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Cisco 350-701 Exam Syllabus Topics:

SectionWeightObjectives
Topic 1: Securing the Cloud15%- Security solutions for cloud environments
  • 1. Cisco Secure Workload
  • 2. Cisco Umbrella
- Cloud deployment models
  • 1. Public, Private, Hybrid
Topic 2: Secure Network Access, Visibility, and Enforcement15%- Identity management and secure network access
  • 1. 802.1X, MAB, WebAuth
  • 2. Change of Authorization (CoA)
  • 3. Guest services, profiling, posture assessment, BYOD
- Network telemetry and security products
  • 1. Cisco Secure Network Analytics (Stealthwatch)
  • 2. NetFlow, IPFIX
Topic 3: Content Security10%- Gateway security
  • 1. Email security
  • 2. Web security
Topic 4: Network Security20%- Configure and verify AAA (Authentication, Authorization, and Accounting)
  • 1. TACACS+, RADIUS
  • 2. Cisco Identity Services Engine (ISE)
- Infrastructure Security
  • 1. ACLs, CoPP, IP Source Guard
- Management plane security
  • 1. SSH, SNMP, NTP
Topic 5: Endpoint Protection and Detection15%- EPP and EDR solutions
  • 1. Cisco Secure Endpoint (AMP)
- Endpoint patching strategy
Topic 6: Security Concepts25%- Common security vulnerabilities
  • 1. Software bugs, weak passwords, SQL injection, missing encryption, buffer overflow, path traversal, XSS/CSRF
- Functions of the cryptography
  • 1. PKI, certificate management
- Common threats against on-premises and cloud environments
  • 1. Cloud: data breaches, insecure APIs, DoS/DDoS, compromised credentials
  • 2. On-premises: viruses, trojans, DoS/DDoS, phishing, rootkits, MITM, SQL injection, XSS, malware

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Cisco Implementing and Operating Cisco Security Core Technologies Sample Questions (Q658-Q663):

NEW QUESTION # 658
Which two features of Cisco DNA Center are used in a Software Defined Network solution? (Choose two)

