Embedded case study methods: integrating quantitative and qualitative knowledge
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Thousand Oaks, Calif. [u.a.]
Sage
2002
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references (p. 351-378) and index |
Beschreibung: | 392 S. Ill., graph. Darst. |
ISBN: | 0761919457 0761919465 |
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245 | 1 | 0 | |a Embedded case study methods |b integrating quantitative and qualitative knowledge |c Roland W. Scholz ; Olaf Tietje |
264 | 1 | |a Thousand Oaks, Calif. [u.a.] |b Sage |c 2002 | |
300 | |a 392 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
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650 | 7 | |a Casestudies |2 gtt | |
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650 | 4 | |a Case method | |
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Datensatz im Suchindex
_version_ | 1804133003304108032 |
---|---|
adam_text | CONTENTS
List of Boxes, Figures, and Tables ix
1. Introduction 1
Methods of Knowledge Integration 3
Embedded Case Studies for Complex,
Contextualized Problems 3
Historical Landmarks 4
Parti
Case Study Design and Synthesis
2. Types of Case Studies 9
Design 9
Motivation 11
Epistemological Status 11
Purpose 12
Format 12
Data Collection and Methods of Knowledge
Integration 13
3. The Use of Case Studies in Different Disciplines 15
Neuropsychology 15
Educational Sciences 19
Law 22
Business 23
Environmental Sciences 25
4. The Architecture of Knowledge Integration
in Embedded Case Studies 29
The Architecture of Embedded Case Studies 30
Strategies of Synthesis 31
The Brunswikian Lens Model 36
Types of Knowledge Integration 40
5. The ETH UNS Case Study Zurich North 45
The Zurich North Case 46
Case Prospects and History 48
Understanding the Case 52
Faceting the Case for Embedded Case Design 55
Constraints of the Study 56
Organizing the Study 57
Part II
Methods of Knowledge Integration
6. Overview 63
7. The Methods in Brief 65
8. How to Choose the Right Method 71
Part III
The Methods in Detail
9. Formative Scenario Analysis 79
The Rationale 79
The Method in Detail 84
10. System Dynamics 117
The Rationale 117
The Method in Detail 127
11. Multi Attribute Utility Theory 143
The Rationale 143
The Method in Detail 150
12. Integrated Risk Management 175
The Rationale 175
Incorporating Different Perspectives 184
The Method in Detail 186
13. Mediation: Area Development Negotiations 197
The Rationale 197
The Method in Detail 207
14. Future Workshops 225
The Rationale 225
The Method in Detail 232
15. Experiential Case Encounter 241
The Rationale 241
The Method in Detail 244
16. Synthesis Moderation and Group Techniques 247
The Rationale 247
The Method in Detail 253
17. Material Flux Analysis 271
The Rationale 271
The Method in Detail 277
18. Life Cycle Assessment 285
The Rationale 285
The Method in Detail 291
19. Bio Ecological Potential Analysis 305
The Rationale 305
The Method in Detail 314
Part IV
Validation Perspectives
20. The Validation of Embedded Case Studies 331
The Rationale 331
Validation of Embedded Case Studies:
A Practical View 347
References 351
Index 379
About the Authors 391
LIST OF BOXES,
FIGURES, AND TABLES
Boxes Box 2.1 Using Multiple Sources of Data and Evidence 14
Box 3.1 Novelistic Case Descriptions for Exploratory,
Descriptive, and Explanatory Case Studies 17
Box 3.2 Synthesis Moderation 24
Box 3.3 Groundbreaking Case Studies for Ill Defined Problems 26
Box 5.1 Experiential Case Encounter 54
Box 7.1 Types of Knowledge Integration in Case Study Methods 68
Box 9.1 Sufficiency in Case Modeling and Evaluation 83
Box 9.2 Dependent and Independent Variables 87
Box 9.3 Key Definitions in Formative Scenario Analysis 89
Box 9.4 Structuring the Case Through an Impact Matrix 96 97
Box 9.5 Novelistic Case Description of the Scenario
