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350-701 Valid Study Questions - 350-701 Customized Lab Simulation
350-701 Valid Study Questions,350-701 Customized Lab Simulation,Pass 350-701 Exam,350-701 100% Exam Coverage,350-701 Free Braindumps, 350-701 Valid Study Questions - 350-701 Customized Lab Simulation

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How to schedule Implementing and Operating Cisco Security Core Technologies (SCOR 350-701)

  • Select Proctored Exams and enter the exam number 350-701
  • Follow the prompts to register
  • Log into your account at Pearson VUE

Necessary Prerequisites

In all, there are no mandatory requirements for attempting such an exam. Still, it will be great to have the following skills before registering for the official test:

  • Should have worked with the Cisco IOS networking facets and the related concepts;
  • Have proven skills in utilizing the Windows OS;
  • Be familiar with TCP/IP and Ethernet networking;
  • Be familiar with the fundamentals of security for networks.

>> 350-701 Valid Study Questions <<

350-701 Customized Lab Simulation, Pass 350-701 Exam

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Network Security – 20%

  • Configuring and verifying remote access VPN as well as site-to-site VPN.
  • Implementing the management options for network security solutions such as perimeter security & intrusion prevention (single versus multidevice manager, in-band versus out-of-band, SFTP, DNS, SCP, CDP, and DHCP security & risks);
  • Describing the capacity, benefits, and components of the NetFlow & Flexible NetFlow records;
  • Configuring and verifying the security methods related to network infrastructure, such as router, wireless, and switch;
  • Configuring the secure network management of perimeter security & intrusion prevention (secure device management, users, groups, authentication, SNMPv3, views, and encryption, secure logging, as well as NTP with authentication);

Cisco Implementing and Operating Cisco Security Core Technologies Sample Questions (Q101-Q106):

NEW QUESTION # 101
When using Cisco AMP for Networks which feature copies a file to the Cisco AMP cloud for analysis?

  • A. sandbox analysis
  • B. Spero analysis
  • C. dynamic analysis
  • D. malware analysis

Answer: C

Explanation:
Spero analysis examines structural characteristics such as metadata and header information in executable files. After generating a Spero signature based on this information, if the file is an eligible executable file, the device submits it to the Spero heuristic engine in the AMP cloud. Based on the Spero signature, the Spero engine determines whether the file is malware.
Spero analysis examines structural characteristics such as metadata and header information in executable files. After generating a Spero signature based on this information, if the file is an eligible executable file, the device submits it to the Spero heuristic engine in the AMP cloud. Based on the Spero signature, the Spero engine determines whether the file is malware.
Reference:
-> Spero analysis only uploads the signature of the (executable) files to the AMP cloud. It does not upload the whole file. Dynamic analysis sends files to AMP ThreatGrid.
Dynamic Analysis submits (the whole) files to Cisco Threat Grid (formerly AMP Threat Grid). Cisco Threat Grid runs the file in a sandbox environment, analyzes the file's behavior to determine whether the file is malicious, and returns a threat score that indicates the likelihood that a file contains malware. From the threat score, you can view a dynamic analysis summary report with the reasons for the assigned threat score. You can also look in Cisco Threat Grid to view detailed reports for files that your organization submitted, as well as scrubbed reports with limited data for files that your organization did not submit.
Local malware analysis allows a managed device to locally inspect executables, PDFs, office documents, and other types of files for the most common types of malware, using a detection rule set provided by the Cisco Talos Security Intelligence and Research Group (Talos). Because local analysis does not query the AMP cloud, and does not run the file, local malware analysis saves time and system resources. -> Malware analysis does not upload files to anywhere, it only checks the files locally.
There is no sandbox analysis feature, it is just a method of dynamic analysis that runs suspicious files in a virtual machine.
Spero analysis examines structural characteristics such as metadata and header information in executable files. After generating a Spero signature based on this information, if the file is an eligible executable file, the device submits it to the Spero heuristic engine in the AMP cloud. Based on the Spero signature, the Spero engine determines whether the file is malware.
-> Spero analysis only uploads the signature of the (executable) files to the AMP cloud. It does not upload the whole file. Dynamic analysis sends files to AMP ThreatGrid.
Dynamic Analysis submits (the whole) files to Cisco Threat Grid (formerly AMP Threat Grid). Cisco Threat Grid runs the file in a sandbox environment, analyzes the file's behavior to determine whether the file is malicious, and returns a threat score that indicates the likelihood that a file contains malware. From the threat score, you can view a dynamic analysis summary report with the reasons for the assigned threat score. You can also look in Cisco Threat Grid to view detailed reports for files that your organization submitted, as well as scrubbed reports with limited data for files that your organization did not submit.
Local malware analysis allows a managed device to locally inspect executables, PDFs, office documents, and other types of files for the most common types of malware, using a detection rule set provided by the Cisco Talos Security Intelligence and Research Group (Talos). Because local analysis does not query the AMP cloud, and does not run the file, local malware analysis saves time and system resources. -> Malware analysis does not upload files to anywhere, it only checks the files locally.
There is no sandbox analysis feature, it is just a method of dynamic analysis that runs suspicious files in a
-> Spero analysis only uploads the signature of the (executable) files to the AMP cloud. It does not upload the whole file. Dynamic analysis sends files to AMP ThreatGrid.
Dynamic Analysis submits (the whole) files to Cisco Threat Grid (formerly AMP Threat Grid). Cisco Threat Grid runs the file in a sandbox environment, analyzes the file's behavior to determine whether the file is malicious, and returns a threat score that indicates the likelihood that a file contains malware. From the threat score, you can view a dynamic analysis summary report with the reasons for the assigned threat score. You can also look in Cisco Threat Grid to view detailed reports for files that your organization submitted, as well as scrubbed reports with limited data for files that your organization did not submit.
Local malware analysis allows a managed device to locally inspect executables, PDFs, office documents, and other types of files for the most common types of malware, using a detection rule set provided by the Cisco Talos Security Intelligence and Research Group (Talos). Because local analysis does not query the AMP cloud, and does not run the file, local malware analysis saves time and system resources. -> Malware analysis does not upload files to anywhere, it only checks the files locally.
There is no sandbox analysis feature, it is just a method of dynamic analysis that runs suspicious files in a virtual machine.


NEW QUESTION # 102
Which Cisco product provides proactive endpoint protection and allows administrators to centrally manage the deployment?

  • A. NGFW
  • B. ESA
  • C. AMP
  • D. WSA

Answer: C

Explanation:
Explanation


NEW QUESTION # 103
An attacker needs to perform reconnaissance on a target system to help gain access to it. The system has weak passwords, no encryption on the VPN links, and software bugs on the system's applications. Which vulnerability allows the attacker to see the passwords being transmitted in clear text?

  • A. weak passwords for authentication
  • B. unencrypted links for traffic
  • C. software bugs on applications
  • D. improper file security

Answer: B

Explanation:
Reference:
https://www.cisco.com/ELearning/bulk/public/celc/CRS/media/targets/resources_mod07/7_3_5_improving_security.pdf


NEW QUESTION # 104
Drag and drop the solutions from the left onto the solution's benefits on the right.

Answer:

Explanation:


NEW QUESTION # 105
What is the purpose of the Decrypt for Application Detection feature within the WSA Decryption options?

  • A. It provides enhanced HTTPS application detection for AsyncOS.
  • B. It alerts users when the WSA decrypts their traffic.
  • C. It decrypts HTTPS application traffic for authenticated users.
  • D. It decrypts HTTPS application traffic for unauthenticated users.

Answer: A


NEW QUESTION # 106
......

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