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Fundamental Characteristics of a Novel Self – Starting Type Permanent Magnet Synchronous Motor-MAH_021016_60320_6_197659

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$begin ‘GeomTopolBasedOperationIdentityHelper’
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Soln(N=’LastAdaptive’, V=0)
$end ‘Setup’
$end ‘Version ID Map’
$begin ‘ID Map’
$begin ‘Setup’
N=’Setup1′
I=10
Soln(N=’AdaptivePass’, I=11)
Soln(N=’LastAdaptive’, I=12)
$end ‘Setup’
$end ‘ID Map’
$end ‘SolutionManager’
$begin ‘UserDefinedSolutionMgr’
NextUniqueID=1000000
MoveBackwards=false
$end ‘UserDefinedSolutionMgr’
$begin ‘DatasetSolutionMgr’
NextUniqueID=2000000
MoveBackwards=false
$end ‘DatasetSolutionMgr’
Notes=$begin_cdata$        $end_cdata$
$begin ‘AnimationSetups’
$end ‘AnimationSetups’
CacheHeaderFile=’HDR23752237613575414003.tmp’
$end ‘Maxwell2DModel’
$begin ‘Maxwell2DModel’
RepRewriteV2=true
Name=’Maxwell2DDesign2′
DesignID=2
$begin ‘TemperatureSettings’
IncludeTemperatureDependence=false
Temperatures(18, ’22cel’)
$end ‘TemperatureSettings’
ObjsEnabledForDeformation()
PerfectConductorThreshold=100000000000
InsulatorThreshold=1
BackgroundMaterialName=’vacuum’
SolutionType=’Electrostatic’
GeometryMode=’XY’
$begin ‘OutputVariable’
NextUniqueID=0
MoveBackwards=false
$end ‘OutputVariable’
$begin ‘ModelSetup’
$begin ‘Editor3D Doc Preferences’
‘Plane Background’=true
BackgroundColor1=16777215
BackgroundColor2=0
‘Need Lights’=true
‘Ambient Light’=8355711
‘Num Lights’=2
Light0[4: 8355711, 0.200000002980232, 0.400000005960464, 1]
Light1[4: 8355711, -0.200000002980232, -0.400000005960464, -1]
$end ‘Editor3D Doc Preferences’
$begin ‘DesignDatasets’
NextUniqueID=0
MoveBackwards=false
DatasetType=’DesignDatasetType’
$begin ‘DatasetDefinitions’
$end ‘DatasetDefinitions’
$end ‘DesignDatasets’
SnapMode=31
WorkingCS=1
$begin ‘GeometryCore’
BlockVersionID=3
DataVersion=3
NativeKernel=’ACIS’
NativeKernelVersionID=5
Units=’mm’
InstanceID=-1
$begin ‘ValidationOptions’
EntityCheckLevel=’Strict’
IgnoreUnclassifiedObjects=false
SkipIntersectionChecks=false
$end ‘ValidationOptions’
$begin ‘GeometryOperations’
BlockVersionID=2
$begin ‘AnsoftRangedIDServerManager’
$begin ‘AnsoftRangedIDServer’
IDServerObjectTypeID=0
IDServerRangeMin=0
IDServerRangeMax=2146483647
NextUniqueID=23
MoveBackwards=false
$end ‘AnsoftRangedIDServer’
$begin ‘AnsoftRangedIDServer’
IDServerObjectTypeID=1
IDServerRangeMin=2146483648
IDServerRangeMax=2146485547
NextUniqueID=2146483654
MoveBackwards=false
$end ‘AnsoftRangedIDServer’
$end ‘AnsoftRangedIDServerManager’
StartBackGroundFaceID=2146483648
$begin ‘CoordinateSystems’
$end ‘CoordinateSystems’
$begin ‘UserDefinedModels’
$end ‘UserDefinedModels’
$begin ‘ToplevelParts’
$begin ‘GeometryPart’
$begin ‘Attributes’
Name=’Inner’
Flags=”
Color='(255 128 128)’
Transparency=0
PartCoordinateSystem=1
UDMId=-1
MaterialValue='”copper”‘
SolveInside=true
$end ‘Attributes’
$begin ‘Operations’
$begin ‘Operation’
OperationType=’Circle’
ID=5
ReferenceCoordSystemID=1
$begin ‘CircleParameters’
KernelVersion=5
XCenter=’0mm’
YCenter=’0mm’
ZCenter=’0mm’
Radius=’0.6mm’
WhichAxis=’Z’
NumSegments=’0′
$end ‘CircleParameters’
ParentPartID=6
IsSuppressed=false
$begin ‘OperationIdentity’
$begin ‘Topology’
NumLumps=1
NumShells=1
NumFaces=0
NumWires=1
NumLoops=0
NumCoedges=1
NumEdges=1
NumVertices=1
$end ‘Topology’
BodyID=6
StartFaceID=-1
StartEdgeID=7
StartVertexID=8
NumNewFaces=0
NumNewEdges=1
NumNewVertices=1
FaceNameAndIDMap()
EdgeNameAndIDMap()
VertexNameAndIDMap()
$end ‘OperationIdentity’
$end ‘Operation’
$begin ‘Operation’
OperationType=’CoverLines’
ID=9
$begin ‘LocalOperationParameters’
KernelVersion=5
LocalOpPart=6
$end ‘LocalOperationParameters’
ParentPartID=6
IsSuppressed=false
$begin ‘OperationIdentity’
$begin ‘Topology’
NumLumps=1
NumShells=1
NumFaces=1
NumWires=0
NumLoops=1
NumCoedges=1
NumEdges=1
NumVertices=1
$end ‘Topology’
BodyID=-1
StartFaceID=10
StartEdgeID=-1
StartVertexID=-1
NumNewFaces=1
NumNewEdges=0
NumNewVertices=0
FaceNameAndIDMap()
EdgeNameAndIDMap()
VertexNameAndIDMap()
$begin ‘GeomTopolBasedOperationIdentityHelper’
$begin ‘NewFaces’
$begin ‘Face’
NormalizedSerialNum=0
ID=10
$begin ‘FaceGeomTopol’
FaceTopol(1, 1, 1, 1)
$begin ‘FaceGeometry’
Area=1.13097335529233
FcUVMid(-5.55111512312578e-017, -5.55111512312578e-017, 0)
$begin ‘FcTolVts’
TolVt(0.6, 0, 0, 0)
$end ‘FcTolVts’
$end ‘FaceGeometry’
$end ‘FaceGeomTopol’
$end ‘Face’
$end ‘NewFaces’
$begin ‘NewEdges’
$end ‘NewEdges’
$begin ‘NewVertices’
$end ‘NewVertices’
$end ‘GeomTopolBasedOperationIdentityHelper’
$end ‘OperationIdentity’
ParentOperationID=5
$end ‘Operation’
$end ‘Operations’
$end ‘GeometryPart’
$begin ‘GeometryPart’
$begin ‘Attributes’
Name=’Air’
Flags=”
Color='(128 128 255)’
Transparency=0
PartCoordinateSystem=1
UDMId=-1
MaterialValue='”air”‘
SolveInside=true
$end ‘Attributes’
$begin ‘Operations’
$begin ‘Operation’
OperationType=’Circle’
ID=11
ReferenceCoordSystemID=1
$begin ‘CircleParameters’
KernelVersion=5
XCenter=’0mm’
YCenter=’0mm’
ZCenter=’0mm’
Radius=’1mm’
WhichAxis=’Z’
NumSegments=’0′