Answer: C,D

Explanation:
What Cisco DNA Center enables you to do Automate: Save time by using a single dashboard to manage and automate your network. Quickly scale your business with intuitive workflows and reusable templates. Configure and provision thousands of network devices across your enterprise in minutes, not hours. Secure policy: Deploy group-based secure access and network segmentation based on business needs. With Cisco DNA Center, you apply policy to users and applications instead of to your network devices. Automation reduces manual operations and the costs associated with human errors, resulting in more uptime and improved security. Assurance then assesses the network and uses context to turn data into intelligence, making sure that changes in the network device policies achieve your intent. Assurance: Monitor, identify, and react in real time to changing network and wireless conditions. Cisco DNA Center uses your network's wired and wireless devices to create sensors everywhere, providing real-time feedback based on actual network conditions. The Cisco DNA Assurance engine correlates network sensor insights with streaming telemetry and compares this with the current context of these data sources. With a quick check of the health scores on the Cisco DNA Center dashboard, you can see where there is a performance issue and identify the most likely cause in minutes. Extend ecosystem: With the new Cisco DNA Center platform, IT can now integrate Cisco solutions and thirdparty technologies into a single network operation for streamlining IT workflows and increasing business value and innovation. Cisco DNA Center allows you to run the network with open interfaces with IT and business applications, integrates across IT operations and technology domains, and can manage heterogeneous network devices. Reference: https://www.cisco.com/c/en/us/products/collateral/cloud-systems-management/dna-center/nb-06- cisco-dna-center-aag-cte-en.html Automate: Save time by using a single dashboard to manage and automate your network. Quickly scale your business with intuitive workflows and reusable templates. Configure and provision thousands of network devices across your enterprise in minutes, not hours.
Secure policy: Deploy group-based secure access and network segmentation based on business needs. With Cisco DNA Center, you apply policy to users and applications instead of to your network devices. Automation reduces manual operations and the costs associated with human errors, resulting in more uptime and improved security. Assurance then assesses the network and uses context to turn data into intelligence, making sure that changes in the network device policies achieve your intent.
Assurance: Monitor, identify, and react in real time to changing network and wireless conditions. Cisco DNA Center uses your network's wired and wireless devices to create sensors everywhere, providing real-time feedback based on actual network conditions. The Cisco DNA Assurance engine correlates network sensor insights with streaming telemetry and compares this with the current context of these data sources. With a quick check of the health scores on the Cisco DNA Center dashboard, you can see where there is a performance issue and identify the most likely cause in minutes.
Extend ecosystem: With the new Cisco DNA Center platform, IT can now integrate Cisco solutions and thirdparty technologies into a single network operation for streamlining IT workflows and increasing business value and innovation. Cisco DNA Center allows you to run the network with open interfaces with IT and business applications, integrates across IT operations and technology domains, and can manage heterogeneous network devices.
What Cisco DNA Center enables you to do Automate: Save time by using a single dashboard to manage and automate your network. Quickly scale your business with intuitive workflows and reusable templates. Configure and provision thousands of network devices across your enterprise in minutes, not hours. Secure policy: Deploy group-based secure access and network segmentation based on business needs. With Cisco DNA Center, you apply policy to users and applications instead of to your network devices. Automation reduces manual operations and the costs associated with human errors, resulting in more uptime and improved security. Assurance then assesses the network and uses context to turn data into intelligence, making sure that changes in the network device policies achieve your intent. Assurance: Monitor, identify, and react in real time to changing network and wireless conditions. Cisco DNA Center uses your network's wired and wireless devices to create sensors everywhere, providing real-time feedback based on actual network conditions. The Cisco DNA Assurance engine correlates network sensor insights with streaming telemetry and compares this with the current context of these data sources. With a quick check of the health scores on the Cisco DNA Center dashboard, you can see where there is a performance issue and identify the most likely cause in minutes. Extend ecosystem: With the new Cisco DNA Center platform, IT can now integrate Cisco solutions and thirdparty technologies into a single network operation for streamlining IT workflows and increasing business value and innovation. Cisco DNA Center allows you to run the network with open interfaces with IT and business applications, integrates across IT operations and technology domains, and can manage heterogeneous network devices. Reference: https://www.cisco.com/c/en/us/products/collateral/cloud-systems-management/dna-center/nb-06- cisco-dna-center-aag-cte-en.html


NEW QUESTION # 659
What are two characteristics of the RESTful architecture used within Cisco DNA Center? (Choose two.)

Answer: A,C

Explanation:
REST stands for Representational State Transfer, which is an architectural style for designing web services.
RESTful web services use HTTP as the application protocol and support the standard HTTP methods, such as GET, PUT, POST, and DELETE, to perform CRUD (Create, Read, Update, Delete) operations on resources.
Cisco DNA Center exposes its functionality through a set of RESTful APIs that allow external applications to interact with the network controller and automate various tasks. The RESTful architecture used within Cisco DNA Center has the following characteristics12:
* It is simple, extensible, and secure to use. The APIs are based on open standards and use JSON as the data format. The APIs also support HTTPS for secure communication and authentication.
* It is stateless, meaning that each request contains all the information necessary to process it, and the server does not store any session or client state. This improves scalability and performance of the web services.
* It is resource-oriented, meaning that each API endpoint represents a logical entity or a resource that can be manipulated by the HTTP methods. For example, the /dna/intent/api/v1/network-device endpoint represents the network devices resource, and the GET method can be used to retrieve the list of network devices from Cisco DNA Center.
* It is uniform, meaning that the same interface and conventions are used across all the APIs. For example, the APIs use the same authentication mechanism, error handling, pagination, filtering, and sorting parameters. References:
* 1: Introduction to Cisco DNA Center REST APIs - Cisco DevNet Learning Labs
* 2: Cisco DNA Center Platform User Guide, Release 2.2.3


NEW QUESTION # 660
Refer to the exhibit.

