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The Cisco 350-701 exam has a duration of 120 minutes and is offered in the English and Japanese languages. The official test can feature different types of questions from multiple-choice single response to multiple-choice multiple answers, testlet, fill in the blank, and drag and drop. In general, this security core exam should be taken by those individuals aiming for an exciting security role in information technology and now ready to advance. This group includes security engineers, network engineers, network designers, network administrators, systems engineers, technical solutions architects, consulting systems engineers, and network managers.
Cisco 350-701 Exam consists of multiple-choice questions that assess the candidate's ability to implement and operate Cisco security solutions. 350-701 exam covers a wide range of topics, including security concepts, network security, secure access, secure endpoint protection, secure network infrastructure, and cloud security. 350-701 exam duration is 120 minutes, and candidates must obtain a passing score of 825 out of 1000 to be certified. Implementing and Operating Cisco Security Core Technologies certification is globally recognized and provides professionals with the skills and knowledge required to secure enterprise networks and protect against cyber threats.
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Cisco 350-701 Exam is a valuable certification for security professionals who want to enhance their knowledge and skills in implementing and managing Cisco's security solutions. With the growing number of cyber threats, organizations need professionals who can design, implement, and manage security solutions to protect their network infrastructure. Implementing and Operating Cisco Security Core Technologies certification provides candidates with the skills and knowledge to meet the demands of organizations looking for experienced security professionals.
NEW QUESTION # 55
How is DNS tunneling used to exfiltrate data out of a corporate network?
Answer: D
Explanation:
Domain name system (DNS) is the protocol that translates human-friendly URLs, such as securitytut.com, into IP addresses, such as 183.33.24.13. Because DNS messages are only used as the beginning of each communication and they are not intended for data transfer, many organizations do not monitor their DNS traffic for malicious activity. As a result, DNS-based attacks can be effective if launched against their networks. DNS tunneling is one such attack.
An example of DNS Tunneling is shown below:
* The attacker incorporates one of many open-source DNS tunneling kits into an authoritative DNSnameserver (NS) and malicious payload.2. An IP address (e.g. 1.2.3.4) is allocated from the attacker's infrastructure and a domain name (e.g. attackerdomain.com) is registered or reused. The registrar informs the top-level domain (.com) nameservers to refer requests for attackerdomain.com to ns.attackerdomain.com, which has a DNS record mapped to 1.2.3.43. The attacker compromises a system with the malicious payload. Once the desired data is obtained, the payload encodes the data as a series of 32 characters (0-9, A-Z) broken into short strings (3KJ242AIE9, P028X977W,...).4. The payload initiates thousands of unique DNS record requests to the attacker's domain with each string as Reference: https://learn-umbrella.cisco.com/i/775902-dns-tunneling/0
NEW QUESTION # 56
What is the intent of a basic SYN flood attack?
Answer: C
NEW QUESTION # 57
What is a description of microsegmentation?
Answer: B
NEW QUESTION # 58
Refer to the exhibit.
Refer to the exhibit. What function does the API key perform while working with https://api.amp.cisco.com/v1/computers?
Answer: C
NEW QUESTION # 59
Drag and drop the cryptographic algorithms for IPsec from the left onto the cryptographic processes on the right.
Answer:
Explanation:
NEW QUESTION # 60
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