Evaluating instructional labs’ use of deliberate practice to teach critical thinking skills

The goals for lab instruction are receiving critical attention in the physics education community due to multiple reports and research findings. In this paper, we describe a theoretically motivated scheme to evaluate instructional lab curricula and apply that scheme to three implementations of an el...

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Published inPhysical review. Physics education research Vol. 16; no. 2; pp. 020150 - 20166
Main Authors Smith, Emily M., Holmes, N. G.
Format Journal Article
LanguageEnglish
Published College Park American Physical Society 04.12.2020
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Abstract The goals for lab instruction are receiving critical attention in the physics education community due to multiple reports and research findings. In this paper, we describe a theoretically motivated scheme to evaluate instructional lab curricula and apply that scheme to three implementations of an electricity and magnetism lab curriculum. The scheme has three components: (1) that critical thinking is a context-dependent process for using critical thinking skills to make evidence-based decisions (2) that to make decisions one must have agency and (3) that deliberate practice can be used to effectively teach critical thinking skills. We use this scheme to evaluate the lab instructions for three sets of instructional labs for their use of deliberate practice for teaching critical thinking skills through varied opportunities for students to exercise agency in making decisions about experiments. Our analysis shows that our curricular design did target the experimentation-focused critical thinking skills, but did not strongly align with theoretical recommendations for deliberate practice. The results provide suggestions for improvements to curricular design. For curriculum developers, instructors, and researchers who intend to teach critical thinking in the context of experimental physics, this scheme serves as a tool to create and evaluate lab instructions in terms of the ways in which specific skills are supported through deliberate practice.
AbstractList The goals for lab instruction are receiving critical attention in the physics education community due to multiple reports and research findings. In this paper, we describe a theoretically motivated scheme to evaluate instructional lab curricula and apply that scheme to three implementations of an electricity and magnetism lab curriculum. The scheme has three components: (1) that critical thinking is a context-dependent process for using critical thinking skills to make evidence-based decisions (2) that to make decisions one must have agency and (3) that deliberate practice can be used to effectively teach critical thinking skills. We use this scheme to evaluate the lab instructions for three sets of instructional labs for their use of deliberate practice for teaching critical thinking skills through varied opportunities for students to exercise agency in making decisions about experiments. Our analysis shows that our curricular design did target the experimentation-focused critical thinking skills, but did not strongly align with theoretical recommendations for deliberate practice. The results provide suggestions for improvements to curricular design. For curriculum developers, instructors, and researchers who intend to teach critical thinking in the context of experimental physics, this scheme serves as a tool to create and evaluate lab instructions in terms of the ways in which specific skills are supported through deliberate practice.
The goals for lab instruction are receiving critical attention in the physics education community due to multiple reports and research findings. In this paper, we describe a theoretically motivated scheme to evaluate instructional lab curricula and apply that scheme to three implementations of an electricity and magnetism lab curriculum. The scheme has three components: (1) that critical thinking is a context-dependent process for using critical thinking skills to make evidence-based decisions (2) that to make decisions one must have agency and (3) that deliberate practice can be used to effectively teach critical thinking skills. We use this scheme to evaluate the lab instructions for three sets of instructional labs for their use of deliberate practice for teaching critical thinking skills through varied opportunities for students to exercise agency in making decisions about experiments. Our analysis shows that our curricular design did target the experimentation-focused critical thinking skills, but did not strongly align with theoretical recommendations for deliberate practice. The results provide suggestions for improvements to curricular design. For curriculum developers, instructors, and researchers who intend to teach critical thinking in the context of experimental physics, this scheme serves as a tool to create and evaluate lab instructions in terms of the ways in which specific skills are supported through deliberate practice.
ArticleNumber 020150
Author Smith, Emily M.
Holmes, N. G.