$end ‘CircleParameters’
ParentPartID=12
IsSuppressed=false
$begin ‘OperationIdentity’
$begin ‘Topology’
NumLumps=1
NumShells=1
NumFaces=0
NumWires=1
NumLoops=0
NumCoedges=1
NumEdges=1
NumVertices=1
$end ‘Topology’
BodyID=12
StartFaceID=-1
StartEdgeID=13
StartVertexID=14
NumNewFaces=0
NumNewEdges=1
NumNewVertices=1
FaceNameAndIDMap()
EdgeNameAndIDMap()
VertexNameAndIDMap()
$end ‘OperationIdentity’
$end ‘Operation’
$begin ‘Operation’
OperationType=’CoverLines’
ID=15
$begin ‘LocalOperationParameters’
KernelVersion=5
LocalOpPart=12
$end ‘LocalOperationParameters’
ParentPartID=12
IsSuppressed=false
$begin ‘OperationIdentity’
$begin ‘Topology’
NumLumps=1
NumShells=1
NumFaces=1
NumWires=0
NumLoops=1
NumCoedges=1
NumEdges=1
NumVertices=1
$end ‘Topology’
BodyID=-1
StartFaceID=16
StartEdgeID=-1
StartVertexID=-1
NumNewFaces=1
NumNewEdges=0
NumNewVertices=0
FaceNameAndIDMap()
EdgeNameAndIDMap()
VertexNameAndIDMap()
$begin ‘GeomTopolBasedOperationIdentityHelper’
$begin ‘NewFaces’
$begin ‘Face’
NormalizedSerialNum=0
ID=16
$begin ‘FaceGeomTopol’
FaceTopol(1, 1, 1, 1)
$begin ‘FaceGeometry’
Area=3.14159265358979
FcUVMid(0, -1.11022302462516e-016, 0)
$begin ‘FcTolVts’
TolVt(1, 0, 0, 0)
$end ‘FcTolVts’
$end ‘FaceGeometry’
$end ‘FaceGeomTopol’
$end ‘Face’
$end ‘NewFaces’
$begin ‘NewEdges’
$end ‘NewEdges’
$begin ‘NewVertices’
$end ‘NewVertices’
$end ‘GeomTopolBasedOperationIdentityHelper’
$end ‘OperationIdentity’
ParentOperationID=11
$end ‘Operation’
$end ‘Operations’
$end ‘GeometryPart’
$begin ‘GeometryPart’
$begin ‘Attributes’
Name=’Outer’
Flags=”
Color='(128 255 128)’
Transparency=0
PartCoordinateSystem=1
UDMId=-1
MaterialValue='”copper”‘
SolveInside=true
$end ‘Attributes’
$begin ‘Operations’
$begin ‘Operation’
OperationType=’Circle’
ID=17
ReferenceCoordSystemID=1
$begin ‘CircleParameters’
KernelVersion=5
XCenter=’0mm’
YCenter=’0mm’
ZCenter=’0mm’
Radius=’1.2mm’
WhichAxis=’Z’
NumSegments=’0′
$end ‘CircleParameters’
ParentPartID=18
IsSuppressed=false
$begin ‘OperationIdentity’
$begin ‘Topology’
NumLumps=1
NumShells=1
NumFaces=0
NumWires=1
NumLoops=0
NumCoedges=1
NumEdges=1
NumVertices=1
$end ‘Topology’
BodyID=18
StartFaceID=-1
StartEdgeID=19
StartVertexID=20
NumNewFaces=0
NumNewEdges=1
NumNewVertices=1
FaceNameAndIDMap()
EdgeNameAndIDMap()
VertexNameAndIDMap()
$end ‘OperationIdentity’
$end ‘Operation’
$begin ‘Operation’
OperationType=’CoverLines’
ID=21
$begin ‘LocalOperationParameters’
KernelVersion=5
LocalOpPart=18
$end ‘LocalOperationParameters’
ParentPartID=18
IsSuppressed=false
$begin ‘OperationIdentity’
$begin ‘Topology’
NumLumps=1
NumShells=1
NumFaces=1
NumWires=0
NumLoops=1
NumCoedges=1
NumEdges=1
NumVertices=1
$end ‘Topology’
BodyID=-1
StartFaceID=22
StartEdgeID=-1
StartVertexID=-1
NumNewFaces=1
NumNewEdges=0
NumNewVertices=0
FaceNameAndIDMap()
EdgeNameAndIDMap()
VertexNameAndIDMap()
$begin ‘GeomTopolBasedOperationIdentityHelper’
$begin ‘NewFaces’
$begin ‘Face’
NormalizedSerialNum=0
ID=22
$begin ‘FaceGeomTopol’
FaceTopol(1, 1, 1, 1)
$begin ‘FaceGeometry’
Area=4.5238934211693
FcUVMid(-1.11022302462516e-016, -1.11022302462516e-016, 0)
$begin ‘FcTolVts’
TolVt(1.2, 0, 0, 0)
$end ‘FcTolVts’
$end ‘FaceGeometry’
$end ‘FaceGeomTopol’
$end ‘Face’
$end ‘NewFaces’
$begin ‘NewEdges’
$end ‘NewEdges’
$begin ‘NewVertices’
$end ‘NewVertices’
$end ‘GeomTopolBasedOperationIdentityHelper’
$end ‘OperationIdentity’
ParentOperationID=17
$end ‘Operation’
$end ‘Operations’
$end ‘GeometryPart’
$end ‘ToplevelParts’
$begin ‘OperandParts’
$end ‘OperandParts’
$begin ‘Planes’
$end ‘Planes’
$begin ‘Points’
$end ‘Points’
$begin ‘GeometryEntityLists’
$end ‘GeometryEntityLists’
$begin ‘CachedNames’
$begin ‘air’
air(-1)
$end ‘air’
$begin ‘allobjects’
allobjects(-1)
$end ‘allobjects’
$begin ‘global’
global(-1)
$end ‘global’
$begin ‘inner’
inner(-1)
$end ‘inner’
$begin ‘outer’
outer(-1)
$end ‘outer’
$end ‘CachedNames’
$end ‘GeometryOperations’
$begin ‘GeometryDependencies’
$begin ‘DependencyInformation’
NumParents=1
DependencyObject(‘GeometryBodyOperation’, 5)
DependencyObject(‘CoordinateSystem’, 1)
$end ‘DependencyInformation’
$begin ‘DependencyInformation’
NumParents=1
DependencyObject(‘GeometryBodyOperation’, 9)
DependencyObject(‘GeometryBodyOperation’, 5)
$end ‘DependencyInformation’
$begin ‘DependencyInformation’
NumParents=1
DependencyObject(‘GeometryBodyOperation’, 11)
DependencyObject(‘CoordinateSystem’, 1)
$end ‘DependencyInformation’
$begin ‘DependencyInformation’
NumParents=1
DependencyObject(‘GeometryBodyOperation’, 15)
DependencyObject(‘GeometryBodyOperation’, 11)
$end ‘DependencyInformation’
$begin ‘DependencyInformation’
NumParents=1
DependencyObject(‘GeometryBodyOperation’, 17)
DependencyObject(‘CoordinateSystem’, 1)
$end ‘DependencyInformation’
$begin ‘DependencyInformation’
NumParents=1
DependencyObject(‘GeometryBodyOperation’, 21)
DependencyObject(‘GeometryBodyOperation’, 17)
$end ‘DependencyInformation’
$end ‘GeometryDependencies’
$end ‘GeometryCore’
GroupByMaterial()
GroupSheetByMaterial(‘-1’=true)
$begin ‘LastUserInputs’
$end ‘LastUserInputs’
$end ‘ModelSetup’
$begin ‘BoundarySetup’
$begin ‘GlobalBoundData’
