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AZ-700 course/training: Gain the knowledge needed to pass the AZ-700 exam
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Watch this video to learn information that will help you pass the AZ-700 Designing and Implementing Microsoft Azure Networking Solutions
Gain Certification: Microsoft Certified Azure Network Engineer Associate
Exam Objective based topics you were learn in this video:
Design and implement private IP addressing for Azure resources
*Plan and implement network segmentation and address spaces
*Create a virtual network (VNet)
*Peering virtual networks
*Plan and configure subnetting for services, including VNet gateways, firewalls, etc..
*Plan and configure subnet delegation
*Create a prefix for public IP addresses
*Choose when to use a public IP address prefix
*Plan and implement a custom public IP address prefix (bring your own IP)
*Create a new public IP address
*Associate public IP addresses to resources
Design and implement name resolution
*Design name resolution inside a VNet
*Configure DNS settings inside a VNet
*Design public DNS zones
*Design private DNS zones
*Configure a public or private DNS zone
*Link a private DNS zone to a VNet
*Plan and implement Azure Private DNS Resolver
Design and implement VNet connectivity and routing
*Design service chaining, including gateway transit
*Design virtual private network (VPN) connectivity between VNets
*Implement VNet peering
*Design and implement user-defined routes (UDRs)
*Associate a route table with a subnet
*Configure forced tunneling
*Diagnose and resolve routing issues
*Understanding Azure Route Server
*Identify appropriate use cases for a Virtual Network NAT gateway
*Implement a NAT gateway
*Cleaning up some of the Azure resources
Monitor networks
*Creating a couple of VMs with networking to monitor
*Configure monitoring, network diagnostics, and logs in Azure Network Watcher
*Monitor and repair network health by using Azure Network Watcher
*Activate and monitor distributed denial-of-service (DDoS) protection
*Understanding Microsoft Defender for DNS
Design, implement, and manage a site-to-site VPN connection
*Design a site-to-site VPN connection, including for high availability
*Select an appropriate VNet gateway SKU for site-to-site VPN requirements
*Implement a site-to-site VPN connection
*Identify when to use a policy-based VPN versus a route-based VPN connection
*Create and configure an IPsec/IKE policy
*Diagnose and resolve virtual network gateway connectivity issues
*Understanding Azure Extended Network
Design, implement, and manage a point-to-site VPN connection
*Select an appropriate virtual network gateway SKU for point-to-site VPN requirements
*Select the appropriate tunnel type
*Select an appropriate authentication method
*Configure RADIUS authentication
*Configure certificate-based authentication and implement a VPN client config file
*Configure authentication by using Azure Azure AD, part of Microsoft Entra
*Diagnose and resolve client-side and authentication issues
*Specify Azure requirements for Always On authentication
*Understanding Azure Network Adapter
*Removing the VPN gateway
Design, implement, and manage Azure ExpressRoute
*Select an ExpressRoute connectivity model
*Select an appropriate ExpressRoute SKU and tier
*Design and implement ExpressRoute, cross-region, redundancy, & disaster recovery
*Design and implement ExpressRoute Global Reach,FastPath, and ExpressRoute Direct
*Choose between private peering only, Microsoft peering only, or both
*Create an ExpressRoute Circuit & check the private peering & Microsoft Peering status
*Create an ExpressRoute gateway
*Encryption over ExpressRoute
*Bidirectional Forwarding Detection
*Diagnose and resolve ExpressRoute connection issues
*Removing ExpressRoute resources before moving on
Design and implement an Azure Virtual WAN architecture
*Identify use for Azure Virtual WANs
*Select a Virtual WAN SKU
*Design a Virtual WAN architecture, including selecting types and services
*Create a hub in Virtual WAN
*Choose an appropriate scale unit for each gateway type
*Deploy a gateway into a Virtual WAN hub
*Configure virtual hub routing
*Integrate a Virtual WAN hub with a third-party NVA
*Removing Azure Virtual WAN resources
Design and implement an Azure Load Balancer
*Map requirements to features and capabilities of Azure Load Balancer
*Identify appropriate use cases for Azure Load Balancer
*Choose an Azure Load Balancer SKU and tier
*Choose between public and internal
*Create and configure an Azure Load Balancer
*Implement a load balancing rule
*Create and configure inbound NAT rules
*Create and configure explicit outbound rules, including SNAT
*Removing the Azure Load Balancer before moving forward
THERE ARE MORE OBJECTIVES COVERED IN THE ACTUALY COURSE THAT I COULDN'T LIST HERE DUE TO YOUTUBES RESTRICTIONS ON DESCRIPTION SIZE
Gain Certification: Microsoft Certified Azure Network Engineer Associate
Exam Objective based topics you were learn in this video:
Design and implement private IP addressing for Azure resources
*Plan and implement network segmentation and address spaces
*Create a virtual network (VNet)
*Peering virtual networks
*Plan and configure subnetting for services, including VNet gateways, firewalls, etc..
