Showing posts with label heuristic evaluation. Show all posts
Showing posts with label heuristic evaluation. Show all posts

Wednesday, October 13, 2010

20101013 - Hollins, ...Instrument to assess Usability of courseware

The development of an instrument to assess the usability of courseware

by Hollins, Louvenia D., Ed.D., Northern Illinois University, 2008 , 270 pages; AAT 3324334



My Interest:

1) UET = Instructional Design Usability Survey (IDUS).

2) Heuristic evaluation.

3) Empirical usability testing.

4) Walkthroughs.

5) Field observations.

6) Theoretical framework.

7) Three-phases approach.

8) ANOVA.

9) Validity & reliability of UET/Survey.


Action:

To read the Dissertation in future.



Research Goal


This study describes the development and initial validation of a survey designed to measure students' perceptions of the usability of instructional design of educational courseware.


Motivation


There is a lack of measuring instruments to conduct this kind of research. The present study attempts to take steps to provide educators and researchers with a useful tool to facilitate their studies of this aspect or courseware creation and use.


Methodology


A three-phase approach is taken in this study to develop the Instructional Design Usability Survey (IDUS) instrument.


Expert evaluators from the field of educational technology, research and assessment were involved in Phase I to establish content and face validity.


During Phase II, student focus groups were formed from the population of courseware users to establish content validity and clarity of the instrument.


In Phase III, students examined the usability of the instrument, and reliability and validity tests were conducted.


Comments: This dissertation ought to be read in detail. Because a UET is developed. Second reason is to benchmark how she validated the UET.


Results Discussion


Reliability and validity of scores from the IDUS were assessed through statistical procedures performed on the data collected from 206 student participants.


Internal consistency reliability was assessed for each construct using Cronbach's alpha. The internal consistency for the six constructs ranged from .73 to .92. Confirmatory factor analysis (CFA) was conducted to establish construct validity by examining the overall fit of the models as well as the magnitude of the factor loadings for each proposed construct. Results of the study show the IDUS is reliable but does not yet show strong enough evidence of validity.



1. INTRODUCTION TO THE STUDY 1

Statement of the Problem 3

Purpose of the Study 4

Theoretical Framework 5

Research Questions 9

Definition of Terms 9

Significance of the Study 10

Organization of the Study 10


2. REVIEW OF RELATED LITERATURE 12

CAI and User ID Guidelines 12

HCI and UEM 26

Empirical Usability Testing 29

Heuristic Evaluation 29

Field Observations 30

Walkthroughs 30

Analytical Modeling Methods 31

User-Centered Design (USD) 32

Survey Development and Validity 33

Summary of the Literature Review 41


3. RESEARCH METHODOLOGY 43

Research Methodology 44

Three-Phase Approach Overview 44

Research Site and Student Target Population 44

Instrument Development 46

Phase I: Expert Evaluation 49

Expert Target Population 49

Data Collection 50

Data Analysis 52

Phase II: Student Focus Group 56

Data Collection 56

Findings of Phase II 60

Phase III: Student Pilot Test 61

Data Collection 62

Data Analysis 63

Chapter Page

Missing Data 65

Summary 66


4. FINDINGS OF THE STUDY 68

Demographic Data Analysis 68

Research Question 1 73

Research Question 1A 73

Research Question IB 88

Research Question 2 97

Posttest Reading Levels ANOVA 98

Posttest Math Levels ANOVA 100

Summary 105


20101013 - Ballard, Web site usability...educational web sites

Web site usability: A case study of student perceptions of educational web sites

by Ballard, Joyce Kimberly, Ph.D., University of Minnesota, 2010 , 408 pages; AAT 3408366



My Interest:

1) Nielsen's Heuristics.

2) Xerox Heuristic Evaluation Checklist.

3) Computer Use/User Self-Efficacy Scale.

4) Quality of Web-based Instruction.

5) Usability Testing – think-aloud protocol.

6) Usability Testing – eye tracking.

7) Usability Testing – time-error log.

8) Methodology of data analysis.

9) Theoretical framework.

10) Validity & reliability.


Action:

To read the Dissertation in future.



Research Goal


The purpose of this research study was to understand the construct of usability from the perspective of 74 students enrolled in six online courses offered by one online and distance learning program at a large, public university in the Midwest.


Methodology


Six courses, designed and developed by two different groups, professional and nonprofessional developers, were selected. The study used both quantitative and qualitative measures to record the experiences of students enrolled in the six online courses.


First, the courses were evaluated using Nielsen's (1994, 2000, 2002) heuristics as operationalized by the Xerox Heuristic Evaluation Checklist (1995) as a standard measure of usability, then rank-ordered by heuristic evaluation score.


Comments: I would love to see this Xerox Heuristic Evaluation Checklist. I suppose this is a UET (usability evaluation tool) for UEM = heuristic evaluation. Would love to know WHAT are the usability criteria (heuristics) used in this Checklist.


Eachus and Cassidy's (2006) Computer Use Self-efficacy Scale was used as a pre-course survey to measure students' computer self-efficacy prior to beginning their online course.