$end ‘GlobalBoundData’
$begin ‘Boundaries’
NextUniqueID=2
MoveBackwards=false
$begin ‘Voltage_Inner’
ID=0
BoundType=’Voltage’
Objects(6)
ParentBndID=-1
Value=’-1kV’
CoordinateSystem=-1
$end ‘Voltage_Inner’
$begin ‘Voltage_Outer’
ID=1
BoundType=’Voltage’
Objects(18)
ParentBndID=-1
Value=’1kV’
CoordinateSystem=-1
$end ‘Voltage_Outer’
$end ‘Boundaries’
$begin ‘ProductSpecificData’
$end ‘ProductSpecificData’
$end ‘BoundarySetup’
$begin ‘MaxwellParameterSetup’
$begin ‘MaxwellParameters’
NextUniqueID=1
MoveBackwards=false
$begin ‘Matrix1′
ID=0
MaxwellParameterType=’Matrix’
$begin ‘MatrixEntry’
$begin ‘MatrixEntry’
Source=0
NumberOfTurns=’1′
$end ‘MatrixEntry’
$end ‘MatrixEntry’
$begin ‘MatrixGroup’
$end ‘MatrixGroup’
GroundSources[1: 1]
$end ‘Matrix1’
$end ‘MaxwellParameters’
MotionParams()
$end ‘MaxwellParameterSetup’
$begin ‘MeshSetup’
$begin ‘MeshSettings’
$begin ‘GlobalSurfApproximation’
SurfDevChoice=0
NormalDevChoice=1
AspectRatioChoice=1
PullToTrueSurf=false
SetFacePreservationLevel=0
$end ‘GlobalSurfApproximation’
MeshMethod=’Auto’
$end ‘MeshSettings’
$begin ‘MeshOperations’
NextUniqueID=0
MoveBackwards=false
$end ‘MeshOperations’
$end ‘MeshSetup’
$begin ‘AnalysisSetup’
$begin ‘SolveSetups’
NextUniqueID=1
MoveBackwards=false
$begin ‘Setup1′
ID=0
SetupType=’Electrostatic’
Enabled=true
MaximumPasses=10
MinimumPasses=2
MinimumConvergedPasses=1
PercentRefinement=50
SolveFieldOnly=false
PercentError=0.5
SolveMatrixAtLast=true
PercentError=0.5
$end ‘Setup1’
$end ‘SolveSetups’
$end ‘AnalysisSetup’
$begin ‘Optimetrics’
$begin ‘OptimetricsSetups’
NextUniqueID=0
MoveBackwards=false
$end ‘OptimetricsSetups’
$end ‘Optimetrics’
$begin ‘Solutions’
$end ‘Solutions’
$begin ‘FieldsReporter’
$begin ‘FieldsCalculator’
Line_Discretization=1000
$end ‘FieldsCalculator’
$begin ‘PlotDefaults’
Default_SolutionId=11
Default_PlotFolder=’Automatic’
$end ‘PlotDefaults’
$begin ‘FieldsPlotManagerID’
NextUniqueID=0
MoveBackwards=false
NumQuantityType=0
NumPlots=0
$end ‘FieldsPlotManagerID’
$begin ‘Report3dInGeomWnd’
Report3dNum=0
$end ‘Report3dInGeomWnd’
$end ‘FieldsReporter’
$begin ‘SolutionManager’
$begin ‘SimSetup’
TypeName=’BaseSetup’
ID=9
Name=’Setup1′
$begin ‘Solution’
ID=10
Name=’AdaptivePass’
$begin ‘SimDataExtractor’
$begin ‘QuantityIDs’
NextUniqueID=0
MoveBackwards=false
IDMap()
$end ‘QuantityIDs’
$end ‘SimDataExtractor’
$end ‘Solution’
$begin ‘Solution’
ID=11
Name=’LastAdaptive’
$begin ‘SimDataExtractor’
$begin ‘QuantityIDs’
NextUniqueID=0
MoveBackwards=false
IDMap()
$end ‘QuantityIDs’
$begin ‘Sweeps’
$begin ‘PostprocessSweep’
Variable=’NormalizedDistance’
RegularSweep=1
Units=”
Minimum=0
Maximum=1
Increment=0.01
CreateIndexedSubsweepFlag=false
$end ‘PostprocessSweep’
$begin ‘PostprocessSweep’
Variable=’Phi’
RegularSweep=1
Units=’deg’
Minimum=0
Maximum=6.28318530717959
Increment=0.0872664625997165
CreateIndexedSubsweepFlag=false
$end ‘PostprocessSweep’
$begin ‘PostprocessSweep’
Variable=’Theta’
RegularSweep=1
Units=’deg’
Minimum=0
Maximum=6.28318530717959
Increment=0.0872664625997165
CreateIndexedSubsweepFlag=false
$end ‘PostprocessSweep’
$begin ‘PostprocessSweep’
Variable=’Phase’
RegularSweep=1
Units=’deg’
Minimum=0
Maximum=6.28318530717959
Increment=0.0872664625997165
CreateIndexedSubsweepFlag=false
$end ‘PostprocessSweep’
$begin ‘Sweep’
Variable=’X’
Column=’0′
Units=”
$end ‘Sweep’
$end ‘Sweeps’
$end ‘SimDataExtractor’
$end ‘Solution’
$end ‘SimSetup’
$begin ‘Version ID Map’
V=5
$begin ‘Setup’
N=’Setup1′
V=0
Soln(N=’AdaptivePass’, V=0)
Soln(N=’LastAdaptive’, V=0)
$end ‘Setup’
$end ‘Version ID Map’
$begin ‘ID Map’
$begin ‘Setup’
N=’Setup1′
I=9
Soln(N=’AdaptivePass’, I=10)
Soln(N=’LastAdaptive’, I=11)
$end ‘Setup’
$end ‘ID Map’
$end ‘SolutionManager’
$begin ‘UserDefinedSolutionMgr’
NextUniqueID=1000000
MoveBackwards=false
$end ‘UserDefinedSolutionMgr’
$begin ‘DatasetSolutionMgr’
NextUniqueID=2000000
MoveBackwards=false
$end ‘DatasetSolutionMgr’
Notes=$begin_cdata$        $end_cdata$
$begin ‘AnimationSetups’
$end ‘AnimationSetups’
CacheHeaderFile=’HDR3D6122376135754343210.tmp’
$end ‘Maxwell2DModel’
$begin ‘Maxwell2DModel’
RepRewriteV2=true
Name=’Maxwell2DDesign3′
DesignID=4
$begin ‘TemperatureSettings’
IncludeTemperatureDependence=false
Temperatures(18, ’22cel’)
$end ‘TemperatureSettings’
ObjsEnabledForDeformation()
PerfectConductorThreshold=100000000000
InsulatorThreshold=1
BackgroundMaterialName=’vacuum’
SolutionType=’Electrostatic’
GeometryMode=’XY’
$begin ‘OutputVariable’
NextUniqueID=0
MoveBackwards=false
$end ‘OutputVariable’
$begin ‘ModelSetup’
$begin ‘Editor3D Doc Preferences’
‘Plane Background’=true
BackgroundColor1=16777215
BackgroundColor2=0
‘Need Lights’=true
‘Ambient Light’=8355711
‘Num Lights’=2
Light0[4: 8355711, 0.200000002980232, 0.400000005960464, 1]
Light1[4: 8355711, -0.200000002980232, -0.400000005960464, -1]
$end ‘Editor3D Doc Preferences’
$begin ‘DesignDatasets’
NextUniqueID=0
MoveBackwards=false
DatasetType=’DesignDatasetType’
$begin ‘DatasetDefinitions’
$end ‘DatasetDefinitions’
$end ‘DesignDatasets’
SnapMode=31
WorkingCS=1
$begin ‘GeometryCore’
BlockVersionID=3
DataVersion=2
