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Earning the Google Professional Cloud Network Engineer certification proves that you can perform successful Cloud implementations with the help of the command-line interface or Google Cloud Platform Console. The knowledge and skills gained during exam preparation qualify you for numerous networking-related job roles. Some of the titles that the certified candidates can consider include a Cloud Network Engineer, a Cloud Technical Solutions Engineer, a Cloud Infrastructure Engineer, a Cloud Security Engineer, a Server Infrastructure Engineer, a Data Engineer, a Corporate Sales Engineer, and a Sales Engineer, among others. The median salary associated with these positions is $132,279 per year.

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Topics of Google Professional Cloud Network Engineer Exam

Candidates must know the exam topics before they start of preparation. because it will really help them in hitting the core. Our Google Professional Cloud Network Engineer Dumps will include the following topics:

Network architectures, this individual ensures successful cloud implementations using the command line interface or the Google Cloud Platform Console.

1. Designing, planning, and prototyping a GCP network

Designing the overall network architecture

  • Understanding how quotas are applied per project and per VPC
  • Container networking
  • Optimizing for latency (e.g., MTU size, caches, CDN)
  • Microsegmentation for security purposes (e.g., using metadata, tags)
  • SaaS, PaaS, and IaaS services
  • DNS strategy (e.g., on-premises, Cloud DNS, GSLB)
  • Failover and disaster recovery strategy
  • Meeting business requirements
  • IAM and security
  • Options for high availability
  • Choosing the appropriate load balancing options
  • Hybrid connectivity (e.g., Google private access for hybrid connectivity)

Designing a Virtual Private Cloud (VPC). Considerations include:

  • Multiple vs. single
  • Peering
  • Routes
  • Differences between Google Cloud Networking and other cloud platforms
  • Standalone or shared
  • CIDR range for subnets
  • Multi-zone and multi-region
  • IP addressing (e.g., static, ephemeral, private)
  • Firewall (e.g., service account-based, tag-based)

Designing a hybrid network. Considerations include:

  • Using interconnect (e.g., dedicated vs. partner)
  • Failover and disaster recovery strategy (e.g., building high availability with BGP using cloud router)
  • Shared vs. standalone VPC interconnect access
  • IPsec VPN
  • Peering options (e.g., direct vs. carrier)
  • Cross-organizational access
  • Cloud Router
  • Bandwidth

Designing a container IP addressing plan for Google Kubernetes Engine

2. Implementing a GCP Virtual Private Cloud (VPC)

Configuring VPCs. Considerations include:

  • Creating a shared VPC and explaining how to share subnets with other projects
  • Configuring VPC peering
  • Configuring API access (private, public, NAT GW, proxy)
  • Configuring GCP VPC resources (CIDR range, subnets, firewall rules, etc.)
  • Configuring VPC flow logs

Configuring routing. Tasks include:

  • Configuring routing policies using tags and priority
  • Configuring NAT (e.g., Cloud NAT, instance-based NAT)
  • Configuring internal static/dynamic routing

Configuring and maintaining Google Kubernetes Engine clusters. Considerations include:

  • Clusters with shared VPC
  • VPC-native clusters using alias IPs
  • Private clusters
  • Cluster network policy
  • Adding authorized networks for cluster master access

Configuring and managing firewall rules. Considerations include:

  • Priority
  • Ingress and egress rules
  • Target network tags and service accounts
  • Firewall logs
  • Network protocols

3. Configuring network services

Configuring load balancing. Considerations include:

  • TCP and SSL proxy load balancers
  • Firewall and security rules
  • Internal load balancer
  • Creating backend services
  • HTTP(S) load balancer: including changing URL maps, backend groups, health checks, CDN, and SSL certs
  • Network load balancer
  • Capacity scaling
  • Session affinity

Configuring Cloud CDN. Considerations include:

  • Enabling and disabling Cloud CDN
  • Using cache keys
  • Cache invalidation
  • Signed URLs

Configuring and maintaining Cloud DNS. Considerations include:

  • Internal DNS
  • Managing zones and records
  • Integrating on-premises DNS with GCP
  • Migrating to Cloud DNS
  • Global serving with Anycast
  • Cloud DNS
  • DNS Security (DNSSEC)

Enabling other network services. Considerations include:

  • Health checks for your instance groups
  • Enabling private API access
  • Canary (A/B) releases
  • Distributing backend instances using regional managed instance groups

4. Implementing hybrid interconnectivity

Configuring interconnect. Considerations include:

  • Virtualizing using VLAN attachments
  • Partner (e.g., layer 2 vs. layer 3 connectivity)
  • Bulk storage uploads

Configuring a site-to-site IPsec VPN (e.g., route-based, policy-based, dynamic or static routing).

Configuring Cloud Router for reliability.

5. Implementing network security

Configuring identity and access management (IAM). Tasks include:

  • Defining custom IAM roles
  • Viewing account IAM assignments
  • Using pre-defined IAM roles (e.g., network admin, network viewer, network user)
  • Assigning IAM roles to accounts or Google Groups

Configuring Cloud Armor policies. Considerations include:

  • IP-based access control

Configuring third-party device insertion into VPC using multi-nic (NGFW)

Managing keys for SSH access

6. Managing and monitoring network operations

Logging and monitoring with Stackdriver or GCP Console

Managing and maintaining security. Considerations include:

  • Diagnosing and resolving IAM issues (shared VPC, security/network admin)
  • Firewalls (e.g., cloud-based, private)

Maintaining and troubleshooting connectivity issues. Considerations include:

  • Troubleshooting Cloud Router BGP peering issues
  • Identifying traffic flow topology (e.g., load balancers, SSL offload, network endpoint groups)
  • Cross-connect handoff for interconnect
  • Draining and redirecting traffic flows
  • Monitoring ingress and egress traffic using flow logs
  • Monitoring firewall logs
  • Managing and troubleshooting VPNs

Monitoring, maintaining, and troubleshooting latency and traffic flow. Considerations include:

Network throughput and latency testing Routing issues Tracing traffic flow

7. Optimizing network resources

Optimizing traffic flow. Considerations include:

  • Global vs. regional dynamic routing
  • Accommodating workload increases (e.g., autoscaling vs. manual scaling)
  • Expanding subnet CIDR ranges in service
  • Load balancer and CDN location

Optimizing for cost and efficiency. Considerations include:

  • Cost optimization (Network Service Tiers, Cloud CDN, autoscaler [max instances])
  • VPN vs. interconnect
  • Automation
  • Bandwidth utilization (e.g., kernel sys tuning parameters)

Reference: https://cloud.google.com/certification/cloud-network-engineer

Implement GCP VPCs

  • Configure & Maintain Google Kubernetes Engine Clusters: This subsection covers the skills in using private clusters, clustered with the shared VPC, VPC-native clustered with the use of alias IPs and including authorized networks for cluster master access;
  • Configure VPCs: This subject area requires that the candidates have the ability to configure GCP virtual private Cloud resources; configure VPC peering; create shared VPCs and explain the process of sharing subnets with the other projects;
  • Configure & Manage Firewall Rules: This part will measure one’s knowledge of priority, firewall logs, ingress & egress rules, network protocols, and target service accounts & network tags.

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