Comments: Would like to see the details of Computer Use/User Self-Efficacy Scale.


Stewart, Hong, and Strudler's (2004) Quality of Web-based Instruction was used as a post-course survey to measure student satisfaction with their online course experience.


A subset of 29 students participated in usability testing sessions in the usability lab. A think-aloud protocol provided qualitative data in the form of verbal reports, eye-tracking recordings provided data confirming the think-aloud protocol data, and a time-error log provided "time to complete tasks," and "error rate" data as students completed seven typical tasks required to successfully participate in an online course. A summary, debriefing interview with each student was conducted to record any additional student comments and any student recommendations for improving the courses.


Qualitative data were examined for themes and a coding scheme was created. This coding scheme, which illustrated the issues specific to educational web sites, was compared to Nielsen's (1994, 2000, 2002) heuristics to evaluate whether Nielsen's (1994, 2000, 2002) heuristics, widely accepted as the standard for the design and development of business and commercial websites, also apply to educational web sites.


Comments: I will want to review her Guidelines for educational web sites. These can be correlated with learning-related usability criteria.


Design and development guidelines for educational web sites were written by the researcher based on the study findings. These guidelines were mapped to Nielsen's heuristics as operationalized by the Xerox Heuristic Evaluation Checklist (1995).


Results Discussion


The results of the quantitative and qualitative measures used were analyzed by course and course development type. The most significant results of this study came from the analysis of the variables according to course development type.


The results of the study findings include that the course design type, professional or nonprofessional, was related to usability as measured by students' error rates, Nielsen's heuristic evaluation scores, and student satisfaction scores. The professionally-developed courses were found to be significantly higher in usability than the non-professionally-developed courses by task error rate, Nielsen's heuristic evaluation score and student satisfaction scores.


The analysis of students' verbal reports resulted in three times as many positive comments for the professionally-developed courses when compared to the positive comments for the non-professionally-developed courses.


The results of the quantitative and qualitative measures used were also analyzed by course. When comparisons were made between courses using courses as the unit of analysis the findings were different.


The rank-order of courses was mixed between course types when compared by error rates. The Nielsen's heuristic evaluation scores as measures of usability for educational web sites were not consistent with students' judgments of course usability as measured by error rate scores. There was no relationship between the usability ranking of courses by Nielsen's heuristics and usability as judged by students' error rates.


However, an analysis of students' verbal reports identified 52 common themes and confirmed the importance of Nielsen's heuristics in educational course design.


Comments: She has found that Nielsen's heuristics are important and relevant for educational course design and educational websites. This is a good support for my literature review.


The correlation between the self-efficacy score and error rate means was nonsignificant. The correlation between self-efficacy and error rate was small; very close to zero. There was a small positive correlation between student satisfaction and usability as measured by error rates.


Conclusion


Based on the analysis of the study variables according to course development type, the results of this study found that Nielsen's usability heuristics, a respected evaluation tool used primarily to measure the usability of commercial web sites, can be used to evaluate instructional web sites and used to differentiate between levels of usability in the same way usability is judged by students.



Chapter Two 14

Review of the Literature 14

Theoretical Framework 15

Usability. 17

Defining Usability 18

Usability and Web-based Instruction 19

Web-based Instruction and Instructional Design 21

Instructional Design 23

Defining Instructional Design 24

The Need to Evaluate Design and Quality 26

Instructional Design Differences . 29

Usability and Aesthetics 32

Usability Guidelines for Interface Design 34

Summary 35


Chapter Three 37

Research Method 37

Introduction . 37

Research Questions and Data Collection . 38

Rationale of the Methodology 41

Xerox Heuristics Evaluation: A System Checklist 42

Rationale 42

Validity . 44

Reliability 48

Method 48

Survey One Computer User Self-efficacy Scale (CUSE) 50

Rationale 50

Validity 52

Reliability 52

Survey Two Student Evaluation of the Quality of Web-Based Instruction 52

Rationale 52

Validity . 54

Reliability 54

Institutional context . 55

Institution . 55

College 55

Online Distance Education Program . 56

Course Management Systems 56

Course Selection 57

Student Selection/Recruitment . 60

IRB Approval 61

Recruitment Procedures 61

Data Collection Procedures . 62

General Collection Procedures . 63

Volunteers for Usability Testing . 64

Follow-up Attempts 65

Quantitative Data Collection 65

Timing of Instrument Use 65

Qualitative Data Collection . 66

Timing of Usability Testing 66

Qualitative Data from the Usability Testing Sessions 67

Usability Testing 67

Usability Testing Site 67

Pre-determined Tasks 69

Think-aloud Protocols 69

Time Log, Video, Audio, & Eye-tracking Data Collection 72

Time Log Data 72

Video, Audio, and Eye-tracking Data 73

Error Log . 75

Summary Interview 77

Post-course Student Evaluation of the Quality of Web-Based Instruction 77

Limitations of the Study 77

Summary 78


Chapter Four . 81

Research Findings 81

Research Questions 83

Summary 114


Tuesday, September 28, 2010

20100928 - Devey, ...Heuristic Formative Evaluation of an Online Course...