NativeKernel=’ACIS’
NativeKernelVersionID=5
Units=’mm’
InstanceID=-1
$begin ‘ValidationOptions’
EntityCheckLevel=’Strict’
IgnoreUnclassifiedObjects=false
SkipIntersectionChecks=false
$end ‘ValidationOptions’
$begin ‘GeometryOperations’
BlockVersionID=2
$begin ‘AnsoftRangedIDServerManager’
$begin ‘AnsoftRangedIDServer’
IDServerObjectTypeID=0
IDServerRangeMin=0
IDServerRangeMax=2146483647
NextUniqueID=29
MoveBackwards=false
$end ‘AnsoftRangedIDServer’
$begin ‘AnsoftRangedIDServer’
IDServerObjectTypeID=1
IDServerRangeMin=2146483648
IDServerRangeMax=2146485547
NextUniqueID=2146483654
MoveBackwards=false
$end ‘AnsoftRangedIDServer’
$end ‘AnsoftRangedIDServerManager’
StartBackGroundFaceID=2146483648
$begin ‘CoordinateSystems’
$end ‘CoordinateSystems’
$begin ‘UserDefinedModels’
$end ‘UserDefinedModels’
$begin ‘ToplevelParts’
$begin ‘GeometryPart’
$begin ‘Attributes’
Name=’DownPlate’
Flags=”
Color='(255 255 0)’
Transparency=0
PartCoordinateSystem=1
UDMId=-1
MaterialValue='”copper”‘
SolveInside=true
$end ‘Attributes’
$begin ‘Operations’
$begin ‘Operation’
OperationType=’Rectangle’
ID=5
ReferenceCoordSystemID=1
$begin ‘RectangleParameters’
KernelVersion=5
XStart=’0mm’
YStart=’0mm’
ZStart=’0mm’
Width=’25mm’
Height=’2mm’
WhichAxis=’Z’
$end ‘RectangleParameters’
ParentPartID=6
IsSuppressed=false
$begin ‘OperationIdentity’
$begin ‘Topology’
NumLumps=1
NumShells=1
NumFaces=0
NumWires=1
NumLoops=0
NumCoedges=4
NumEdges=4
NumVertices=4
$end ‘Topology’
BodyID=6
StartFaceID=-1
StartEdgeID=7
StartVertexID=11
NumNewFaces=0
NumNewEdges=4
NumNewVertices=4
FaceNameAndIDMap()
EdgeNameAndIDMap()
VertexNameAndIDMap()
$end ‘OperationIdentity’
$end ‘Operation’
$begin ‘Operation’
OperationType=’CoverLines’
ID=15
$begin ‘LocalOperationParameters’
KernelVersion=5
LocalOpPart=6
$end ‘LocalOperationParameters’
ParentPartID=6
IsSuppressed=false
$begin ‘OperationIdentity’
$begin ‘Topology’
NumLumps=1
NumShells=1
NumFaces=1
NumWires=0
NumLoops=1
NumCoedges=4
NumEdges=4
NumVertices=4
$end ‘Topology’
BodyID=-1
StartFaceID=16
StartEdgeID=-1
StartVertexID=-1
NumNewFaces=1
NumNewEdges=0
NumNewVertices=0
FaceNameAndIDMap()
EdgeNameAndIDMap()
VertexNameAndIDMap()
$begin ‘GeomTopolBasedOperationIdentityHelper’
$begin ‘NewFaces’
$begin ‘Face’
NormalizedSerialNum=0
ID=16
$begin ‘FaceGeomTopol’
FaceTopol(1, 4, 4, 4)
$begin ‘FaceGeometry’
Area=50
FcUVMid(12.5, 1, 0)
$begin ‘FcTolVts’
TolVt(0, 0, 0, 0)
TolVt(25, 0, 0, 0)
TolVt(25, 2, 0, 0)
TolVt(0, 2, 0, 0)
$end ‘FcTolVts’
$end ‘FaceGeometry’
$end ‘FaceGeomTopol’
$end ‘Face’
$end ‘NewFaces’
$begin ‘NewEdges’
$end ‘NewEdges’
$begin ‘NewVertices’
$end ‘NewVertices’
$end ‘GeomTopolBasedOperationIdentityHelper’
$end ‘OperationIdentity’
ParentOperationID=5
$end ‘Operation’
$end ‘Operations’
$end ‘GeometryPart’
$begin ‘GeometryPart’
$begin ‘Attributes’
Name=’Region’
Flags=”
Color='(0 128 0)’
Transparency=0
PartCoordinateSystem=1
UDMId=-1
MaterialValue='”air”‘
SolveInside=true
$end ‘Attributes’
$begin ‘Operations’
$begin ‘Operation’
OperationType=’Rectangle’
ID=17
ReferenceCoordSystemID=1
$begin ‘RectangleParameters’
KernelVersion=5
XStart=’0mm’
YStart=’0mm’
ZStart=’0mm’
Width=’25mm’
Height=’3mm’
WhichAxis=’Z’
$end ‘RectangleParameters’
ParentPartID=18
IsSuppressed=false
$begin ‘OperationIdentity’
$begin ‘Topology’
NumLumps=1
NumShells=1
NumFaces=0
NumWires=1
NumLoops=0
NumCoedges=4
NumEdges=4
NumVertices=4
$end ‘Topology’
BodyID=18
StartFaceID=-1
StartEdgeID=19
StartVertexID=23
NumNewFaces=0
NumNewEdges=4
NumNewVertices=4
FaceNameAndIDMap()
EdgeNameAndIDMap()
VertexNameAndIDMap()
$end ‘OperationIdentity’
$end ‘Operation’
$begin ‘Operation’
OperationType=’CoverLines’
ID=27
$begin ‘LocalOperationParameters’
KernelVersion=5
LocalOpPart=18
$end ‘LocalOperationParameters’
ParentPartID=18
IsSuppressed=false
$begin ‘OperationIdentity’
$begin ‘Topology’
NumLumps=1
NumShells=1
NumFaces=1
NumWires=0
NumLoops=1
NumCoedges=4
NumEdges=4
NumVertices=4
$end ‘Topology’
BodyID=-1
StartFaceID=28
StartEdgeID=-1
StartVertexID=-1
NumNewFaces=1
NumNewEdges=0
NumNewVertices=0
FaceNameAndIDMap()
EdgeNameAndIDMap()
VertexNameAndIDMap()
$begin ‘GeomTopolBasedOperationIdentityHelper’
$begin ‘NewFaces’
$begin ‘Face’
NormalizedSerialNum=0
ID=28
$begin ‘FaceGeomTopol’
FaceTopol(1, 4, 4, 4)
$begin ‘FaceGeometry’
Area=75
FcUVMid(12.5, 1.5, 0)
$begin ‘FcTolVts’
TolVt(0, 0, 0, 0)
TolVt(25, 0, 0, 0)
TolVt(25, 3, 0, 0)
TolVt(0, 3, 0, 0)
$end ‘FcTolVts’
$end ‘FaceGeometry’
$end ‘FaceGeomTopol’
$end ‘Face’
$end ‘NewFaces’
$begin ‘NewEdges’
$end ‘NewEdges’
$begin ‘NewVertices’
$end ‘NewVertices’
$end ‘GeomTopolBasedOperationIdentityHelper’
$end ‘OperationIdentity’
ParentOperationID=17
$end ‘Operation’
$end ‘Operations’
$end ‘GeometryPart’
$end ‘ToplevelParts’
$begin ‘OperandParts’
$end ‘OperandParts’
$begin ‘Planes’
$end ‘Planes’
$begin ‘Points’
$end ‘Points’
$begin ‘GeometryEntityLists’
$end ‘GeometryEntityLists’
$begin ‘CachedNames’
$begin ‘allobjects’
allobjects(-1)
$end ‘allobjects’
$begin ‘downplate’
downplate(-1)
$end ‘downplate’
$begin ‘global’
global(-1)
$end ‘global’
$begin ‘region’
region(-1)
$end ‘region’
$end ‘CachedNames’