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Cites_doi 10.1207/s15328023top2201_21
10.1119/1.4768890
10.1080/09500693.2019.1616124
10.1119/1.18915
10.5539/hes.v4n1p1
10.1037/0003-066X.37.2.122
10.3200/CTCH.53.1.41-48
10.1037/0003-066X.44.9.1175
10.1119/1.3023655
10.1103/PhysRevSTPER.4.020108
10.3102/00346543052002201
10.1002/sce.21188
10.1119/1.1881253
10.3102/0013189X018003004
10.1016/j.edurev.2017.09.002
10.1103/PhysRevSTPER.2.020103
10.1002/tea.21409
10.1002/tea.3660140106
10.1088/1361-6404/aaf13b
10.1207/s15516709cog1202_4
10.1007/s10940-009-9065-y
10.1088/0143-0807/29/3/024
10.1037/0033-295X.100.3.363
10.1119/1.5098916
10.1037/0003-066X.53.4.449
10.22329/il.v14i2.2538
10.1002/sce.10106
10.4135/9780857024480
10.1073/pnas.1505329112
10.1016/j.dr.2006.12.001
10.1002/sce.20390
10.1111/1467-8721.00064
10.1103/PhysRevSTPER.11.020113
10.1007/s11191-006-9045-7
10.1016/j.paid.2013.09.026
10.1177/1028315307302839
10.5840/teachphil19911412
10.3102/0034654314551063
10.1088/1361-6552/aacf23
10.1119/1.4999742
10.1207/s15327809jls0603_1
10.1080/0950069930150406
10.1111/1467-9752.12175
10.1002/tea.21229
10.1017/CBO9780511816796
10.1002/tea.20020
10.1063/PT.3.3816
10.1111/1467-9752.00270
10.1103/PhysRevPhysEducRes.16.010109
10.1119/1.1616479
10.1007/s11165-011-9267-9
10.1103/PhysRevPhysEducRes.13.020125
10.1103/PhysRevPhysEducRes.13.020106
10.1103/PhysRevPhysEducRes.12.010130
10.5840/inquiryctnews20112613
10.17226/18290
10.1086/231294
10.3102/0034654308326084
10.3200/AEPR.109.4.21-32
10.22329/il.v18i2.2378
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References K. A. Ericsson (PhysRevPhysEducRes.16.020150Cc63R1) 2006
M. Lipman (PhysRevPhysEducRes.16.020150Cc22R1) 1988; 46
D. N. Perkins (PhysRevPhysEducRes.16.020150Cc36R1) 1993; 39
PhysRevPhysEducRes.16.020150Cc12R1
PhysRevPhysEducRes.16.020150Cc33R1
PhysRevPhysEducRes.16.020150Cc58R1
PhysRevPhysEducRes.16.020150Cc79R1
PhysRevPhysEducRes.16.020150Cc35R1
PhysRevPhysEducRes.16.020150Cc56R1
PhysRevPhysEducRes.16.020150Cc77R1
PhysRevPhysEducRes.16.020150Cc16R1
S. Titscher (PhysRevPhysEducRes.16.020150Cc86R1) 2000
PhysRevPhysEducRes.16.020150Cc18R1
PhysRevPhysEducRes.16.020150Cc39R1
PhysRevPhysEducRes.16.020150Cc50R1
PhysRevPhysEducRes.16.020150Cc71R1
PhysRevPhysEducRes.16.020150Cc54R1
PhysRevPhysEducRes.16.020150Cc75R1
PhysRevPhysEducRes.16.020150Cc10R1
PhysRevPhysEducRes.16.020150Cc52R1
PhysRevPhysEducRes.16.020150Cc73R1
(PhysRevPhysEducRes.16.020150Cc4R1) 2016
L. S. Vygotsky (PhysRevPhysEducRes.16.020150Cc67R1) 1934
E. Etkina (PhysRevPhysEducRes.16.020150Cc7R1) 2007
PhysRevPhysEducRes.16.020150Cc1R1
PhysRevPhysEducRes.16.020150Cc46R1
PhysRevPhysEducRes.16.020150Cc69R1
PhysRevPhysEducRes.16.020150Cc44R1
R. D. Dick (PhysRevPhysEducRes.16.020150Cc32R1) 1991; 18
D. L. Schwartz (PhysRevPhysEducRes.16.020150Cc65R1) 2016
PhysRevPhysEducRes.16.020150Cc27R1
P. A. Facione (PhysRevPhysEducRes.16.020150Cc37R1) 1995; 44
PhysRevPhysEducRes.16.020150Cc88R1
U. Zoller (PhysRevPhysEducRes.16.020150Cc48R1) 2012
PhysRevPhysEducRes.16.020150Cc29R1
PhysRevPhysEducRes.16.020150Cc61R1
PhysRevPhysEducRes.16.020150Cc84R1
