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NEW QUESTION: 1
Azure Machine Learning Studioでイメージ分類モデルを作成します。
モデルをコンテナー化されたWebサービスとしてデプロイする必要があります。
どの4つのアクションを順番に実行する必要がありますか?回答するには、適切なアクションをアクションのリストから回答エリアに移動し、正しい順序に並べます。
Answer:
Explanation:
Explanation:
The following diagram illustrates the complete deployment workflow:
The deployment workflow includes the following steps:
* Register the model in a registry hosted in your Azure Machine Learning Service workspace
* Register an image that pairs a model with a scoring script and dependencies in a portable container
* Deploy the image as a web service in the cloud or to edge devices
* Monitor and collect data
* Update a deployment to use a new image.
References:
https://docs.microsoft.com/bs-latn-ba/azure/machine-learning/service/concept-model-management-and-deployment#step-3-deploy-image
NEW QUESTION: 2
Your network contains a server that runs Windows Server 2008 R2. You need to create a script to identify known configuration issues.
What should you include in the script?
A. the Mrinfo tool
B. the Systeminfo tool
C. the Get-BPAModel cmdlet
D. the Invoke-BPAModel cmdlet
Answer: D
Explanation:
The Invoke-BPAModel cmdlet allows you to start a Best Practices Analyzer (BPA) scan for a specific model
that is installed on your computer.
Check the technet here:
http://technet.microsoft.com/en-us/library/ee617290.aspx
NEW QUESTION: 3
シミュレーション
あなたは小さなIT企業であるROUTE.comのネットワークエンジニアです。最近、2つの組織を統合しましたが、トポロジの展示に示すように、ネットワークを統合する必要があります。 1つのネットワークはOSPFをIGPとして使用しており、もう1つのネットワークはEIGRPをIGPとして使用しています。 OSPFネットワークとEIGRPネットワーク間の相互接続を提供するために、R4が既存のOSPFネットワークに追加されました。冗長性を提供する2つのリンクが追加されました。
ネットワーク要件には、R1のループバック101から172.16.1.100のOPSFドメインテストアドレスにpingおよびtelnetできる必要があることが記載されています。すべてのトラフィックは、最大の帯域幅を提供する最短パスを使用する必要があります。リンク障害が発生した場合、OSPFネットワークからEIGRPネットワークへの冗長パスが利用可能でなければなりません。どちらのネットワークでも静的またはデフォルトのルーティングは許可されていません。
以前のネットワークエンジニアが合併の実装を開始し、すべてのIPアドレス指定と基本的なIGPルーティングを正常に割り当てて検証しました。実装を完了し、ネットワーク要件が満たされていることを確認する必要があります。現在、どのルーターでも構成コマンドを削除または変更することはできません。新しいコマンドを追加したり、デフォルト値を変更したりできます。
A. Check the E part for details answer.
First we need to find out 5 parameters (Bandwidth, Delay, Reliability, Load, MTU) of the s0/0/0 interface (the interface of R2 connected to R4) for redistribution:
R2#show interface s0/0/0
Write down these 5 parameters, notice that we have to divide the Delay by 10 because the metric unit is in tens of microsecond. For example, we get Bandwidth=1544 Kbit, Delay=20000 us, Reliability=255, Load=1, MTU=1500 bytes then we would redistribute as follows:
R2#config terminal
R2(config)# router ospf 1
R2(config-router)# redistribute eigrp 100 metric-type 1 subnets
R2(config-router)#exit
R2(config-router)#router eigrp 100
R2(config-router)#redistribute ospf 1 metric 1544 2000 255 1 1500
Note: In fact, these parameters are just used for reference and we can use other parameters with no problem.
If the delay is 20000us then we need to divide it by 10, that is 20000 / 10 = 2000) For R3 we use the show interface fa0/0 to get 5 parameters too R3#show interface fa0/0 For example we get Bandwidth=10000 Kbit, Delay=1000 us, Reliability=255, Load=1, MTU=1500 bytes R3#config terminal R3(config)#router ospf 1 Finally you should try to "show ip route" to see the 172.16.100.1 network (the network behind R4) in the routing table of R1 and make a ping from R1 to this network.
Note: If the link between R2 and R3 is FastEthernet link, we must put the command below under EIGRP process to make traffic from R1 to go through R3 (R1 -> R2 -> R3 -> R4), which is better than R1 -> R2 -> R4.
R2(config-router)# distance eigrp 90 105
This command sets the Administrative Distance of all EIGRP internal routes to 90 and all EIGRP external routes to 105, which is smaller than the Administrative Distance of OSPF (110) -> the link between R2 & R3 will be preferred to the serial link between R2 & R4.
Note: The actual OPSF and EIGRP process numbers may change in the actual exam so be sure to use the actual correct values, but the overall solution is the same.
B. Check the E part for details answer.
First we need to find out 5 parameters (Bandwidth, Delay, Reliability, Load, MTU) of the s0/0/0 interface (the interface of R2 connected to R4) for redistribution:
R2#show interface s0/0/0
Write down these 5 parameters, notice that we have to divide the Delay by 10 because the metric unit is in tens of microsecond. For example, we get Bandwidth=1544 Kbit, Delay=20000 us, Reliability=255, Load=1, MTU=1500 bytes then we would redistribute as follows:
R2#config terminal
R2(config)# router ospf 1
R2(config-router)# redistribute eigrp 100 metric-type 1 subnets
R2(config-router)#exit
R2(config-router)#router eigrp 100
R2(config-router)#redistribute ospf 1 metric 1544 2000 255 1 1500
Note: In fact, these parameters are just used for reference and we can use other parameters with no problem.
If the delay is 20000us then we need to divide it by 10, that is 20000 / 10 = 2000) For R3 we use the show interface fa0/0 to get 5 parameters too R3#show interface fa0/0 For example we get Bandwidth=10000 Kbit, Delay=1000 us, Reliability=255, Load=1, MTU=1500 bytes R3#config terminal R3(config)#router ospf 1 R3(config-router)#redistribute eigrp 100 metric-type 1 subnets R3(config)#exit R3(config-router)#router eigrp 100 R3(config-router)#redistribute ospf 1 metric 10000 100 255 1 1500 Finally you should try to "show ip route" to see the 172.16.100.1 network (the network behind R4) in the routing table of R1 and make a ping from R1 to this network.
Note: If the link between R2 and R3 is FastEthernet link, we must put the command below under EIGRP process to make traffic from R1 to go through R3 (R1 -> R2 -> R3 -> R4), which is better than R1 -> R2 -> R4.
R2(config-router)# distance eigrp 90 105
Answer: B
NEW QUESTION: 4
Which two statements about the WLAN are true? (Choose two)
Refer to the exhibit.
A. The client has a 5 GHz connection.
B. The client is 802.11n capable.
C. The Cisco device is a 3600 series AP.
D. The client has authenticated.
E. 802 11b data rates are disabled in this WLAN
Answer: B,E