Polarization of the Zurich North Shell Scenarios 111
Box 9.6 Cross Impact Analysis: Can We Access the
Probability of Future Developments of a Case? 112
Box 10.1 The General and the Specific:
System Dynamics in Case Analysis 121
Box 10.2 Key Definitions for System Dynamics and Its
Relation to Formative Scenario Analysis 134
Box 10.3 Causal Feedback Loops 136
Box 11.1 Formal Definition of the Multi Attribute Utility
Situation 151
Box 11.2 Techniques of Inquiry 158 159
Box 11.3 The Relation Between Evaluation and Utility 166
Box 11.4 Special Features of Multi Attribute Software 167
Box 12.1 Formal Definition of Risk Situations 176
Box 12.2 Risk Functions 180 181
Box 12.3 How to Measure Risk and Subjective
Probabilities 194 195
Box 13.1 Malignant and Benign Conflict Structures 203 204
Box 13.2 Key Definitions for Decision Theoretic
Situation Analysis 205
Box 13.3 Solutions for Malignant Conflicts 224
Box 14.1 Intuitive and Analytic Modes of Thought 233
Box 16.1 Moderator Responsibilities in Embedded
Case Studies 252
Box 16.2 On the Role of Goal Formation 253
Box 16.3 Focus Groups 263
Box 18.1 Life Cycle Inventory Calculation 295
Box 19.1 Basic Biocybernetic Rules 313
Box 19.2 The Evaluation of Well Structuredness 324 325
Box 20.1 Variants of Validity 336 337
Figures Figure 4.1 Architecture of Knowledge Integration in
Embedded Case Studies 30
Figure 4.2 The Brunswikian Lens Model in Its Original Shape 37
Figure 4.3 The Brunswikian Lens Model in Its Basic Shape 39
Figure 5.1 Maps and Overhead Photo of the Zurich North Site 47
Figure 5.2 Aerial View of the Zurich North Site 49
Figure 5.3 Model of the Project 51
Figure 5.4 Pictures About the Zurich North Case History 53
Figure 5.5 The Six Facets (Synthesis Groups) of the
Zurich North Site 56
Figure 5.6 The Three Phases of an ETH UNS Case Study 58
Figure 5.7 Agent Analysis in the ETH UNS Case Study 59
Figure 8.1 Road Map of the Methods of Embedded
Case Studies 74
Figure 9.1 The Scenario Trumpet Metaphor 81
Figure 9.2 The Brunswikian Lens Model for a Formative
Scenario Analysis 82
Figure 9.3 The Nine Steps of Formative Scenario Analysis 84
Figure 9.4 Construction of Scenarios on Different Scales 85
Figure 9.5 Excerpt from the Impact Matrix of the
Synthesis Group Urban Development
of the Greater Zurich Area 93
Figure 9.6 A System Grid of the Activity and
Sensitivity/Passivity Scores 99
Figure 9.7 A System Graph of the Impact Matrix of the
Zurich North Shell Scenario 101
Figure 10.1 The Brunswikian Lens Model for System Dynamics 123
Figure 10.2 System Dynamics Levels 128
Figure 10.3 Techniques for Conceptualizing and Representing
the System Model 133
Figure 10.4 Causal Loop Diagram for a Population Model 137
Figure 10.5 Example for Data Use in the World3 Model:
Data From Global Statistics and Their
Approximation 138
Figure 11.1 Construction of the Overall Utility of an
Alternative 147
Figure 11.2 The Brunswikian Lens Model for Multi Attribute
Utility Theory 147
Figure 11.3 Application of Multi Attribute Utility Theory in
the Synthesis Group Parks and Green Areas 157
Figure 11.4 Overall Objective, Subgoals, and Attributes in
the Synthesis Group Contaminated Soil 161
Figure 11.5 Schematic Representation of the
Contaminated Zone (C) With Precipitation (P),
Leaching (L) to the Groundwater (GW), and
Inflow (/) and Outflow (O) 164
Figure 11.6 Example of Utility Functions as Used in
the Evaluation of the Synthesis Group
Contaminated Soil 164
Figure 11.7 Hypothetical Alternatives for Hypothetical Cars
as Presented by the MAUD Program 169
Figure 11.8 Results of the Multi Attribute Utility Evaluation 172
Figure 12.1 Egg Graphic of Risks as Investigated by Slovic 184
Figure 12.2 The Brunswikian Lens Model of Integrated Risk
Management 187
Figure 12.3 A Semiquantitative Model for Integrated Risk
