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NEW QUESTION: 1
Sie haben ein Azure-Abonnement mit dem Namen Subcription1.has
Subcription1 enthält die virtuellen Maschinen in der folgenden Tabelle.

Subcription1 enthält die virtuellen Maschinen in der folgenden Tabelle.

VM3 verfügt über mehrere Netzwerke, einschließlich eines Netzwerkadapters mit dem Namen NIC3. Die IP-Weiterleitung ist auf NIC3 aktiviert.
Das Routing ist auf VM3 aktiviert.
Sie erstellen eine Routentabelle mit dem Namen RT1, die die Routen in der folgenden Tabelle enthält.

Sie wenden RT1 auf Subnetz1 und Sybnet2 an.
Wählen Sie für jede der folgenden Aussagen Ja aus, wenn die Aussagen wahr sind. Andernfalls wählen Sie Nein.
HINWEIS: Jede richtige Auswahl ist einen Punkt wert.

Answer:
Explanation:

Explanation
IP forwarding enables the virtual machine a network interface is attached to:
* Receive network traffic not destined for one of the IP addresses assigned to any of the IP configurations assigned to the network interface.
* Send network traffic with a different source IP address than the one assigned to one of a network interface's IP configurations.
The setting must be enabled for every network interface that is attached to the virtual machine that receives traffic that the virtual machine needs to forward. A virtual machine can forward traffic whether it has multiple network interfaces or a single network interface attached to it.
Box 1: Yes
The routing table allows connections from VM3 to VM1 and VM2. And as IP forwarding is enabled on VM3, VM3 can connect to VM1.
Box 2: No
VM3, which has IP forwarding, must be turned on, in order for VM2 to connect to VM1.
Box 3: Yes
The routing table allows connections from VM1 and VM2 to VM3. IP forwarding on VM3 allows VM1 to connect to VM2 via VM3.

References:
https://docs.microsoft.com/en-us/azure/virtual-network/virtual-networks-udr-overview
https://www.quora.com/What-is-IP-forwarding

NEW QUESTION: 2
Sie arbeiten als Senior Administrator bei Contoso.com. Das Contoso.com-Netzwerk besteht aus einer einzelnen Domäne mit dem Namen Contoso.com. Auf allen Servern im Contoso.com-Netzwerk ist Windows Server 2012 R2 installiert.
Sie führen eine Schulungsübung für Junioradministratoren durch. Sie diskutieren derzeit die Verwendung von NUMA (Non-Uniform Memory Architecture).
Welche der folgenden Aussagen ist in Bezug auf die ungleichmäßige Speicherarchitektur (NUMA) WAHR? (Wähle zwei.)
A. Damit kann ein Prozessor schneller auf den lokalen Speicher zugreifen als auf den Remote-Speicher.
B. Es handelt sich um eine Computerarchitektur, die in Multiprozessorsystemen verwendet wird.
C. Es handelt sich um eine Computerarchitektur, die in Einzelprozessorsystemen verwendet wird.
D. Damit kann ein Prozessor schneller auf den Remote-Speicher zugreifen als auf den lokalen Speicher.
Answer: A,B
Explanation:
Erläuterung
NUMA ist eine Hardware-Design-Funktion, die CPUs und Speicher in einem physischen Server in NUMA-Knoten unterteilt.
Sie erzielen die beste Leistung, wenn ein Prozess Speicher und CPU innerhalb desselben NUMA-Knotens verwendet.
de ist voll, dann bekommt es Speicher von
Wenn ein Prozess mehr Speicher benötigt, der aktuelle NUMA jedoch keinen weiteren NUMA-Knoten und dies zu Performance-Kosten für diesen Prozess und möglicherweise für alle anderen Prozesse auf diesem physischen Server führt. Deshalb müssen sich die Virtualisierungstechniker dessen bewusst sein. In Hyper-V haben wir dynamischen Speicher.
Uneinheitlicher Speicherzugriff oder Uneinheitliche Speicherarchitektur (NUMA) ist ein Computerspeicherentwurf, der in Multiprozessoren verwendet wird, bei denen die Speicherzugriffszeit vom Speicherort in Bezug auf einen Prozessor abhängt. Unter ccNUMA kann ein Prozessor schneller auf seinen eigenen lokalen Speicher zugreifen als auf nicht lokalen Speicher, d. H. Auf Speicher, der für einen anderen Prozessor lokal ist, oder auf Speicher, der von Prozessoren gemeinsam genutzt wird. NUMA-Architekturen folgen logischerweise der Skalierung von SMP-Architekturen (Symmetric Multiprocessing).

NEW QUESTION: 3
Which two statements about SAN zoning on Cisco Nexus switches are true? (Choose two.)
A. Devices can only belong to one zone.
B. Zoning must be administered from the primary SAN switch in the fabric.
C. Zoning is enforced by examining the destination ID field.
D. Only one zone set can be activated at any time.
E. Zone configuration changes are nondisruptive.
F. A zone can only be a member one zone set.
Answer: D,E
Explanation:
Explanation/Reference:
Explanation:
A zone set can be activated or deactivated as a single entity across all switches in the fabric. Only one zone set can be activated at any time. If zoning is not activated, all devices are members of the default zone. If zoning is activated, any device that is not in an active zone (a zone that is part of an active zone set) is a member of the default zone. Zoning can be administered from any switch in the fabric. When you activate a zone (from any switch), all switches in the fabric receive the active zone set. Additionally, full zone sets are distributed to all switches in the fabric, if this feature is enabled in the source switch.
http://www.cisco.com/en/US/docs/storage/san_switches/mds9000/sw/san-os/quick/guide/qcg_zones.html

NEW QUESTION: 4
図に示すように、Azure DevOpsでリリースパイプラインを構成しています。

ドロップダウンメニューを使用して、グラフィックに表示されている情報に基づいて各質問に回答する回答の選択肢を選択します。
注:それぞれ正しい選択は1ポイントの価値があります。

Answer:
Explanation:

Explanation

Box 1: 5
There are five stages: Development, QA, Pre-production, Load Test and Production. They all have triggers.
Box 2: The Internal Review stage
References: https://docs.microsoft.com/en-us/azure/devops/pipelines/release/triggers