The e-volving practioner: A heuristic formative evaluation of an online course based on an action research methodology

by Devey, Patrick L., M.A., Concordia University (Canada), 2002 , 199 pages; AAT MQ72844


My Interest:

1) Heuristic formative evaluation.

2) Context – online course.

3) Action research methodology.


Action:

To read specific parts of dissertation in future.



Motivation


Teachers using traditional classroom methodologies have had the option to consult with vast amounts of literature and research, not to mention the diverse and extensive knowledge of their colleagues, when in need of inspiration for their courses.

On the other hand, due to the fact that online instruction is still in its infancy, instructors who delve into e-Learning do not have the same luxury. The nominal amount of research in that field usually ends with recommendations and possible remedies to encountered problems, as opposed to practical solutions or "cures" to the identified issues.


Research Goal


This thesis will make use of those limited studies, and combine that knowledge to the experience of practitioners in the field, as well as with the feedback from the participants in the e-Learning environment, in order to devise a set of successful practices for an undergraduate statistics course offered entirely online.

In other words, this research aims to successfully implement practical procedures into a Web-based course in order to make it the best possible experience for everyone involved.


Contribution of Knowledge


In accomplishing these goals, this work could then serve as a resource for other practitioners in the field by providing them not just with recommendations for Web-based courses, but also with concrete, proven, and successful interventions in this particular environment.



Comment: Softcopy Dissertation is scanned version; cannot copy and paste; difficult to to blog about it.



Chapter Two: Literature Review


Chapter Three: Methodology and Results

Friday, September 24, 2010

20100925 - Ssemugabi, Usabiity Evaluation of Web-based e-Learning...

Usability evaluation of a Web-based elearning application: A study of two evaluation methods

by Ssemugabi, Samuel, M.Sc., University of South Africa (South Africa), 2007; AAT 0668384


My Interest:

1) Set of usability criteria/heuristics.

2) Heuristic evaluation by experts.

3) User evaluation by learners.

4) Methodology of comparison of heuristic evaluation & user evaluation.


Action:

To download his Dissertation.

To read his Dissertation in future.



Problem Statement


Despite widespread use of web-based e-learning applications, insufficient attention is paid to their usability. There is a need to conduct evaluation using one or more of the various usability evaluation methods.


Research Goal


Given that heuristic evaluation is known to be easy to use and cost effective, this study investigates the extent to which it can identify usability problems in a webbased e-learning application at a tertiary institution.


Methodology


In a comparative case study, heuristic evaluation by experts and survey evaluation among end users (learners) are conducted and the results of the two compared.


Following literature studies in e-learning--particularly web-based learning--and usability, the researcher generates an extensive set of criteria/heuristics and uses it in the two evaluations.


Results Discussion


The findings indicate a high correspondence between the results of the two evaluations, demonstrating that HE is an appropriate, effective and sufficient usability evaluation method, as well as relatively easy to conduct.


Comments: I have not downloaded his Dissertation yet. Need to do so because I intent to read in detail.

20100925 - Olarte Enciso, ...Heuristic Evaluation of PDA Application...

Development and usability heuristic evaluation of an application in PDA for supporting physicians tasks at the point of care

by Olarte Enciso, Nadia Elizabeth, M.E., University of Puerto Rico, Mayaguez (Puerto Rico), 2008 , 121 pages; AAT 1451346


My Interest:

1) Usability.

2) Heuristic evaluation using Nielsen's 10 Heuristics.

3) Test/validate/evaluate the application.


Action:

To read the Dissertation in the future.



Research Goal


The main goal of this project was to develop a PDA based application to support physicians' documentation tasks at the point of care in hospitals.


Motivation


Nowadays, software for portable devices, such as the PDA, is commonly used among physicians in hospitals. This is indicative that physicians are probably accustomed to this type of technology and that it will not be an obstacle for them to use a PDA based clinical documentation application to perform their tasks related to patient care.


Development of Tool/Application


The application developed supports most of the physician's documentation tasks such as viewing the patient's record, performing medical orders, and entering progress notes. This makes the application a very useful and an important tool for the physicians in the hospitals in Puerto Rico.


Comments: She tested/validated the application by performing a heuristic evaluation using Nielsen's Ten Heuristic Principles.



Chapter 4: Usability Aspects

4.1. Introduction

4.2. Usability Aspect in the Lifecycle of the Application

4.3. Usability Aspect in the Interface of the Application

4.3.1. Visibility of System Status

4.3.2. Match between System and the Real World

4.3.3. User Control and Freedom

4.3.4. Consistency and Standards

4.3.5. Error Prevention

4.3.6. Recognition Rather than Recall

4.3.7. Flexibility and Efficiency of Use

4.3.8. Aesthetic and minimalist design

4.3.9. Help users recognize, diagnose, and recover from error


Chapter 5: Usability Evaluation

5.1. Introduction

5.2. Procedure of the Heuristic Evaluation

5.3. Result of the Heuristic Evaluation

5.4. Redesign of the Application