M. D. Caballero (PhysRevPhysEducRes.16.020150Cc2R1) 2018; 27
D. Doucette (PhysRevPhysEducRes.16.020150Cc9R1) 2018
PhysRevPhysEducRes.16.020150Cc42R1
L. B. Buck (PhysRevPhysEducRes.16.020150Cc72R1) 2008; 38
PhysRevPhysEducRes.16.020150Cc80R1
PhysRevPhysEducRes.16.020150Cc21R1
PhysRevPhysEducRes.16.020150Cc40R1
PhysRevPhysEducRes.16.020150Cc82R1
P. A. Facione (PhysRevPhysEducRes.16.020150Cc23R1) 1990
J. Osborne (PhysRevPhysEducRes.16.020150Cc51R1) 2014; 95
R. H. Ennis (PhysRevPhysEducRes.16.020150Cc20R1) 1985; 65
R. W. Paul (PhysRevPhysEducRes.16.020150Cc25R1) 1990
PhysRevPhysEducRes.16.020150Cc11R1
PhysRevPhysEducRes.16.020150Cc57R1
PhysRevPhysEducRes.16.020150Cc55R1
PhysRevPhysEducRes.16.020150Cc78R1
PhysRevPhysEducRes.16.020150Cc13R1
PhysRevPhysEducRes.16.020150Cc38R1
PhysRevPhysEducRes.16.020150Cc15R1
PhysRevPhysEducRes.16.020150Cc59R1
R. H. Ennis (PhysRevPhysEducRes.16.020150Cc19R1) 1962; 32
S. A. Ambrose (PhysRevPhysEducRes.16.020150Cc66R1) 2010
PhysRevPhysEducRes.16.020150Cc70R1
PhysRevPhysEducRes.16.020150Cc30R1
(PhysRevPhysEducRes.16.020150Cc45R1) 2013
PhysRevPhysEducRes.16.020150Cc76R1
(PhysRevPhysEducRes.16.020150Cc5R1) 2015
PhysRevPhysEducRes.16.020150Cc74R1
M. N. Browne (PhysRevPhysEducRes.16.020150Cc31R1) 1978; 49
PhysRevPhysEducRes.16.020150Cc8R1
PhysRevPhysEducRes.16.020150Cc6R1
S. D. Ivie (PhysRevPhysEducRes.16.020150Cc34R1) 2001; 72
(PhysRevPhysEducRes.16.020150Cc3R1) 2012
M. Luck (PhysRevPhysEducRes.16.020150Cc53R1) 1995
PhysRevPhysEducRes.16.020150Cc47R1
D. Evangelinos (PhysRevPhysEducRes.16.020150Cc14R1) 2002
PhysRevPhysEducRes.16.020150Cc26R1
PhysRevPhysEducRes.16.020150Cc49R1
B. K. Beyer (PhysRevPhysEducRes.16.020150Cc28R1) 1984; 65
PhysRevPhysEducRes.16.020150Cc60R1
PhysRevPhysEducRes.16.020150Cc85R1
PhysRevPhysEducRes.16.020150Cc87R1
(PhysRevPhysEducRes.16.020150Cc68R1) 2012
PhysRevPhysEducRes.16.020150Cc43R1
PhysRevPhysEducRes.16.020150Cc64R1
PhysRevPhysEducRes.16.020150Cc81R1
J. G. Kurfiss (PhysRevPhysEducRes.16.020150Cc24R1) 1988
PhysRevPhysEducRes.16.020150Cc41R1
PhysRevPhysEducRes.16.020150Cc62R1
PhysRevPhysEducRes.16.020150Cc83R1
References_xml – ident: PhysRevPhysEducRes.16.020150Cc33R1
  doi: 10.1207/s15328023top2201_21
– volume: 65
  start-page: 556
  year: 1984
  ident: PhysRevPhysEducRes.16.020150Cc28R1
  publication-title: Phi Delta Kappan
– volume-title: Engage to Excel: Producing One Million Additional College Graduates with Degrees in Science, Technology, Engineering, and Mathematics
  year: 2012
  ident: PhysRevPhysEducRes.16.020150Cc3R1
– ident: PhysRevPhysEducRes.16.020150Cc8R1
  doi: 10.1119/1.4768890
– ident: PhysRevPhysEducRes.16.020150Cc44R1
  doi: 10.1080/09500693.2019.1616124
– volume-title: Proceedings of the First International Conference on Multiagent Systems
  year: 1995
  ident: PhysRevPhysEducRes.16.020150Cc53R1
– ident: PhysRevPhysEducRes.16.020150Cc10R1
  doi: 10.1119/1.18915
– volume-title: Critical Thinking: Theory, Research, Practice, and Possibilities
  year: 1988
  ident: PhysRevPhysEducRes.16.020150Cc24R1
– volume: 39
  start-page: 1
  issn: 0272-930X
  year: 1993
  ident: PhysRevPhysEducRes.16.020150Cc36R1
  publication-title: Merrill-Palmer Q.
