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NEW QUESTION: 1
Which java code snippet roles "MANAGER" and "EMPLOYEE" in a given application?
@DeclareRole("EMPLOYEE")
public class MyServlet extends HttpServlet {}
A. @DeclareRoles("MANAGER")@DeclareRoles("EMPLOYEE")public class MyServlet extends HttpServlet {}
B. @DeclareRole("MANAGER")
C. @SecurityRoles({ "MANAGER", "EMPLOYEE" })public class MyServlet extends
HttpServlet {}
D. @DeclareRoles({ "MANAGER", "EMPLOYEE" })public class MyServlet extends
HttpServlet {}
Answer: D
Explanation:
* The syntax for declaring more than one role is as shown in the following example:
@DeclareRoles({"Administrator", "Manager", "Employee"})
* @DeclareRoles
This annotation declares the security roles defined by the application.
* javax.annotation.security
Annotation Type DeclareRoles
@ Documented
@ Retention(value=RUNTIME)
@ Target(value=TYPE)
public @interface DeclareRoles
Used by application to declare roles. It can be specified on a class.

NEW QUESTION: 2
Identify three features of Oracle Workflow Builder in Oracle Workflow Architecture. (Choose three.)
A. Resides in Oracle Application Server
B. Has Navigator tree and Process diagram as its components
C. Saves workflow process definition in a flat-file format
D. Monitors workflows
E. Saves workflow process definition in a graphical file format
F. Defines and customizes workflow definitions
Answer: B,C,F

NEW QUESTION: 3

A. Option C
B. Option B
C. Option A
D. Option F
E. Option D
F. Option E
Answer: A,D
Explanation:
VLAN Trunking Protocol (VTP) http://archive.networknewz.com/2004/0317.html
VTP Modes Server Mode Once VTP is configured on a Cisco switch, the default mode used is Server Mode. In any given VTP management domain, at least one switch must be in Server Mode. When in Server Mode, a switch can be used to add, delete, and modify VLANs, and this information will be passed to all other switches in the VTP management domain. Client Mode When a switch is configured to use VTP Client Mode, it is simply the recipient of any VLANs added, deleted, or modified by a switch in Server Mode within the same management domain. A switch in VTP client mode cannot make any changes to VLAN information. Transparent Mode A switch in VTP Transparent Mode will pass VTP updates received by switches in Server Mode to other switches in the VTP management domain, but will not actually process the contents of these messages. When individual VLANs are added, deleted, or modified on a switch running in transparent mode, the changes are local to that particular switch only, and are not passed to other switches in the VTP management domain.

NEW QUESTION: 4
Which of the following are you least likely to implement in the building access layer of an enterprise campus network design? (Choose two.)
A. VLAN access
B. STP
C. access layer aggregation
D. redundancy
E. PoE
Answer: C,D
Explanation:
Explanation/Reference:
Section: Enterprise Network Design Explanation
Explanation:
Of the available choices, you are least likely to implement redundancy and access layer aggregation in the building access layer of an enterprise campus network design. Redundancy is more likely to be implemented between the core and distribution layers. Access layer aggregation is more likely to be implemented in the distribution layer.
The enterprise campus module consists of the following submodules: building access layer, building distribution layer, campus core layer, edge distribution, and data center. The campus core layer of the enterprise campus module provides fast transport services between buildings and the data center.
Because the campus core layer acts as the network's backbone, it is essential that every building distribution layer device have multiple paths to the campus core layer. Multiple paths between the campus core and building distribution layer devices ensure that network connectivity is maintained if a link or device fails in either layer. Layer 3 switching typically takes place in the campus core layer.
The building distribution layer of the enterprise campus module provides link aggregation between layers.
Because the building distribution layer is the intermediary between the building access layer and the campus core layer, the building distribution layer is the ideal place to enforce security policies, provide load balancing, provide Quality of Service (QoS), and perform tasks that involve packet manipulation, such as routing. Because the building distribution layer connects to both the building access layer and the campus core layer, it often comprises multilayer switches that can perform both Layer 3 routing functions and Layer
2 switching functions.
The access layer, which typically comprises Layer 2 switches, serves as a media termination point for devices, such as servers and workstations. Because building access layer devices provide access to the network, the building access layer is the ideal place to perform user authentication and to institute port security. Because the access layer connects directly to end devices, features such as Spanning Tree Protocol (STP), Power over Ethernet (PoE), and virtual LAN (VLAN) access are most likely to be implemented in this layer. High availability, broadcast suppression, and rate limiting are also characteristics of access layer devices.
Reference:
CCDA 200-310 Official Cert Guide, Chapter 2, Enterprise Campus Module, pp. 50-51Category: Enterprise Network Design