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NEW QUESTION: 1
만성 유산소 운동 결과 어떤 심박수 변화가 관찰됩니까?
A. 표준 운동 과제의 최대 이하 심박수와 휴식중인 심박수가 감소합니다.
B. 표준 운동 과제의 경우 최대 최대 심박수가 감소하고 휴식중인 심박수가 증가합니다.
C. 휴식중인 심박수는 감소하지만 표준 운동 과제에 대한 최대 이하의 심박수에는 변화가 없습니다.
D. 표준 운동 과제의 경우 최대 최대 심박수가 증가하는 반면 휴식 심박수는 감소합니다.
Answer: A
NEW QUESTION: 2
Hinweis: Diese Frage ist Teil einer Reihe von Fragen, die dasselbe Szenario darstellen. Jede Frage in der Reihe enthält eine eindeutige Lösung. Stellen Sie fest, ob die Lösung die angegebenen Ziele erfüllt.
Sie müssen die vorhandene Umgebung ändern, um die technischen Anforderungen für Outlook im Web zu erfüllen.
Lösung: Sie führen den Befehl Set-CASMailbox aus.
Erfüllt dies das Ziel?
A. Ja
B. Nein
Answer: A
Explanation:
Erläuterung
Mit dem Befehl Set-CASMailbox können Sie Outlook Web App deaktivieren.
In diesem Beispiel wird Outlook Web App für das Postfach von Yan Li deaktiviert.
Set-CASMailbox -Identity "Yan Li" -OWAEnabled $ false
Aus dem Szenario: Die Geschäftsführung von Contoso möchte verhindern, dass Benutzer mithilfe von Outlook im Web auf ihr Exchange Online-Postfach zugreifen.
Hinweis: Mithilfe der Exchange-Verwaltungskonsole oder der Shell können Sie Outlook Web App für ein Benutzerpostfach aktivieren oder deaktivieren. Wenn Outlook Web App aktiviert ist, kann ein Benutzer Outlook Web App zum Senden und Empfangen von E-Mails verwenden. Wenn Outlook Web App deaktiviert ist, empfängt das Postfach weiterhin E-Mail-Nachrichten, und ein Benutzer kann mithilfe eines MAPI-Clients wie Microsoft Outlook oder eines POP- oder IMAP-E-Mail-Clients darauf zugreifen, um E-Mails zu senden und zu empfangen Das Postfach ist aktiviert, um den Zugriff dieser Clients zu unterstützen.
Referenzen: https://technet.microsoft.com/en-us/library/bb124124(v=exchg.150).aspx
NEW QUESTION: 3
You work as a Software Developer for ABC Inc. The company uses Visual Studio .NET 2008 as its application development platform. You create an ASP.NET Web application using .NET Framework 3.5. The application is a library application that catalogs Classes and books. The application contains a DataContext object named Classes and a related line of business object named Books. The Classes DataContext object is queried by using the following LINQ query: var query = from class in Classes where class.Books.All(b => b.Price <= 50) select class;
You have to find out the result that will be returned from the query. What will be the result of the query?
A. All Classes that have the price of the related book less than or equal to 50.
B. All books that have a price greater than or equal to 50.
C. All Classes that have the price of the related book greater than or equal to 50.
D. All books that have a price less than or equal to 50.
Answer: A
NEW QUESTION: 4
You are a network engineer for a company, study the exhibit carefully. The company's network is running EIGRP and you want to change the path R5 uses to reach 172.30.1.0/24 to R4. How could you achieve this goal?
A. Change the bandwidth on the link between R2 and R5 to 70, and change the bandwidth on the link between R3 and R5 to 70.
B. Change the bandwidth on the link between R4 and R5 to 110.
C. Change the bandwidth on the link between R3 and R5 to 70.
D. Do nothing, the best path to 172.30.1.0/24 from R5 is already through R4.
Answer: A
Explanation:
Here is an example from Cisco on how and why to change the EIGRP bandwidth along with the verification steps Change the Bandwidth at R2 Using the bandwidth to influence EIGRP paths is discouraged for two reasons: Changing the bandwidth can have impact beyond affecting the EIGRP metrics. For example, quality of service
(QoS) also looks at the bandwidth on an interface.
EIGRP throttles to use 50 percent of the configured bandwidth. Lowering the bandwidth can cause
problems like staving EIGRP neighbors from getting hello packets because of the throttling back.
Changing the delay does not impact other protocols nor does it cause EIGRP to throttle back.
Check the EIGRP topology table for R1 before you make any changes.