A network engineer is testing NTP authentication and realizes that any device synchronizes time with this router and that NTP authentication is not enforced What is the cause of this issue?

Answer: A

Explanation:
The cause of this issue is that NTP authentication is not enabled on the router. The commands shown in the exhibit only define the authentication key and mark it as trusted, but they do not enable NTP authentication globally or on a per-peer basis. To enable NTP authentication globally, the command ntp authenticate must be used. To enable NTP authentication on a per-peer basis, the command ntp server ip-address key key-id or ntp peer ip-address key key-id must be used, where key-id is the same as the one defined by the ntp authentication-key command. Without enabling NTP authentication, any device can synchronize time with this router, regardless of whether it has the same authentication key or not.
The other options are incorrect because:
* The key was configured in plain text, but this is not the cause of the issue. Although it is recommended to use the ntp authentication-key key-id md5 key [encrypted] command to encrypt the key, using plain text does not prevent NTP authentication from working, as long as the same key is configured on both the router and the peer.
* The hashing algorithm that was used was MD5, which is supported by NTP. MD5 is the default algorithm for NTP authentication and it can be used with any key length from 1 to 16 characters. Other algorithms, such as SHA and SHA1, are also supported by NTP if the OpenSSL library is installed, but they are not required for NTP authentication to work.
* The router was not rebooted after the NTP configuration updated, but this is not necessary for NTP authentication to take effect. NTP authentication is applied immediately after the configuration
* commands are entered, and no reboot is required.
References:
* Configuring NTP
* Authentication Support
* NTP Authentication Explained


NEW QUESTION # 661
Drag and drop the security responsibilities from the left onto the corresponding cloud service models on the right.

Answer:

Explanation:

Explanation:

The cloud security shared responsibility model is a way of describing how the security tasks and obligations are divided between the cloud service provider (CSP) and the customer, depending on the type of cloud service model used. The cloud service models are:
Software as a Service (SaaS): The CSP provides and manages the entire software stack, including the applications, data, runtime, middleware, operating system, virtualization, servers, storage, and networking.
The customer only needs to access the software through a web browser or an application. The customer is responsible for managing their own data and identities, as well as configuring the security settings of the software. The CSP is responsible for everything else, including patching the operating system and the applications12 Platform as a Service (PaaS): The CSP provides and manages the platform layer, including the runtime, middleware, operating system, virtualization, servers, storage, and networking. The customer can deploy and run their own applications and data on the platform, using the tools and languages supported by the CSP. The customer is responsible for managing their own applications and data, as well as configuring the security settings of the platform. The CSP is responsible for patching the operating system and the middleware12 Infrastructure as a Service (IaaS): The CSP provides and manages the infrastructure layer, including the virtualization, servers, storage, and networking. The customer can provision and use virtual machines, containers, or bare metal servers, and install their own operating system, middleware, applications, and data.
The customer is responsible for managing and patching their own operating system, middleware, applications, and data, as well as configuring the security settings of the infrastructure. The CSP is responsible for the physical security and availability of the infrastructure12 References := 1: Shared responsibility in the cloud - Microsoft Azure 2: Cloud security shared responsibility model - NCSC


NEW QUESTION # 662
An organization has a requirement to collect full metadata information about the traffic going through their AWS cloud services. They want to use this information for behavior analytics and statistics. Which two actions must be taken to implement this requirement? (Choose two.)

Answer: C,E

Explanation:
https://www.cisco.com/c/dam/en/us/td/docs/security/stealthwatch/cloud/configuration/Public_Clou d_Monitoring_for_AWS_Quick_Start_Guide_DV_2_0.pdf


NEW QUESTION # 663
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