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NEW QUESTION: 1
What can you determine from a packet capture that you CANNOT learn from NetFlow data?
A. client to server communication ports
B. network traffic statistics
C. router Telnet password
D. device up/down status
Answer: C
NEW QUESTION: 2
A market researcher with Churn Brothers Brokerage is attempting to estimate the earnings per share (EPS) for a pharmaceutical index, and has gathered the following information:
Sales per share: $200
Next year's operating profit margin: 30%
Next year's depreciation per share: $18
Next year's interest expense: $13
Next year's corporate tax rate: 35%
Using this information, what is the EPS figure for this stock market series?
A. $17.75
B. $30.55
C. $36.85
D. The answer cannot be calculated from the information provided.
E. None of these answers is correct.
F. $18.85
Answer: F
Explanation:
Explanation/Reference:
Explanation:
The estimation of EPS for a stock market series involves five steps. Specifically, to determine an estimate of EPS for a stock market series, it is necessary to:
Estimate the sales per share
Estimate next year's operating profit (EBIDT), or operating profit margin Estimate next year's depreciation per share Estimate next year's interest expense per share
Estimate next year's corporate tax rate
Once estimates for these components have been determined, they are put into the following equation:
EPS for a stock market series = {[(Sales per share * operating profit margin) - depreciation per share - interest expense per share] * (1 - corporate tax rate).
Imputing the given information into this equation will yield the following:
EPS for a stock market series = {[($200 * 0.30) - $18 - $13] * (1 - 0.35)} = $18.85 If you chose $36.85, remember that the depreciation figure is not added back to the EPS calculation. What we are looking at is an operating earnings after tax figure, not a cash-based figure.
NEW QUESTION: 3
Scenario:
You work for SWITCH.com. They have just added a new switch (SwitchB) to the existing network as shown in the topology diagram.
RouterA is currently configured correctly and is providing the routing function for devices on SwitchA and SwitchB. SwitchA is currently configured correctly, but will need to be modified to support the addition of SwitchB. SwitchB has a minimal configuration. You have been tasked with competing the needed configuring of SwitchA and SwitchB. SwitchA and SwitchB use Cisco as the enable password.
Configuration Requirements for SwitchA
The VTP and STP configuration modes on SwitchA should not be modified.
* SwitchA needs to be the root switch for vlans 11, 12, 13, 21, 22 and 23. All other vlans should be left are their default values.
Configuration Requirements for SwitchB
* Vlan 21
* Name: Marketing
* will support two servers attached to fa0/9 and fa0/10
* Vlan 22
* Name: Sales
* will support two servers attached to fa0/13 and fa0/14
* Vlan 23
o Name: Engineering
o will support two servers attached to fa0/15 and fa0/16
* Access ports that connect to server should transition immediately to forwarding state upon detecting the connection of a device.
* SwitchB VTP mode needs to be the same as SwitchA.
* SwitchB must operate in the same spanning tree mode as SwitchA
* No routing is to be configured on SwitchB
* Only the SVI vlan 1 is to be configured and it is to use address 192.168.1.11/24 Inter-switch Connectivity Configuration Requirements
* For operational and security reasons trunking should be unconditional and Vlans 1, 21, 22 and 23 should tagged when traversing the trunk link.
* The two trunks between SwitchA and SwitchB need to be configured in a mode that allows for the maximum use of their bandwidth for all vlans. This mode should be done with a non-proprietary protocol, with SwitchA controlling activation.
* Propagation of unnecessary broadcasts should be limited using manual pruning on this trunk link.
Answer:
Explanation:
Here are steps:
hostname SWITCH_B
!
!
vlan 21
name Marketing
vlan 22
name Sales
vlan 23
name Engineering
!
!
interface FastEthernet0/3
switchport trunk allowed vlan 1,21-23
channel-protocol lacp
channel-group 1 mode passive
switchport mode trunk
!
interface FastEthernet0/4
switchport trunk allowed vlan 1,21-23
channel-protocol lacp
channel-group 1 mode passive
switchport mode trunk
!
interface FastEthernet0/9
switchport access vlan 21
switchport mode access
spanning-tree portfast
!
interface FastEthernet0/10
switchport access vlan 21
switchport mode access
spanning-tree portfast
!
interface FastEthernet0/13
switchport access vlan 22
switchport mode access
spanning-tree portfast
!
!
interface FastEthernet0/14
switchport access vlan 22
switchport mode access
spanning-tree portfast
!
interface FastEthernet0/15
switchport access vlan 23
switchport mode access
spanning-tree portfast
!
interface FastEthernet0/16
switchport access vlan 23
switchport mode access
spanning-tree portfast
!
!
interface GigabitEthernet1/1
!
interface GigabitEthernet1/2
!
interface Port-channel 1
switchport mode trunk
switchport trunk encapsulation dot1q
spanning-tree allowed vlans 1,21-23
!
interface Vlan1
ip address 192.168.1.11 255.255.255.0
!
end
SWITCH_B(config)#
hostname SWITCH_A
!
panning-tree vlan 11 root primary
spanning-tree vlan 12 root primary
spanning-tree vlan 13 root primary
spanning-tree vlan 21 root primary
spanning-tree vlan 22 root primary
spanning-tree vlan 23 root primary
!
interface FastEthernet0/3
switchport trunk allowed vlan 1,21-23
channel-protocol lacp
channel-group 1 mode active
switchport mode trunk
!
interface FastEthernet0/4
switchport trunk allowed vlan 1,21-23
channel-protocol lacp
channel-group 1 mode active
switchport mode trunk
!
interface FastEthernet0/21
switchport access vlan 21
switchport mode access
!
interface FastEthernet0/22
switchport access vlan 22
switchport mode access
!
interface FastEthernet0/23
switchport access vlan 23
switchport mode access
!
interface GigabitEthernet1/1
!
interface GigabitEthernet1/2
!
interface Port-channel 1
!
interface Vlan1
no ip address
shutdown
!
ip default-gateway 192.168.1.1
!
!
End