– ident: PhysRevPhysEducRes.16.020150Cc38R1
  doi: 10.5539/hes.v4n1p1
– ident: PhysRevPhysEducRes.16.020150Cc58R1
  doi: 10.1037/0003-066X.37.2.122
– ident: PhysRevPhysEducRes.16.020150Cc64R1
  doi: 10.3200/CTCH.53.1.41-48
– ident: PhysRevPhysEducRes.16.020150Cc52R1
  doi: 10.1037/0003-066X.44.9.1175
– volume-title: Teaching and Learning in the Science Laboratory
  year: 2002
  ident: PhysRevPhysEducRes.16.020150Cc14R1
– volume-title: Education for Life and Work: Developing Transferable Knowledge and Skills in the 21st Century
  year: 2012
  ident: PhysRevPhysEducRes.16.020150Cc68R1
– ident: PhysRevPhysEducRes.16.020150Cc74R1
  doi: 10.1119/1.3023655
– volume-title: The Complete American Philosophical Association Delphi Research Report
  year: 1990
  ident: PhysRevPhysEducRes.16.020150Cc23R1
– ident: PhysRevPhysEducRes.16.020150Cc80R1
  doi: 10.1103/PhysRevSTPER.4.020108
– ident: PhysRevPhysEducRes.16.020150Cc43R1
  doi: 10.3102/00346543052002201
– ident: PhysRevPhysEducRes.16.020150Cc47R1
  doi: 10.1002/sce.21188
– volume: 27
  year: 2018
  ident: PhysRevPhysEducRes.16.020150Cc2R1
  publication-title: APS News
– ident: PhysRevPhysEducRes.16.020150Cc73R1
  doi: 10.1119/1.1881253
– ident: PhysRevPhysEducRes.16.020150Cc40R1
  doi: 10.3102/0013189X018003004
– volume: 65
  start-page: 28
  year: 1985
  ident: PhysRevPhysEducRes.16.020150Cc20R1
  publication-title: Phi Kappa Phi J.
– volume: 18
  start-page: 79
  year: 1991
  ident: PhysRevPhysEducRes.16.020150Cc32R1
  publication-title: J. Instruct. Psychol.
– ident: PhysRevPhysEducRes.16.020150Cc85R1
  doi: 10.1016/j.edurev.2017.09.002
– ident: PhysRevPhysEducRes.16.020150Cc49R1
  doi: 10.1103/PhysRevSTPER.2.020103
– ident: PhysRevPhysEducRes.16.020150Cc71R1
  doi: 10.1002/tea.21409
– ident: PhysRevPhysEducRes.16.020150Cc77R1
  doi: 10.1002/tea.3660140106
– volume-title: The Collected Works of L. S. Vygotsky
  year: 1934
  ident: PhysRevPhysEducRes.16.020150Cc67R1
– ident: PhysRevPhysEducRes.16.020150Cc11R1
  doi: 10.1088/1361-6404/aaf13b
– volume-title: Phys21: Preparing Physics Students for 21st Century Careers
  year: 2016
  ident: PhysRevPhysEducRes.16.020150Cc4R1
– ident: PhysRevPhysEducRes.16.020150Cc88R1
  doi: 10.1207/s15516709cog1202_4
– volume: 44
  start-page: 1
  year: 1995
  ident: PhysRevPhysEducRes.16.020150Cc37R1
  publication-title: J. Gen. Educ.
