Software Engineering MCQ

Software Engineering MCQ
141. IN Broadcast models
  • The-level components of a system are integrated and tested before the hiher-level components have been developed.
  • The testing process starts with modules at lower levels in he hierachy and works up the hierachy of modules until the final module is tested
  • An event driven control system, where an event is broadcasted to each sub-system and any sub-system that can handle that event responds to it.
  • Controls starts of the top of a sub routine hierachy and through sub routine calls passes to lower levels.
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142. Bottom-up testing
  • The low-level components of a system are integrated and tested before the higher-level components have been developed
  • The testing process starts withmodules at lower levels in the hierrachy and works up the hierachy of modules until the final module is tested
  • An event driven control system, where an event is broadcasted to each sub-system and any sub-system that can handle that event responds to it.
  • Control starts of the top of a sub routine hierachy and through sub routine calls passes to lower levels.
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143. In Call-return control model
  • The low-level components of a system are integrated and tested before the higher-level components have been developed.
  • The testing process starts with modules at lower levels in the hierachy and works up the hierachy of modules until the final modue is tested.
  • An event driven control system, where an event is broadcasted to each sub-system an any sub-system that can handle that event responds to it.
  • Control starts of the top of a sub routine hierachy and through sub routine calls passes to lower levels
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144. Capacity is
  • A measure of the amount of work a system an perform
  • It provides automated support for software process
  • Support individual process tasks
  • Set of tools to support a particular phase of software process such as design, implementation or testing.
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145. CASE (Computer Aided Software Engineering) is
  • A measure of the amount of work a system can perform
  • It provides automated support for software process.
  • Support individual process tasks
  • Set of tools to support a particular phase of software process such as desig, implementation or testing:
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146. CASE Tools
  • A measure of the amount of work a system can peform
  • It provides automated support for software process.
  • Support individual process tasks
  • Set of tools to support a particular phase of software process such as design, implementation or testing.
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147. CASE Workbench
  • A measure of the amount of work a system can perform
  • It provides automated support for software process.
  • Support individual process tasks
  • Set of tools to support a particular phase Set of tools to support a particular phase of software process such as design, implementation or testing.
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148. Centralized control models
  • Here one systeem is designed as the system controller and has responsibility for managing the execution of other subsystems.
  • Each system is named as in attribute based identification and associated with one or more change requests.
  • An object class inheritance diagram, how entities have common characterstics.
  • The objective of this software development is zero-defect software
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149. change-oriented identification
  • One system is designed as the system controller and has responsibility for managing the execution of other sybsystems.
  • Each system is named as in attribute based identification and associated with one or more change requests.
  • An object class inheritance diagram, how entities have common characterstis.
  • The objective of this software development is zero-defect software.
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150. Hard real time systems are
  • These system runs on a single processor or an integrated group of processors
  • A system where each sub-system can respond to generated events where the events might be generated from other sub-systems or from the environment of the system
  • A system continues in operation after some system faults have manifested themselves.
  • A system whose operatin is incorrected, if results are not produced according to the timing specifications
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