$end ‘GeometryOperations’
$begin ‘GeometryDependencies’
$begin ‘DependencyInformation’
NumParents=1
DependencyObject(‘GeometryBodyOperation’, 5)
DependencyObject(‘CoordinateSystem’, 1)
$end ‘DependencyInformation’
$begin ‘DependencyInformation’
NumParents=1
DependencyObject(‘GeometryBodyOperation’, 15)
DependencyObject(‘GeometryBodyOperation’, 5)
$end ‘DependencyInformation’
$begin ‘DependencyInformation’
NumParents=1
DependencyObject(‘GeometryBodyOperation’, 17)
DependencyObject(‘CoordinateSystem’, 1)
$end ‘DependencyInformation’
$begin ‘DependencyInformation’
NumParents=1
DependencyObject(‘GeometryBodyOperation’, 27)
DependencyObject(‘GeometryBodyOperation’, 17)
$end ‘DependencyInformation’
$end ‘GeometryDependencies’
$end ‘GeometryCore’
GroupByMaterial()
GroupSheetByMaterial(‘-1’=true)
$begin ‘LastUserInputs’
$end ‘LastUserInputs’
$end ‘ModelSetup’
$begin ‘BoundarySetup’
$begin ‘GlobalBoundData’
$end ‘GlobalBoundData’
$begin ‘Boundaries’
NextUniqueID=2
MoveBackwards=false
$begin ‘Voltage1′
ID=0
BoundType=’Voltage’
Objects(6)
ParentBndID=-1
Value=’0V’
CoordinateSystem=-1
$end ‘Voltage1’
$begin ‘Voltage2′
ID=1
BoundType=’Voltage’
Edges(21)
ParentBndID=-1
Value=’1V’
CoordinateSystem=-1
$end ‘Voltage2’
$end ‘Boundaries’
$begin ‘ProductSpecificData’
$end ‘ProductSpecificData’
$end ‘BoundarySetup’
$begin ‘MaxwellParameterSetup’
$begin ‘MaxwellParameters’
NextUniqueID=1
MoveBackwards=false
$begin ‘Matrix1′
ID=0
MaxwellParameterType=’Matrix’
$begin ‘MatrixEntry’
$begin ‘MatrixEntry’
Source=0
NumberOfTurns=’1′
$end ‘MatrixEntry’
$end ‘MatrixEntry’
$begin ‘MatrixGroup’
$end ‘MatrixGroup’
GroundSources[1: 1]
$end ‘Matrix1’
$end ‘MaxwellParameters’
MotionParams()
$end ‘MaxwellParameterSetup’
$begin ‘MeshSetup’
$begin ‘MeshSettings’
$begin ‘GlobalSurfApproximation’
SurfDevChoice=0
NormalDevChoice=1
AspectRatioChoice=1
PullToTrueSurf=false
SetFacePreservationLevel=0
$end ‘GlobalSurfApproximation’
MeshMethod=’Auto’
$end ‘MeshSettings’
$begin ‘MeshOperations’
NextUniqueID=0
MoveBackwards=false
$end ‘MeshOperations’
$end ‘MeshSetup’
$begin ‘AnalysisSetup’
$begin ‘SolveSetups’
NextUniqueID=1
MoveBackwards=false
$begin ‘Setup1′
ID=0
SetupType=’Electrostatic’
Enabled=true
MaximumPasses=10
MinimumPasses=2
MinimumConvergedPasses=1
PercentRefinement=50
SolveFieldOnly=false
PercentError=1
SolveMatrixAtLast=true
PercentError=1
$end ‘Setup1’
$end ‘SolveSetups’
$end ‘AnalysisSetup’
$begin ‘Optimetrics’
$begin ‘OptimetricsSetups’
NextUniqueID=0
MoveBackwards=false
$end ‘OptimetricsSetups’
$end ‘Optimetrics’
$begin ‘Solutions’
$end ‘Solutions’
$begin ‘FieldsReporter’
$begin ‘FieldsCalculator’
Line_Discretization=1000
$end ‘FieldsCalculator’
$begin ‘PlotDefaults’
Default_SolutionId=9
Default_PlotFolder=’Automatic’
$end ‘PlotDefaults’
$begin ‘FieldsPlotManagerID’
NextUniqueID=0
MoveBackwards=false
NumQuantityType=0
NumPlots=0
$end ‘FieldsPlotManagerID’
$begin ‘Report3dInGeomWnd’
Report3dNum=0
$end ‘Report3dInGeomWnd’
$end ‘FieldsReporter’
$begin ‘SolutionManager’
$begin ‘SimSetup’
TypeName=’BaseSetup’
ID=7
Name=’Setup1′
$begin ‘Solution’
ID=8
Name=’AdaptivePass’
$begin ‘SimDataExtractor’
$begin ‘QuantityIDs’
NextUniqueID=0
MoveBackwards=false
IDMap()
$end ‘QuantityIDs’
$end ‘SimDataExtractor’
$end ‘Solution’
$begin ‘Solution’
ID=9
Name=’LastAdaptive’
$begin ‘SimDataExtractor’
$begin ‘QuantityIDs’
NextUniqueID=0
MoveBackwards=false
IDMap()
$end ‘QuantityIDs’
$begin ‘Sweeps’
$begin ‘PostprocessSweep’
Variable=’NormalizedDistance’
RegularSweep=1
Units=”
Minimum=0
Maximum=1
Increment=0.01
CreateIndexedSubsweepFlag=false
$end ‘PostprocessSweep’
$begin ‘PostprocessSweep’
Variable=’Phi’
RegularSweep=1
Units=’deg’
Minimum=0
Maximum=6.28318530717959
Increment=0.0872664625997165
CreateIndexedSubsweepFlag=false
$end ‘PostprocessSweep’
$begin ‘PostprocessSweep’
Variable=’Theta’
RegularSweep=1
Units=’deg’
Minimum=0
Maximum=6.28318530717959
Increment=0.0872664625997165
CreateIndexedSubsweepFlag=false
$end ‘PostprocessSweep’
$begin ‘PostprocessSweep’
Variable=’Phase’
RegularSweep=1
Units=’deg’
Minimum=0
Maximum=6.28318530717959
Increment=0.0872664625997165
CreateIndexedSubsweepFlag=false
$end ‘PostprocessSweep’
$begin ‘Sweep’
Variable=’X’
Column=’0′
Units=”
$end ‘Sweep’
$end ‘Sweeps’
$end ‘SimDataExtractor’
$end ‘Solution’
$end ‘SimSetup’
$begin ‘Version ID Map’
V=3
$begin ‘Setup’
N=’Setup1′
V=0
Soln(N=’AdaptivePass’, V=0)
Soln(N=’LastAdaptive’, V=0)
$end ‘Setup’
$end ‘Version ID Map’
$begin ‘ID Map’
$begin ‘Setup’
N=’Setup1′
I=7
Soln(N=’AdaptivePass’, I=8)
Soln(N=’LastAdaptive’, I=9)
$end ‘Setup’
$end ‘ID Map’
$end ‘SolutionManager’
$begin ‘UserDefinedSolutionMgr’
NextUniqueID=1000000
MoveBackwards=false
$end ‘UserDefinedSolutionMgr’
$begin ‘DatasetSolutionMgr’
NextUniqueID=2000000
MoveBackwards=false
$end ‘DatasetSolutionMgr’
Notes=$begin_cdata$        $end_cdata$
$begin ‘AnimationSetups’
$end ‘AnimationSetups’
CacheHeaderFile=’HDR46EF22376135754418116.tmp’
$end ‘Maxwell2DModel’
$begin ‘DataInstances’
$begin ‘Instance’
DesignEditor=’Maxwell2DDesign1′
$begin ‘Maxwell2DDesignInstance’
DesignInstanceID=1
$begin ‘WindowPosition’