– ident: PhysRevPhysEducRes.16.020150Cc56R1
  doi: 10.1007/s10940-009-9065-y
– ident: PhysRevPhysEducRes.16.020150Cc79R1
  doi: 10.1088/0143-0807/29/3/024
– ident: PhysRevPhysEducRes.16.020150Cc62R1
  doi: 10.1037/0033-295X.100.3.363
– ident: PhysRevPhysEducRes.16.020150Cc82R1
  doi: 10.1119/1.5098916
– ident: PhysRevPhysEducRes.16.020150Cc30R1
  doi: 10.1037/0003-066X.53.4.449
– ident: PhysRevPhysEducRes.16.020150Cc35R1
  doi: 10.22329/il.v14i2.2538
– ident: PhysRevPhysEducRes.16.020150Cc42R1
  doi: 10.1002/sce.10106
– volume-title: Second International Handbook of Science Education
  year: 2012
  ident: PhysRevPhysEducRes.16.020150Cc48R1
– volume-title: Methods of Text and Discourse Analysis: In Search of Meaning
  year: 2000
  ident: PhysRevPhysEducRes.16.020150Cc86R1
  doi: 10.4135/9780857024480
– ident: PhysRevPhysEducRes.16.020150Cc6R1
  doi: 10.1073/pnas.1505329112
– volume: 49
  start-page: 207
  year: 1978
  ident: PhysRevPhysEducRes.16.020150Cc31R1
  publication-title: Contemp. Educ.
– ident: PhysRevPhysEducRes.16.020150Cc50R1
  doi: 10.1016/j.dr.2006.12.001
– volume: 32
  start-page: 81
  issn: 0017-8055
  year: 1962
  ident: PhysRevPhysEducRes.16.020150Cc19R1
  publication-title: Harv. Educ. Rev.
– ident: PhysRevPhysEducRes.16.020150Cc84R1
  doi: 10.1002/sce.20390
– ident: PhysRevPhysEducRes.16.020150Cc59R1
  doi: 10.1111/1467-8721.00064
– ident: PhysRevPhysEducRes.16.020150Cc41R1
  doi: 10.1103/PhysRevSTPER.11.020113
– volume-title: Proceedings of the Physics Education Research Conference, 2018
  year: 2018
  ident: PhysRevPhysEducRes.16.020150Cc9R1
– ident: PhysRevPhysEducRes.16.020150Cc46R1
  doi: 10.1007/s11191-006-9045-7
– volume-title: Reviews in Physics Education Research, Volume 1: Research-Based Reform of University Physics
  year: 2007
  ident: PhysRevPhysEducRes.16.020150Cc7R1
– ident: PhysRevPhysEducRes.16.020150Cc57R1
  doi: 10.1016/j.paid.2013.09.026
– ident: PhysRevPhysEducRes.16.020150Cc29R1
  doi: 10.1177/1028315307302839
– ident: PhysRevPhysEducRes.16.020150Cc26R1
  doi: 10.5840/teachphil19911412
– ident: PhysRevPhysEducRes.16.020150Cc61R1
  doi: 10.3102/0034654314551063
– ident: PhysRevPhysEducRes.16.020150Cc75R1
  doi: 10.1088/1361-6552/aacf23
– ident: PhysRevPhysEducRes.16.020150Cc76R1
  doi: 10.1119/1.4999742
– volume: 46
  start-page: 38
  year: 1988
  ident: PhysRevPhysEducRes.16.020150Cc22R1
  publication-title: Educ. Leader.
