The Math–Biology Values Instrument: Development of a Tool to Measure Life Science Majors’ Task Values of Using Math in the Context of Biology
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[1] E. Dolan,et al. Teaching quantitative biology: goals, assessments, and resources , 2014, Molecular biology of the cell.
[2] Jennifer A. Fredricks,et al. Children's competence and value beliefs from childhood through adolescence: growth trajectories in two male-sex-typed domains. , 2002, Developmental psychology.
[3] Kelly E. Matthews,et al. Using the Principles of BIO2010 to Develop an Introductory, Interdisciplinary Course for Biology Students , 2010, CBE life sciences education.
[4] Mary Lee S. Ledbetter,et al. Vision and Change in Undergraduate Biology Education: A Call to Action Presentation to Faculty for Undergraduate Neuroscience, July 2011 , 2012, Journal of undergraduate neuroscience education : JUNE : a publication of FUN, Faculty for Undergraduate Neuroscience.
[5] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[6] Doron Levy,et al. Infusing quantitative approaches throughout the biological sciences curriculum , 2013 .
[7] J. H. Steiger. Structural Model Evaluation and Modification: An Interval Estimation Approach. , 1990, Multivariate behavioral research.
[8] B. Nagengast,et al. More value through greater differentiation: Gender differences in value beliefs about math. , 2014 .
[9] Kristina L. Matarazzo,et al. The effect of humorous instructional materials on interest in a math task , 2010 .
[10] Gregory A. Moyerbrailean,et al. 1, 2, 3, 4: Infusing Quantitative Literacy into Introductory Biology , 2010, CBE life sciences education.
[11] P. Bentler,et al. Cutoff criteria for fit indexes in covariance structure analysis : Conventional criteria versus new alternatives , 1999 .
[12] Chris S. Hulleman,et al. Enhancing interest and performance with a utility value intervention. , 2010 .
[13] Jacquelynne S Eccles,et al. Math and science motivation: A longitudinal examination of the links between choices and beliefs. , 2006, Developmental psychology.
[14] Sian L. Beilock,et al. The role of expressive writing in math anxiety. , 2014, Journal of experimental psychology. Applied.
[15] Pirjo Aunio,et al. Gendered pathways to educational aspirations: The role of academic self-concept, school burnout, achievement and interest in mathematics and reading , 2016 .
[16] James H. Steiger,et al. Understanding the limitations of global fit assessment in structural equation modeling , 2007 .
[17] Chris S. Hulleman,et al. Measuring cost: The forgotten component of expectancy-value theory , 2015 .
[18] Brian P. Coppola,et al. Skill and will: The role of motivation and cognition in the learning of college chemistry , 2003 .
[19] Kelly E. Matthews,et al. Putting it into perspective: mathematics in the undergraduate science curriculum , 2009 .
[20] Jennifer M Doran,et al. The Alliance Negotiation Scale: A psychometric investigation. , 2016, Psychological assessment.
[21] Jennifer G. Cromley,et al. The role of identity development, values, and costs in college STEM retention , 2014 .
[22] Tiffany A. Whittaker,et al. Scale Development Research , 2006 .
[23] Anne-Marie Hoskinson. How to Build a Course in Mathematical–Biological Modeling: Content and Processes for Knowledge and Skill , 2010, CBE life sciences education.
[24] Edith Seier,et al. SYMBIOSIS: Development, Implementation, and Assessment of a Model Curriculum across Biology and Mathematics at the Introductory Level , 2010, CBE life sciences education.
[25] Bruce W. Callen,et al. The Mathematics Value Inventory for General Education Students: Development and Initial Validation , 2010 .
[26] D. Marlowe,et al. A new scale of social desirability independent of psychopathology. , 1960, Journal of consulting psychology.
[27] David A. Bergin,et al. Predicting student achievement for low stakes tests with effort and task value , 2008 .
[28] Diana Adler,et al. Using Multivariate Statistics , 2016 .