$begin ‘EditorWindow’
‘3D Modeler'(Editor3d(View(WindowPos(5, -1, -1, -4, -30, 0, 0, 878, 317), OrientationMatrix(0.591607987880707, 0, 8.88178419700125e-016, 0, 0, 0, -0.591608047485352, 0, 0, 0.591607987880707, 0, 0, 0, 2.38418579101563e-007, -5.7486834526062, 1, 0, -1.4437882900238, 3.99094414710999, 1.97443532943726, 3.9721827507019, -31.9021797180176, 43.3995475769043), Drawings[5: ‘Region’, ‘Inner’, ‘Air’, ‘Outer’, ‘E_Vector1’], ‘View Data'(‘Render Mode’=1, ‘Show Ruler’=1), ClipPlanes(ClipPlaneOptions(DisableWhenDrawingNewPlane=true, ForceOpqaueForUnclipped=false, ShowClipped=false, Transparency=0, HandleColor=16776960)))))
$end ‘EditorWindow’
$end ‘WindowPosition’
$begin ‘ReportSetup’
$begin ‘ReportManager’
$begin ‘Reports’
$end ‘Reports’
NextUniqueID=0
MoveBackwards=false
$begin ‘NextVersID’
NextUniqueID=0
MoveBackwards=false
$end ‘NextVersID’
$end ‘ReportManager’
$begin ‘Reports’
$end ‘Reports’
$begin ‘ReportsWindowInfoList’
$end ‘ReportsWindowInfoList’
$end ‘ReportSetup’
$begin ‘Properties’
$end ‘Properties’
$begin ‘UserDefinedDocument’
$begin ‘Data’
$end ‘Data’
$end ‘UserDefinedDocument’
$end ‘Maxwell2DDesignInstance’
$end ‘Instance’
$begin ‘Instance’
DesignEditor=’Maxwell2DDesign2′
$begin ‘Maxwell2DDesignInstance’
DesignInstanceID=3
$begin ‘WindowPosition’
$begin ‘EditorWindow’
‘3D Modeler'(Editor3d(View(WindowPos(5, -1, -1, -4, -30, 110, 145, 970, 437), OrientationMatrix(0.591607928276062, 7.87239784472149e-009, -4.44538050814458e-009, 0, 7.45058059692383e-009, 0.591607928276062, 0, 0, 0, -2.98023223876953e-008, 0.591607928276062, 0, 1.19209289550781e-007, 2.38418579101563e-007, -5.7486834526062, 1, 0, -2.40457129478455, 2.67818379402161, -0.971726179122925, 0.770540714263916, 0.728723049163818, 10.7686424255371), Drawings[3: ‘Outer’, ‘Air’, ‘Inner’], ‘View Data'(‘Render Mode’=1, ‘Show Ruler’=1), ClipPlanes(ClipPlaneOptions(DisableWhenDrawingNewPlane=true, ForceOpqaueForUnclipped=false, ShowClipped=false, Transparency=0, HandleColor=16776960)))))
$end ‘EditorWindow’
$end ‘WindowPosition’
$begin ‘ReportSetup’
$begin ‘ReportManager’
$begin ‘Reports’
$end ‘Reports’
NextUniqueID=0
MoveBackwards=false
$begin ‘NextVersID’
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MoveBackwards=false
$end ‘NextVersID’
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$begin ‘Reports’
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$begin ‘ReportsWindowInfoList’
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$end ‘ReportSetup’
$begin ‘Properties’
$end ‘Properties’
$begin ‘UserDefinedDocument’
$begin ‘Data’
$end ‘Data’
$end ‘UserDefinedDocument’
$end ‘Maxwell2DDesignInstance’
$end ‘Instance’
$begin ‘Instance’
DesignEditor=’Maxwell2DDesign3′
$begin ‘Maxwell2DDesignInstance’
DesignInstanceID=5
$begin ‘WindowPosition’
$begin ‘EditorWindow’
‘3D Modeler'(Editor3d(View(WindowPos(3, -1, -1, -4, -30, 66, 87, 926, 379), OrientationMatrix(0.591607928276062, 7.87239784472149e-009, -4.44538050814458e-009, 0, 7.45058059692383e-009, 0.591607928276062, 0, 0, 0, -2.98023223876953e-008, 0.591607928276062, 0, 1.19209289550781e-007, 2.38418579101563e-007, -5.7486834526062, 1, 0, -0.297714233398438, 17.0424118041992, -5.22478675842285, 3.51592350006104, -31.4920845031738, 42.9894523620605), Drawings[2: ‘Region’, ‘DownPlate’], ‘View Data'(‘Render Mode’=1, ‘Show Ruler’=1), ClipPlanes(ClipPlaneOptions(DisableWhenDrawingNewPlane=true, ForceOpqaueForUnclipped=false, ShowClipped=false, Transparency=0, HandleColor=16776960)))))
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$end ‘WindowPosition’
$begin ‘ReportSetup’
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$begin ‘NextVersID’
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$begin ‘Properties’
$end ‘Properties’
$begin ‘UserDefinedDocument’
$begin ‘Data’
$end ‘Data’
$end ‘UserDefinedDocument’
$end ‘Maxwell2DDesignInstance’
$end ‘Instance’
$end ‘DataInstances’
$begin ‘WBSystemIDToDesignInstanceIDMap’
$end ‘WBSystemIDToDesignInstanceIDMap’
$begin ‘WBSysIDSysDetails’
$end ‘WBSysIDSysDetails’
$begin ‘WBConnIDConnDetails’
$end ‘WBConnIDConnDetails’
$end ‘AnsoftProject’
$begin ‘ProjectPreview’
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$end ‘DesignInfo’
$begin ‘DesignInfo’
DesignName=’Maxwell2DDesign2′
Notes=”
Factory=’Maxwell 2D’
IsSolved=true
‘Nominal Setups'[1: ‘Setup1’]
‘Optimetrics Setups'[0:]
‘Optimetrics Experiment Types'[0:]
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$end ‘DesignInfo’
$begin ‘DesignInfo’
DesignName=’Maxwell2DDesign3′
Notes=”
Factory=’Maxwell 2D’
IsSolved=true
‘Nominal Setups'[1: ‘Setup1’]
‘Optimetrics Setups'[0:]
‘Optimetrics Experiment Types'[0:]
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4MFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQAUU\
UUAFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQAU\
UUUAFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQA\
UUUUAFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQAUUUUAFFFFABRRRQ\
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QAUUUUAFFFFABRRRQAUUUUAf/2Q==’
$end ‘DesignInfo’
$end ‘ProjectPreview’