Management 191
Figure 12.4 Representation of the Risk Management Model
for the Zurich North Soil Remediation Case 192 193
Figure 13.1 ADN Within the Display of the Brunswikian
Lens Model 198
Figure 13.2 The Relationships Between Four Types
of Activities and Research in Mediation,
Arbitration, Negotiation, and Bargaining
Related to Case Analysis 200
Figure 13.3 The Planning Project Developed by the Owners 208
Figure 13.4 Grouping of the Participants in the Area
Development Negotiations on the SEW Site 212
Figure 13.5 The Six Stations of the SEW Exploration Parcours 214
Figure 13.6 Sociogram Between the Four Groups 219
Figure 13.7 A Main Orientation of the Interest Groups at the
SEW Site and the Essence of the Conflict Structure 220
Figure 13.8 The Discourse of ADN With Representatives 223
Figure 14.1 Sample Location and Spatial Arrangement of the
Room in Which a Future Workshop Takes Place 229
Figure 14.2 Brunswikian Representation of Future Workshops 230
Figure 14.3 Integration of the Intuitive and Analytic
Modes of Thought at Any Stage of the Project 231
Figure 16.1 Group Techniques and Project Management as
Parts of Synthesis Moderation 248
Figure 16.2 Prerequisites to Moderation 255
Figure 16.3 Impact of Seating Arrangements on Conversation 256
Figure 16.4 A Typical Procedure for a Synthesis Group 258
Figure 16.5 Determining the Landmarks of the Case Study 266
Figure 16.6 Prototypical Schema for the
Architecture of a Synthesis 268
Figure 17.1 Brunswikian Lens Model for the Material
Flux Analysis 275
Figure 17.2 Overview of Material Fluxes Induced by the
Renewal of the Ententeich Building vs.
Its Total Demolition and New Construction 278
Figure 17.3 Comparison of Fictitious Material Fluxes for
the Two Variants Renewal and Total Demolition
and New Construction 280
Figure 17.4 Transfer Coefficients , to k4 Partition the
Educt (Input) of a Process Into Different Products 283
Figure 18.1 The Formal Model of the LCA 288
Figure 18.2 Phases of an LCA Due to ISO 14040 292
Figure 18.3 Brunswikian Lens Model for the LCA 299
Figure 19.1 Core Elements Constituting an Ecosystem in
Bio Ecological Potential Analysis 308
Figure 19.2 Evaluation Criteria Used in a Bio Ecological
Potential Analysis 310
Figure 19.3 Relationships Between Productivity and
Performance 315
Figure 19.4 Illustration of the Buffer Capacity bt 319
Figure 19.5 Illustration of Change Rates by Example 320
Figure 19.6 Input Output Analysis as a Tool for Analyzing
the Dependence of the Case on Other Systems 327
Figure 20.1 The Perception and Judgment Paradigm of
Probabilistic Functionalism 340
Figure 20.2 Validity Issues in Embedded Case Studies 341
Tables
Table 2.1 Dimensions and Classifications of Case Studies 10
Table 5.1 Constraints and Number of Participants in
the ETH UNS Case Study Approach 57
Table 8.1 Key Questions for Methods of Knowledge
Integration in Embedded Case Studies 72
Table 9.1 Cutout of the Zurich North Plus Minus Analysis 88
Table 9.2 Impact Variables From the Zurich North Case Study 90
Table 9.3 Activity Ranking of All Variables in the Zurich
North Case Study 98
Table 9.4 Excerpt of the Consistency Matrix for the
Zurich North Scenario Analysis 107
Table 9.5 The Schema of a Consistency Spreadsheet
After Consistency Assessment 109
Table 9.6 Spreadsheet of Scenario Selection 109
Table 10.1 Important Aspects of System Dynamics Modeling 129
Table 10.2 Differences Between the Matrix of a Linear,
Homogeneous Dynamic System and the Impact
Matrix Defined in Chapter 9 135
Table 11.1 Characteristics of the Multi Attribute
Utility Applications in Different Study Teams in
the Zurich North Case Study 152
Table 11.2 A Portion of the Alternatives vs. Attributes Matrix 163
Table 11.3 Example of a Pairwise Comparison Matrix
According to the Analytical Hierarchy Process for
