing the risk of cyberattacks.

Furthermore, a Stateful Inspection Firewall with Virtual Private Network (VPN) capability is recommended. This firewall not only examines the incoming and outgoing packets but also keeps track of the state of network connections. It can authenticate and encrypt VPN connections, ensuring secure communication between remote locations and protecting sensitive data from interception.

Lastly, a Hardware Firewall with Deep Packet Inspection (DPI) can be utilized. This firewall operates at the network level and can inspect the content of packets in detail. It can identify and block malicious traffic based on specific patterns or signatures, providing an advanced level of protection against sophisticated cyber threats.

By implementing a combination of these firewall configurations, the research facility can enhance its defense against advanced cyberattacks and safeguard its valuable projects and data.

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