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Coursework Assignment Brief RESIT-174450

Coursework Assignment Brief RESIT

Semester: D16
Module Code: A006
Module Title: Management Principles
Programme Year 0 / Ext. Bachelors Degree Programme
Level: Level 3
Awarding Body: University of Plymouth
Module Leader Mark wright
Format: Report
Presentation: No
Any special requirements: *NO MORE THAN 3 INTERNET SOURCES SHOULD BE USED*All work should be submitted on the student portal along with an acceptable Turnitin report
Word Limit: Total word limit is 1800 words, tolerance +/-10%. Acceptable Turntin report is required.
Deadline date for submission: TBA
Learning outcomes to be examined in this assessment Upon successful completion of this module, students should be able to: (a) (b) (c) (d) The coursework will assess learning outcomes (a) (b) and (c).
Percentage of marks awarded for module: This assignment is worth 50% of the total marks for the module
Assessment criteria Explanatory comments on  the assessment criteria Maximum marks for each section
Content, style, relevance, originality Clear demonstration of rigorous research from recognised authoritative sources. Audience focus. 50%
Format, referencing, bibliography Harvard 10 %
Constructive critical analysis, introduction, conclusion Demonstration of a clear understanding of the issues. Use of academic models. Clear understanding of a focused campaign 40%

 

Answer all tasks

Task 1

Define the terms: management, manager and organisation. Thinking about a large organisation and explain the different roles of tiered management positions. Comment on which management role you think is most important.                                                                                                                                                                                                                                                                                                                                                  (25marks)

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What Strategies Do You See as an Investigator?-MAH_150216_63351_14_131320 and TMP_040216_63351_6_129683

Discussion: What Strategies Do You See as an Investigator?

Choose any one of the following companies and review the respective websites: Wal-Mart, Home Depot, IBM, or Cardinal Health. Examine their strategies to check if they are emergent, intended, or both emergent and intended. Discuss why you selected a particular company and how its strategies compare with their competition. In your responses to your classmates, relate how these strategies can translate to a business’s success and assess any differences in opinions you may have on a chosen company.

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This Unit will be assessed by assignment and Presentation-77995

This Unit will be assessed by assignment and Presentation.

 

You are strongly recommended to  read “Preparation  guidelines  of the  Coursework Document” before answering your assignment.

 

ASSIGNMENT

 

  1. 1.             Objective

 

This coursework is designed in the form of set questions and design scenario. The tasks are divided into four sections, with section compromising several questions. The coursework should be submitted as one document in a report format.

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Organisational Governance and Leadership|Crowd Sourcing and Waterfall Project Management Methodology-74653

ACCT 20051/20077: Practical and written assessment

Due date: Thursday of  Week 7 [11:45pm  [AEST] 28 April 2016]

ASSESSMENT

Weighting:

 

20%

 

Part B

Objectives

This assessment item relates to the course learning outcomes 1, 2, 3, and 4.

Details

The assignment must be completed as an individual assignment. There is a specific writing style and required to write an executive report. Word limit is 1500 words. Please do not repeat the question in your answer, and simply provide the answer.

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Comedy and Tragedy Unit Reader-56715

