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NEW QUESTION: 1
Mark Davidson and James Case are bond traders at a large fixed-income investment firm. Both Davidson and Case have developed bond valuation models for bonds with embedded options. Using their respective valuation models, the traders have calculated the price of BMC Corp.'s callable and putable bonds.
Davidson uses a yield volatility assumption of 23%, while Case uses an assumption of 31%. Other than the volatility assumption, the traders use identical inputs for the valuation models. Which of the following best summarizes the output of the two valuation models?
A. Case's model will calculate a higher value for the call option and a lower value for the putable bond.
B. Davidson's model will calculate a lower value for the put option and a lower value for the callable bond.
C. Davidson's model will calculate a lower value for the call option and a lower value for the putable bond.
Answer: C

NEW QUESTION: 2
You have a laptop named Computer1 that runs Windows 10. Computer1 connects to a wireless network
named WiFi1 and a wireless network named WiFi2.
Wifi1 has poor signal and the connection drops frequently. Wifi2 is available only during certain times of
the day. Wifi2 has a stronger signal that is more reliable than Wifi1.
You need to configure Computer1 to use WiFi2 whenever possible. Wifi1 should be used when WiFi2 is
unavailable.
Which three settings should you configure? Each correct answer presents part of the solution.
A. From the properties of WiFi2, select Look for other wireless networks while connected to this network.
B. From the properties of WiFi1, select Look for other wireless networks while connected to this network.
C. From the properties of WiFi1, select Enable WLAN connection settings.
D. From the properties of WiFi2, select Connect even if the network is not broadcasting its name (SSID)
E. From the properties of WiFi1, select Connect automatically when this network is in range.
F. From the properties of WiFi2, select Connect automatically when this network is in range.
Answer: A,C,F

NEW QUESTION: 3
Which of these is a valid differentiated services PHB?
A. Guaranteed PHB
B. Class-Selector PHB
C. Priority PHB
D. Reserved Forwarding PHB
E. Discard Eligible PHB
Answer: B
Explanation:
Differentiated Services Definition
Differentiated Services is a multiple service model that can satisfy differing QoS requirements.
With Differentiated Services, the network tries to deliver a particular kind of service based on the
QoS specified by each packet. This specification can occur in different ways, for example, using
the 6-bit differentiated services code point (DSCP) setting in IP packets or source and destination
addresses. The network uses the QoS specification to classify, mark, shape, and police traffic and
to perform intelligent queuing.
Differentiated Services is used for several mission-critical applications and for providing end-to-
end QoS.
Typically, Differentiated Services is appropriate for aggregate flows because it performs a
relatively coarse level of traffic classification.
DS Field Definition
A replacement header field, called the DS field, is defined by Differentiated Services. The DS field
supersedes the existing definitions of the IP version 4 (IPv4) type of service (ToS) octet (RFC 791)
and the IPv6 traffic class octet. Six bits of the DS field are used as the DSCP to select the Per-Hop
Behavior (PHB) at each interface. A currently unused 2-bit (CU) field is reserved for explicit
congestion notification (ECN). The value of the CU bits is ignored by DS-compliant interfaces
when determining the PHB to apply to a received packet.
Per-Hop Behaviors
RFC 2475 defines PHB as the externally observable forwarding behavior applied at a DiffServ-
compliant node to a DiffServ Behavior Aggregate (BA).
With the ability of the system to mark packets according to DSCP setting, collections of packets
with the same DSCP setting that are sent in a particular direction can be grouped into a BA.
Packets from multiple sources or applications can belong to the same BA.
In other words, a PHB refers to the packet scheduling, queueing, policing, or shaping behavior of a
node on any given packet belonging to a BA, as configured by a service level agreement (SLA) or
a policy map.
The following sections describe the four available standard PHBs:
Default PHB
Class-Selector PHB (as defined in RFC 2474)
Assured Forwarding PHB (as defined in RFC 2597)
Expedited Forwarding PHB (as defined in RFC 2598)
For more information about default PHB, see RFC 2474, Definition of the Differentiated Services
Field (DS
Field) in the IPv4 and IPv6 Headers. Class-Selector PHB To preserve backward-compatibility with any IP precedence scheme currently in use on the network, DiffServ has defined a DSCP value in the form xxx000, where x is either 0 or 1. These DSCP values are called Class-Selector Code Points. (The DSCP value for a packet with default PHB 000000 is also called the Class-Selector Code Point.) The PHB associated with a Class-Selector Code Point is a Class-Selector PHB. These Class-Selector PHBs retain most of the forwarding behavior as nodes that implement IP Precedence-based classification and forwarding. For example, packets with a DSCP value of 11000 (the equivalent of the IP Precedence-based value of 110) have preferential forwarding treatment (for scheduling, queueing, and so on), as compared to packets with a DSCP value of 100000 (the equivalent of the IP Precedence-based value of 100). These Class-Selector PHBs ensure that DS-compliant nodes can coexist with IP Precedence-based nodes.
For more information about Class-Selector PHB, see RFC 2474, Definition of the Differentiated Services Field (DS Field) in the IPv4 and IPv6 Headers.
Reference http://www.cisco.com/en/US/docs/ios/12_2/qos/configuration/guide/qcfdfsrv_ps1835_TSD_Produc ts_Configuration_Guide_Chapter.html#wp998695