the Evaluation of Contaminated Sites 170
Table 13.1 Stations, Objects Encountered, and Data of the
Exploration Parcours 217
Table 13.2 Mean Ranks of Intuitive Ranking (vx) and
of Variant Preferences According to
MAUD ONE (v2) and MAUD TWO (v3) 218
Table 16.1 Instruments for Exchanging Information and
Knowledge Integration in Groups 261 262
Table 17.1 Matrix Representation of the Material Fluxes
for the Variant Renewal of the Ententeich 281
Table 17.2 Matrix Elements tip rjk, and ekl Quantifying the
Material Fluxes Between the Processes, the Inputs
Into the System, and the Output From the System 292
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author | Scholz, Roland W. Tietje, Olaf 1957- |
author_GND | (DE-588)139295879 |
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illustrated | Illustrated |
indexdate | 2024-07-09T20:01:48Z |
institution | BVB |
isbn | 0761919457 0761919465 |
language | English |
lccn | 2001002910 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-012963047 |
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spelling | Scholz, Roland W. Verfasser aut Embedded case study methods integrating quantitative and qualitative knowledge Roland W. Scholz ; Olaf Tietje Thousand Oaks, Calif. [u.a.] Sage 2002 392 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Includes bibliographical references (p. 351-378) and index Cas, Méthode des Casestudies gtt Recherche - Méthodologie Case method Research Design Research Methodology Research methods Social Sciences methods Fallstudie (DE-588)4124897-1 gnd rswk-swf Forschungsmethode (DE-588)4155046-8 gnd rswk-swf Fallstudie (DE-588)4124897-1 s Forschungsmethode (DE-588)4155046-8 s DE-604 Tietje, Olaf 1957- Verfasser (DE-588)139295879 aut HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012963047&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Scholz, Roland W. Tietje, Olaf 1957- Embedded case study methods integrating quantitative and qualitative knowledge Cas, Méthode des Casestudies gtt Recherche - Méthodologie Case method Research Design Research Methodology Research methods Social Sciences methods Fallstudie (DE-588)4124897-1 gnd Forschungsmethode (DE-588)4155046-8 gnd |
subject_GND | (DE-588)4124897-1 (DE-588)4155046-8 |
title | Embedded case study methods integrating quantitative and qualitative knowledge |
title_auth | Embedded case study methods integrating quantitative and qualitative knowledge |
title_exact_search | Embedded case study methods integrating quantitative and qualitative knowledge |
title_full | Embedded case study methods integrating quantitative and qualitative knowledge Roland W. Scholz ; Olaf Tietje |
title_fullStr | Embedded case study methods integrating quantitative and qualitative knowledge Roland W. Scholz ; Olaf Tietje |
title_full_unstemmed | Embedded case study methods integrating quantitative and qualitative knowledge Roland W. Scholz ; Olaf Tietje |
title_short | Embedded case study methods |
title_sort | embedded case study methods integrating quantitative and qualitative knowledge |
title_sub | integrating quantitative and qualitative knowledge |
topic | Cas, Méthode des Casestudies gtt Recherche - Méthodologie Case method Research Design Research Methodology Research methods Social Sciences methods Fallstudie (DE-588)4124897-1 gnd Forschungsmethode (DE-588)4155046-8 gnd |
topic_facet | Cas, Méthode des Casestudies Recherche - Méthodologie Case method Research Design Research Methodology Research methods Social Sciences methods Fallstudie Forschungsmethode |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012963047&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT scholzrolandw embeddedcasestudymethodsintegratingquantitativeandqualitativeknowledge AT tietjeolaf embeddedcasestudymethodsintegratingquantitativeandqualitativeknowledge |