100900

Comedy and Tragedy Unit Reader Semester 1, 2016 Unit Reader, 100900 Comedy and Tragedy (Semester 1, 2016) Western Sydney University Prepared by Dr Helen Basides Comedy and Tragedy Unit Reader Semester 1, 2016 Unit Reader, 100900 Comedy and Tragedy (Semester 1, 2016) Western Sydney University Prepared by Dr Helen Basides ii Table of Contents The Ancient Greek Theatre . . . . . 1 Glossary Items – Ancient Greek Theatre . . . 6 The Elizabethan Theatre . . . . . . 9 Nancy Sherman, Hamartia and Virtue . . . . . 12 Plato, The Republic , Book X (extracts) . . . . 33 Glossary Items – A ristotle . . . . . . 39 Friedrich Nietzsche, The Birth of Tragedy (extracts) . . 43 George Steiner, “‘Tragedy,’ Reconsidered” . . . 65 G. W. F. Hegel, Aesthetics (extracts) . . . . 81 A. C. Bradley, “Hegel ’s Theory of Tragedy” . . . 95 Arthur Miller, “Tragedy and the Common Man” . . 120 Aristophanes, Frogs . . . . . . 125 Andrew Stott, Comedy (extract) . . . . . 168 Northrop Frye, “The Mythos of Spring: Comedy ” . . 173 Simon Critchley, On Humour (extract) . . . . 187 Henri Bergson, Laughter (extract) . . . . 203 How to Cite . . . . . . . . 234 iii iv The Origins of Tragedy Ancient Greece 1 2 Ancient Greek Tragedians and Comedians See vUWS for a d etailed timeline of Ancient Greek Drama . 3 A. C. Bradley, “Hegel ’s Theory of Tragedy” . . . 95  Arthur Miller, “Tragedy and the Common Man” . . 120  Aristophanes, Frogs . . . . . . 125  Andrew Stott, Comedy (extract) . . . . . 168  Northrop Frye, “The Mythos of Spring: Comedy ” . . 173  Simon Critchley, On Humour (extract) . . . . 187  Henri Bergson, Laughter (extract) . . . . 203  How to Cite . . . . . . . . 234 The Origins of Tragedy Ancient Greece Ancient Greek Tragedians and Comedians See vUWS for a detailed timeline of Ancient Greek Drama. image The Ancient the theatre Glossary Items– Ancient Greek Theatre Do you know the meaning of the following terms relating to the ancient Greek theatre? Term The Elizabethan Theatre Swan Theatre The Swan Theatre, 1596 Arnoldus Buchelius (Aernout van Buchel) (1565–1641), after a drawing of Johannes de Witt (1566–1622) Globe Second Globe Sherman, Nancy. “Hamartia and Virtue.” In Essay’s on Aristotle’s Poetics, edited by Amélie Oksenberg Rorty, 177–96. Princeton: Princeton University Press, 1992. Hamartia

100900 Comedy and Tragedy – Principal Readings                     

Title ISBN Availability
Aeschylus, The Oresteia: Agamemnon, The Libation Bearers, The Eumenides, trans. Robert Fagles (London: Penguin, 1979). 

For Agamemnon

9780140443332 University bookstore or other bookseller 

Please have this edition.

William Shakespeare, The Arden Shakespeare: Macbeth, ed. Sandra Clark and Pamela Mason (London: Bloomsbury, 2015) 

9781904271413 (paperback) 

9781408153741 (ebook)

University bookstore or other bookseller 

Also available as an ebook from http://www.bloomsbury.com/au/macbeth-9781408153741/

Students may use other editions if they already have them. However, this edition is recommended because the notes are at the bottom of the page.

Students who are progressing to secondary teaching are advised to have the hard copy edition for future professional use.

Henrik Ibsen, Hedda Gabler and Other Plays, trans. Una Ellis-Fermor (London: Penguin, 2010). 

For Hedda Gabler

9780141195216 University bookstore or other bookseller 
Aristotle, Poetics, trans. Michael Heath (London: Penguin, 1996).  9780140446364 University bookstore or other bookseller 

Please have this edition.

Aristophanes, Frogs and Other Plays, ed. Shomit Duma (London: Penguin, 2007). 

For Frogs

9780140449693 E-reader (available on vUWS) or this edition from your bookseller. 

This title will not be available through the university bookstore.

Please have this edition.

William Shakespeare, The Arden Shakespeare: The Taming of the Shrew, ed. Barbara Hodgdon (London: Bloomsbury, 2010) 9781903436936 University bookstore or other bookseller 

Students may use other editions if they already have them. However, this edition is recommended because the notes are at the bottom of the page.

NB: This unit has an e-reader. The reader will be available to students on vUWS. Students may use the reader electronically, print the reader themselves, or have the reader printed and bound commercially. The reader will not be available at the university bookshop.

Aristotle – Further Reading

NB: Not all the sources listed are available through the UWS library. For information on where to locate particular books, see http://www.worldcat.org/

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Tax Law Assignment Help

TASK- Tax Law

its a tax retun .. you have to fill all required tax forms . must be on the tax return forms. like a real tax return .

image1

image2

image3

image4

image5

SOLUTION –

Attached please find the completed assignment containing –
1. IRS FORM – 1120S
2. IRS FORM – 1120S-SCH-D
3. IRS FORM – 1120S-SCH-K1
4. IRS FORM 1125A
5. FORM 4562
6. FORM 4797
7. WORD DOC FILE for Financial Statements of Douglas Plastics Co. for the Year 2013

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Financial Planning and Forecasting-132482

QUESTION

Scenario

Wilfred and Lillian Martin are a couple approaching retirement. Wilfred is 59 and Lillian is 55, and they have three children, Jeff 29, Leanne 25, and Chris 21. Based on the risk profile questionnaire, Wilfred has a risk profile of three and Lillian has a risk profile of four out of a possible five.

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Programming principles(Python Programming)-128279

Task

In the Resources section of the Interact2 subject website there is a data file called cars.txt. This file contains details of a valid car rego numbers. Each rego number is a six-alphanumeric such as A1B2C3. (Note: Two records in the file have intentionally been “corrupted” – for testing purposes.)

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Personal relations (PR), its challenges and opportunities (A case study of Nike)-125911

Assessment criteria for essay

Your work will be written in essay style. It will have an introduction

that signposts the structure of your essay, clear sections, and a

conclusion. Please see the notes on the portal about essay writing.

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Research Design: Factorial Experiment-122799

  1. The major purpose was to focus on the survival and the growth of the mice. Hence, there were efforts made as per the animal distribution based on the below table:
Factor

 

Description Level

 

+

A Sprouts —- Free
B Frequency of Weighing One per day One per 3 days
C Nest Box No Yes
D Remove young No Yes
E Male Yes No
F Exercise wheel Locked Free
G Food 80 % Free
H water 80 % Free

The generators 28-4 which fractional design were:

E= BCD, F=ACD, G=ABC, H=ABD

I= BCDE=ACDF=ABC=ABDH=ABEF=ADEG=ACEH=BDFG=BCFH=CDGH=CEFG=DEFH=BEGH=AFGH=ABCDEFGH

The 7 strings of estimable confounded two factor interactions:

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India’s Growth Analysis-121610

India’s Growth Analysis

Abstract

In this paper, economic scenario of India has been discussed. The study made the analysis about the growth of this country and applied it on the basis of Solow growth model. Institutional impacts on the growth of this country have also taken into account. A comparison has been made with the current scenario of Canada. It is observed that India is in the correct direction of growth in terms of capital accumulation and productivity. In contrast, Canada did not show much improvement in its technological progress. However, in some research it is found that total factor productivity is improving.

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ICT Based Teaching and Learning Process

Abstract

In this particular assignment, the aim is to identify the importance of ICT technology in case of education system, which may enhance the efficiency of learners’ outcome. In this regard, the study has also highlighted strategies of ICT development plan, which may assist teachers to enhance the efficiency of learners as well as students. ICT also helps a teacher in enhancing his/her professional image, with the help of ICT the teacher could very easily project a very different professional image to his colleague and in this way ICT is also very beneficial to the teachers as well. Moreover, implications of ICT may help in increasing the learning capabilities of the students. At the same time it also helps in improving the learning activities of the student as well.

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Internal Control Structure for Application Controls-116032

***Document a recommended internal control structure for application controls in your designed system. In brief, you will be asked to list the controls you propose for your assigned business process, classify them in accordance with various categories, and document their purpose.

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