R1# show ip eigrp topology 10.1.3.0 255.255.255.0
IP-EIGRP (AS 1): topology entry for 10.1.3.0/24
State is Passive, Query origin flag is 1, 1 Successor(s), FD is 2221056
Routing Descriptor Blocks:
10.1.1.2 (Serial0.201), from 10.1.1.2, Send flag is 0x0 Composite metric is (2221056/307200), Route is Internal Vector metric: Minimum bandwidth is 1544 Kbit Total delay is 22000 microseconds Reliability is 255/255 Load is 1/255 Minimum MTU is 1500 Hop count is 2 Check the starting values for the ethernet0 interface on R2. R2# show interface ethernet0 Ethernet0 is up, line protocol is up Hardware is Lance, address is 0010.7b3c.6786 (bia 0010.7b3c.6786) Internet address is 10.1.2.2/24 MTU 1500 bytes, BW 10000 Kbit, DLY 1000 usec, rely 255/255, load 1/255 Encapsulation ARPA, loopback not set, keepalive set (10 sec) ARP type: ARPA, ARP Timeout 04:00:00 Last input 00:00:01, output 00:00:02, output hang never Last clearing of "show interface" counters never Input queue: 0/75/0/0 (size/max/drops/flushes); Total output drops: 0 Queueing strategy: fifo Output queue: 0/40 (size/max) 5 minute input rate 0 bits/sec, 0 packets/sec 5 minute output rate 0 bits/sec, 0 packets/sec 1938 packets input, 165094 bytes, 0 no buffer Received 1919 broadcasts, 0 runts, 0 giants, 0 throttles 0 input errors, 0 CRC, 0 frame, 0 overrun, 0 ignored, 0 abort 0 input packets with dribble condition detected 1482 packets output, 124222 bytes, 0 underruns 0 output errors, 0 collisions, 18 interface resets
0 babbles, 0 late collision, 0 deferred 0 lost carrier, 0 no carrier 0 output buffer failures, 0 output buffers swapped out Decrease the bandwidth to see the impact on R1. R2# configure terminal Enter configuration commands, one per line. End with CNTL/Z. R2(config)# interface ethernet0 R2(config-if)# bandwidth 5000 R2(config-if)# end R2# Confirm the change. R2# show interface ethernet0 Ethernet0 is up, line protocol is up Hardware is Lance, address is 0010.7b3c.6786 (bia 0010.7b3c.6786) Internet address is 10.1.2.2/24 MTU 1500 bytes, BW 5000 Kbit, DLY 1000 usec, rely 255/255, load 1/255 Encapsulation ARPA, loopback not set, keepalive set (10 sec) ARP type: ARPA, ARP Timeout 04:00:00 Last input 00:00:02, output 00:00:01, output hang never Last clearing of "show interface" counters never Input queue: 0/75/0/0 (size/max/drops/flushes); Total output drops: 0 Queueing strategy: fifo Output queue: 0/40 (size/max) 5 minute input rate 0 bits/sec, 0 packets/sec 5 minute output rate 0 bits/sec, 0 packets/sec 1995 packets input, 169919 bytes, 0 no buffer Received 1969 broadcasts, 0 runts, 0 giants, 0 throttles 0 input errors, 0 CRC, 0 frame, 0 overrun, 0 ignored, 0 abort 0 input packets with dribble condition detected 1525 packets output, 127831 bytes, 0 underruns 0 output errors, 0 collisions, 18 interface resets 0 babbles, 0 late collision, 0 deferred 0 lost carrier, 0 no carrier 0 output buffer failures, 0 output buffers swapped out Confirm that it also changed in the EIGRP topology table. R2# show ip eigrp topology 10.1.3.0 255.255.255.0 IP-EIGRP (AS 1): topology entry for 10.1.3.0/24 State is Passive, Query origin flag is 1, 2 Successor(s), FD is 563200 Routing Descriptor Blocks:
10.1.2.4 (Ethernet0), from 10.1.2.4, Send flag is 0x0 Composite metric is (563200/281600), Route is Internal
Vector metric: Minimum bandwidth is 5000 Kbit Total delay is 2000 microseconds Reliability is 255/255 Load is 1/255 Minimum MTU is 1500 Hop count is 1
10.1.2.3 (Ethernet0), from 10.1.2.3, Send flag is 0x0 Composite metric is (563200/281600), Route is Internal Vector metric: Minimum bandwidth is 5000 Kbit Total delay is 2000 microseconds Reliability is 255/255 Load is 1/255 Minimum MTU is 1500 Hop count is 1 Check the impact on the EIGRP topology table for R1. R1# show ip eigrp topology 10.1.3.0 255.255.255.0 IP-EIGRP (AS 1): topology entry for 10.1.3.0/24 State is Passive, Query origin flag is 1, 1 Successor(s), FD is 2221056 Routing Descriptor Blocks:
10.1.1.2 (Serial0.201), from 10.1.1.2, Send flag is 0x0 Composite metric is (2221056/563200), Route is Internal Vector metric: Minimum bandwidth is 1544 Kbit Total delay is 22000 microseconds Reliability is 255/255 Load is 1/255 Minimum MTU is 1500 Hop count is 2
There is no change, as the Frame Relay connection between R1 and R2 is still the lowest speed link. You see a change only if you decrease that bandwidth on the ethernet0 interface for R2 to a value less than 1544.
Decrease the bandwidth on the ethernet0 interface for R2 to 1000. R2# configure terminal Enter configuration commands, one per line. End with CNTL/Z. R2(config)# interface ethernet 0 R2(config-if)# bandwidth 1000 R2(config-if)# end
R2#
Check the impact on the EIGRP topology table for R1.
R1# show ip eigrp topology 10.1.3.0 255.255.255.0
IP-EIGRP (AS 1): Topology entry for 10.1.3.0/24
State is Passive, Query origin flag is 1, 1 Successor(s), FD is 312320
Routing Descriptor Blocks:
10.1.1.2 (Serial0.201), from 10.1.1.2, Send flag is 0x0 Composite metric is (3123200/2611200), Route is Internal Vector metric: Minimum bandwidth is 1000 Kbit Total delay is 22000 microseconds Reliability is 255/255 Load is 1/255 Minimum MTU is 1500 Hop count is 2
Reference http://www.cisco.com/en/US/tech/tk365/technologies_tech_note09186a00800c2d96.shtml#change bandwidthR2
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