[29] Ulrich Schiefele,et al. Interest, Learning, and Motivation , 1991 .
[30] J. Ruscio,et al. Determining the number of factors to retain in an exploratory factor analysis using comparison data of known factorial structure. , 2012, Psychological assessment.
[31] Harold B. White,et al. A Transformative Model for Undergraduate Quantitative Biology Education , 2010, CBE life sciences education.
[32] Ulrich Trautwein,et al. Probing for the Multiplicative Term in Modern Expectancy-Value Theory: A Latent Interaction Modeling Study. , 2012 .
[33] Todd D. Reeves,et al. Contemporary Test Validity in Theory and Practice: A Primer for Discipline-Based Education Researchers , 2016, CBE life sciences education.
[34] J. Eccles,et al. Age and gender differences in children's self- and task perceptions during elementary school. , 1993, Child development.
[35] Sanlyn Buxner,et al. Integrating Quantitative Thinking into an Introductory Biology Course Improves Students’ Mathematical Reasoning in Biological Contexts , 2014, CBE life sciences education.
[36] Peter M. Bentler,et al. EQS : structural equations program manual , 1989 .
[37] Irina Makarevitch,et al. Authentic Research Experience and “Big Data” Analysis in the Classroom: Maize Response to Abiotic Stress , 2015, CBE life sciences education.
[38] Jacquelynne S. Eccles,et al. The Relation of Early Adolescents’ College Plans and Both Academic Ability and Task-Value Beliefs to Subsequent College Enrollment , 2004 .
[39] Stephen Reysen,et al. Further validation of a single‐item measure of social identification , 2013 .
[40] Lisette de Pillis,et al. Mathematical Biology at an Undergraduate Liberal Arts College , 2010, CBE life sciences education.
[41] Brett D. Jones,et al. An Analysis of Motivation Constructs with First‐Year Engineering Students: Relationships Among Expectancies, Values, Achievement, and Career Plans , 2010 .
[42] Dwight Duffus,et al. Introductory Life Science Mathematics and Quantitative Neuroscience Courses , 2010, CBE life sciences education.
[43] Joseph C. Watkins. On a Calculus-based Statistics Course for Life Science Students , 2010, CBE life sciences education.
[44] A. Krapp. Interest, motivation and learning: An educational-psychological perspective , 1999 .
[45] Bruce Wightman,et al. Integration of bioinformatics into an undergraduate biology curriculum and the impact on development of mathematical skills , 2012, Biochemistry and molecular biology education : a bimonthly publication of the International Union of Biochemistry and Molecular Biology.
[46] Chris Arney. Math & Bio 2010: Linking Undergraduate Disciplines , 2009 .
[47] E. Deci,et al. Intrinsic and Extrinsic Motivations: Classic Definitions and New Directions. , 2000, Contemporary educational psychology.
[48] Hillel J. Chiel,et al. From Biology to Mathematical Models and Back: Teaching Modeling to Biology Students, and Biology to Math and Engineering Students , 2010, CBE life sciences education.
[49] J. Eccles,et al. Motivational beliefs, values, and goals. , 2002, Annual review of psychology.
[50] Allan Wigfield,et al. Students' achievement values, goal orientations, and interest: Definitions, development, and relations to achievement outcomes , 2010 .
[51] D. Paulhus. Measurement and control of response bias. , 1991 .
[52] Division on Earth. BIO2010: Transforming Undergraduate Education for Future Research Biologists , 2003 .
[53] Yves Rosseel,et al. lavaan: An R Package for Structural Equation Modeling , 2012 .
[54] T. J. Berndt,et al. Expectancies, values, and achievement in junior high school. , 1990 .
[55] Sandra BRITTON. ARE STUDENTS ABLE TO TRANSFER MATHEMATICAL KNOWLEDGE ? , .
[56] S. Hidi,et al. Revisiting the Conceptualization, Measurement, and Generation of Interest , 2011 .