*Plan and configure subnet delegation
*Create a prefix for public IP addresses
*Choose when to use a public IP address prefix
*Plan and implement a custom public IP address prefix (bring your own IP)
*Create a new public IP address
*Associate public IP addresses to resources
Design and implement name resolution
*Design name resolution inside a VNet
*Configure DNS settings inside a VNet
*Design public DNS zones
*Design private DNS zones
*Configure a public or private DNS zone
*Link a private DNS zone to a VNet
*Plan and implement Azure Private DNS Resolver
Design and implement VNet connectivity and routing
*Design service chaining, including gateway transit
*Design virtual private network (VPN) connectivity between VNets
*Implement VNet peering
*Design and implement user-defined routes (UDRs)
*Associate a route table with a subnet
*Configure forced tunneling
*Diagnose and resolve routing issues
*Understanding Azure Route Server
*Identify appropriate use cases for a Virtual Network NAT gateway
*Implement a NAT gateway
*Cleaning up some of the Azure resources
Monitor networks
*Creating a couple of VMs with networking to monitor
*Configure monitoring, network diagnostics, and logs in Azure Network Watcher
*Monitor and repair network health by using Azure Network Watcher
*Activate and monitor distributed denial-of-service (DDoS) protection
*Understanding Microsoft Defender for DNS
Design, implement, and manage a site-to-site VPN connection
*Design a site-to-site VPN connection, including for high availability
*Select an appropriate VNet gateway SKU for site-to-site VPN requirements
*Implement a site-to-site VPN connection
*Identify when to use a policy-based VPN versus a route-based VPN connection
*Create and configure an IPsec/IKE policy
*Diagnose and resolve virtual network gateway connectivity issues
*Understanding Azure Extended Network
Design, implement, and manage a point-to-site VPN connection
*Select an appropriate virtual network gateway SKU for point-to-site VPN requirements
*Select the appropriate tunnel type
*Select an appropriate authentication method
*Configure RADIUS authentication
*Configure certificate-based authentication and implement a VPN client config file
*Configure authentication by using Azure Azure AD, part of Microsoft Entra
*Diagnose and resolve client-side and authentication issues
*Specify Azure requirements for Always On authentication
*Understanding Azure Network Adapter
*Removing the VPN gateway
Design, implement, and manage Azure ExpressRoute
*Select an ExpressRoute connectivity model
*Select an appropriate ExpressRoute SKU and tier
*Design and implement ExpressRoute, cross-region, redundancy, & disaster recovery
*Design and implement ExpressRoute Global Reach,FastPath, and ExpressRoute Direct
*Choose between private peering only, Microsoft peering only, or both
*Create an ExpressRoute Circuit & check the private peering & Microsoft Peering status
*Create an ExpressRoute gateway
*Encryption over ExpressRoute
*Bidirectional Forwarding Detection
*Diagnose and resolve ExpressRoute connection issues
*Removing ExpressRoute resources before moving on
Design and implement an Azure Virtual WAN architecture
*Identify use for Azure Virtual WANs
*Select a Virtual WAN SKU
*Design a Virtual WAN architecture, including selecting types and services
*Create a hub in Virtual WAN
*Choose an appropriate scale unit for each gateway type
*Deploy a gateway into a Virtual WAN hub
*Configure virtual hub routing
*Integrate a Virtual WAN hub with a third-party NVA
*Removing Azure Virtual WAN resources
Design and implement an Azure Load Balancer
*Map requirements to features and capabilities of Azure Load Balancer
*Identify appropriate use cases for Azure Load Balancer
*Choose an Azure Load Balancer SKU and tier
*Choose between public and internal
*Create and configure an Azure Load Balancer
*Implement a load balancing rule
*Create and configure inbound NAT rules
*Create and configure explicit outbound rules, including SNAT
*Removing the Azure Load Balancer before moving forward
THERE ARE MORE OBJECTIVES COVERED IN THE ACTUALY COURSE THAT I COULDN'T LIST HERE DUE TO YOUTUBES RESTRICTIONS ON DESCRIPTION SIZE
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