– ident: PhysRevPhysEducRes.16.020150Cc83R1
  doi: 10.1207/s15327809jls0603_1
– ident: PhysRevPhysEducRes.16.020150Cc15R1
  doi: 10.1080/0950069930150406
– ident: PhysRevPhysEducRes.16.020150Cc54R1
  doi: 10.1111/1467-9752.12175
– ident: PhysRevPhysEducRes.16.020150Cc69R1
  doi: 10.1002/tea.21229
– volume: 72
  start-page: 18
  year: 2001
  ident: PhysRevPhysEducRes.16.020150Cc34R1
  publication-title: Contemp. Educ.
– volume-title: The Cambridge Handbook of Expertise and Expert Performance
  year: 2006
  ident: PhysRevPhysEducRes.16.020150Cc63R1
  doi: 10.1017/CBO9780511816796
– volume-title: How Learning Works: 7 Research-Based Principles for Smart Teaching
  year: 2010
  ident: PhysRevPhysEducRes.16.020150Cc66R1
– ident: PhysRevPhysEducRes.16.020150Cc12R1
  doi: 10.1002/tea.20020
– ident: PhysRevPhysEducRes.16.020150Cc1R1
  doi: 10.1063/PT.3.3816
– volume-title: AAPT Recommendations for the Undergraduate Physics Laboratory Curriculum
  year: 2015
  ident: PhysRevPhysEducRes.16.020150Cc5R1
– ident: PhysRevPhysEducRes.16.020150Cc18R1
  doi: 10.1111/1467-9752.00270
– ident: PhysRevPhysEducRes.16.020150Cc70R1
  doi: 10.1103/PhysRevPhysEducRes.16.010109
– ident: PhysRevPhysEducRes.16.020150Cc13R1
  doi: 10.1119/1.1616479
– ident: PhysRevPhysEducRes.16.020150Cc87R1
  doi: 10.1007/s11165-011-9267-9
– ident: PhysRevPhysEducRes.16.020150Cc16R1
  doi: 10.1103/PhysRevPhysEducRes.13.020125
– volume: 95
  start-page: 53
  issn: 0036-6811
  year: 2014
  ident: PhysRevPhysEducRes.16.020150Cc51R1
  publication-title: Sch. Sci. Rev.
– volume-title: Critical Thinking: What Every Person Needs to Survive in a Rapidly Changing World
  year: 1990
  ident: PhysRevPhysEducRes.16.020150Cc25R1
– ident: PhysRevPhysEducRes.16.020150Cc78R1
  doi: 10.1103/PhysRevPhysEducRes.13.020106
– ident: PhysRevPhysEducRes.16.020150Cc81R1
  doi: 10.1103/PhysRevPhysEducRes.12.010130
– ident: PhysRevPhysEducRes.16.020150Cc21R1
  doi: 10.5840/inquiryctnews20112613
– volume-title: Next Generation Science Standards: For States, by States
  year: 2013
  ident: PhysRevPhysEducRes.16.020150Cc45R1
  doi: 10.17226/18290
– ident: PhysRevPhysEducRes.16.020150Cc55R1
  doi: 10.1086/231294
– ident: PhysRevPhysEducRes.16.020150Cc60R1
  doi: 10.3102/0034654308326084
– ident: PhysRevPhysEducRes.16.020150Cc39R1
  doi: 10.3200/AEPR.109.4.21-32
– volume-title: The ABCs of How We Learn: 26 Scientifically Proven Approaches, How They Work, and When to Use Them
  year: 2016
  ident: PhysRevPhysEducRes.16.020150Cc65R1
– volume: 38
  start-page: 52
  year: 2008
  ident: PhysRevPhysEducRes.16.020150Cc72R1
  publication-title: J. Coll. Sci. Teach.
– ident: PhysRevPhysEducRes.16.020150Cc27R1
  doi: 10.22329/il.v18i2.2378
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Snippet The goals for lab instruction are receiving critical attention in the physics education community due to multiple reports and research findings. In this paper,...
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SubjectTerms Context
Critical Thinking
Curricula
Curriculum Design
Decision analysis
Decision Making
Energy
Experimentation
Instructional Effectiveness
Introductory Courses
Laboratory Experiments
Magnetism
Personal Autonomy
Physics
Science Education
Science Instruction
Skills
Teachers
Teaching Methods
Thinking Skills
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Title Evaluating instructional labs’ use of deliberate practice to teach critical thinking skills
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