[57] Chris S. Hulleman,et al. Promoting Interest and Performance in High School Science Classes , 2009, Science.
[58] Woogul Lee,et al. Testing interest and self-efficacy as predictors of academic self-regulation and achievement , 2014 .
[59] Raina Robeva,et al. Mathematical Biology Modules Based on Modern Molecular Biology and Modern Discrete Mathematics , 2010, CBE life sciences education.
[60] M. Miller,et al. Sample Size Requirements for Structural Equation Models , 2013, Educational and psychological measurement.
[61] Anneke M Metz,et al. Teaching statistics in biology: using inquiry-based learning to strengthen understanding of statistical analysis in biology laboratory courses. , 2008, CBE life sciences education.
[62] Walter L. Leite,et al. A Reliability Generalization Study of the Marlowe-Crowne Social Desirability Scale , 2002 .
[63] AnneMarie Conley,et al. Patterns of motivation beliefs: Combining achievement goal and expectancy-value perspectives , 2012 .
[64] Andreas Madlung,et al. A Study Assessing the Potential of Negative Effects in Interdisciplinary Math–Biology Instruction , 2011, CBE life sciences education.
[65] Kathy Dowell,et al. Development and Assessment of Modules to Integrate Quantitative Skills in Introductory Biology Courses , 2016, CBE life sciences education.
[66] Arjun Bhalla,et al. The development and initial psychometric validation of the eHealth readiness scale , 2016, Comput. Hum. Behav..
[67] J. Eccles. Expectancies, values and academic behaviors , 1983 .
[68] Allan Wigfield,et al. College Women's Value Orientations toward Family, Career, and Graduate School. , 2003 .
[69] A. Janetos. A New Biology for the 21st Century , 2009 .
[70] Jacquelynne S. Eccles,et al. Predictors of math anxiety and its influence on young adolescents' course enrollment intentions and performance in mathematics , 1990 .
[71] J. Harackiewicz,et al. Closing achievement gaps with a utility-value intervention: Disentangling race and social class. , 2016, Journal of personality and social psychology.
[72] Phyllis C. Blumenfeld,et al. Change in Children's Competence Beliefs and Subjective Task Values across the Elementary School Years: A 3-Year Study. , 1997 .
[73] Jason W. Osborne,et al. Best practices in exploratory factor analysis: four recommendations for getting the most from your analysis. , 2005 .
[74] J. Eccles,et al. Expectancy-Value Theory of Achievement Motivation. , 2000, Contemporary educational psychology.
[75] Karla J. Oty,et al. The effect of an interdisciplinary algebra/science course on students' problem solving skills, critical thinking skills and attitudes towards mathematics , 2001 .
[76] Migdalisel Colon-Berlingeri,et al. Teaching Biology through Statistics: Application of Statistical Methods in Genetics and Zoology Courses , 2011, CBE life sciences education.
[77] J. Meece,et al. Sex differences in achievement: A test of alternate theories. , 1984 .
[78] K. E. Barron,et al. The Role of Achievement Goals in the Development of Interest: Reciprocal Relations Between Achievement Goals, Interest, and Performance , 2008 .
[79] Gili Marbach-Ad,et al. Online Interactive Teaching Modules Enhance Quantitative Proficiency of Introductory Biology Students , 2010, CBE life sciences education.
[80] Dorothy Wallace,et al. Calculus, Biology and Medicine: A Case Study in Quantitative Literacy for Science Students , 2011 .
[81] Mimi Bong,et al. Role of Self-Efficacy and Task-Value in Predicting College Students' Course Performance and Future Enrollment Intentions. , 2001, Contemporary educational psychology.
[82] Mary Ann Hoffman,et al. Development and Validation of the Counselor Activity Self-Efficacy Scales , 2003 .
[83] Karl G. Jöreskog,et al. Lisrel 8: Structural Equation Modeling With the Simplis Command Language , 1993 .