D IPA 1007050 Bibliography

DAFTAR PUSTAKA
Adey, P., and Shayer, M. (1994). Really Raising Standards: Cognitive
Intervention and Academic Achievement. London: Routledge.
Akatugba, A. H. and Wallace, J. (2009). “An Integrative Perspective on Students‟
Proportional Reasoning in High School Physics in a West African
Context”. International Journal of Science Education, 31(11), 1473–1493.
American Association for the Advancement of Science, (1993). Benchmarks for
science literacy: Project 2061. Oxford: Oxford University Press.
Anderson, L. W., and Krathwohl, D. R. (2001). A taxonomy for learning, teaching,
and assessing: A revision of Bloom’s taxonomy of educational objectives.
New York, NY: Longman.
Arlin, P. K. (1989). The problem of The Problem. In J. D. Sinnott (Ed.), Every
Day Problem Solving: Theory and applications (pp. 229–237), New
York:Praeger.
Arnett , A. and Van Horn, D. (2009).” Connecting Mathematics and Science: A
Learning Community That Helps Math-Phobic Students”. Journal of
College Science Teaching, July/August.
Atkins, P.W. (1998). Physical Chemistry. Oxford: Oxford University Press.
Ausubel, D.P., (1968), Educational Psychology: a Cognitive View. New York:
Holt, Rinehart and Winston.
Bangash, F.K., and Mustafa, S. (2002). Essentials of Mathematics in Teaching

Chemistry. Proceedings of 10th IOSTE Symposium, 2, Parana Brazil: Foz
do Iquaso.
Barmetz, J. (1999). “Precursors of Formal Thought: A Longitudinal Study”.
British Journal of Developmental Psychology, 17, 61-81.
Barrante, J. R. (1998). Applied Mathematics for Physical Chemistry, 2nd edition,
New Jersey: Prentice Hall Upper Saddle River.
Bassok, M. (2003). Analogical Transfer in Problem Solving. In J. E. Davidson
and R. J. Sternberg (Eds.). The psychology of Problem Solving (pp. 343–
369), Cambridge: Cambridge University Press.
Belt, S.T., Leisvik, M. J., Hyde, A. J., and Overton, T. L. (2005). “Using a
Context Based Approach to Undergraduated Chemistry Teaching- A Case
Study for Introductory Physical Chemistry. Chemistry Education Research
and Practice, 6(3), 166 -179.
Ben-Hur, M. (2006). Concept rich mathematics instruction: Building a strong
foundation for reasoning and problem solving. Alexandria, VA: Association
for Supervision and Curriculum Development.
Ben-Zvi, R., Eylon B. and Silberstein J. (1988). “Theories, Principles and Laws”.
Education in Chemistry, 25, 89-92.
Fahyuddin, 2014
Perkuliahan matematika kimia untuk meningkatkan kemampuan berpikir

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Berlin, D. F. and Lee, H. (2005). “Integrating Science and Mathematics:
Historical Analysis”. School Science and Mathematics, 105, 15-24.
Bird, J. (2002). Basic Engineering Mathematics. 3rd Edition. Alih Bahasa:
Indriasari, R. (Matematika Dasar: Teori dan Aplikasi). Jakarta: Erlangga.
Blaye, A., Light, P. H., Joiner, R., and Sheldon, S. (1991). “Joint Planning and
Problem Solving on A Computer-based Task”. British Journal of
Developmental Psychology, 9, 471–483.
Boaler, J. (1998). “Open and closed mathematics: Students‟ experiences and
Understanding”. Journal for Research in Mathematics Education, 29, 41–62.
Bossé, M. J., Lee, T. D., Swinson, M., and, Faulconer, J. (2010). “The NCTM
Process Standards and The Five Es of Science:Connecting Math and
Science”. Journal School Science and Mathematics, 110(5), 261 – 276.
BouJaoude, S. B., Salloum, S., and Abd-El-Khalick, F. (2004). “Relationship
between Selective Cognitive Variables and Students‟ Ability to Solve
Chemistry Problems”. International Journal of Science Education, 26,63-84.
Bowden, G. M. and Roth, W. M. (2005). “Data and Graph Interpretation Practices
Among Preservice Science Teachers”. Journal of Research in Science

Teaching, 42, 1063-1088.
Brady, J. E. and Holum, J. R. (2003). The Study of Matter and Its Changes. New
York: John Wiley and Sons, Inc.
Bragow, D., Gragow, K. A., and Smith, E. (1995). “Back to The Future: Toward
Curriculum Integration”. Middle School Journal, 27, 39-46.
Bransford, J., and Stein, B. S. (1984). The IDEAL Problem Solver: A guide for
Improving Thinking, Learning, and Creativity. New York: H. Freeman.
Brassel, H. M. and Rowe, M. B. (1993). “Graphing Skill Among High School
Physics Students”. Journal of School Science and Mathematics, 93, 63–71.
Brookhart, S. M. (2010). How to Assess Higher Order Thinking Skills In Your
Classroom. Virginia USA: ASCD Alexandria.
http://:www.jalt.org/test/bro 12.htm.[12 Desember 2010].
Cakmakci, G., Leach, J., and Donnelly, J. (2006). “Students‟ Ideas about
Reaction Rate and its Relationship with Concentration or Pressure”.
International Journal of Science Education, 28(15), 1795–1815
Chandran, S., Treagust, D. F., and Tobin, K. (1987). “The Role of Cognitive
Factors in Chemistry Achievement”. Journal of Research in Science
Teaching, 24(2), 145–160.
Chandrasegaran, A.L., Treagust, D.T., and Mecerino, M. (2007). “The
Development of a Two-tier Multiple-choice Diagnostic Instrument for

Evaluating Secondary School Students‟ Ability to Describe and Explain
Chemical Reactions Using Multiple Levels of Representation”. Chemistry
Education Research and Practice, 8 (3), 293-307.
Fahyuddin, 2014
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Chang, H.P et al. (2007). “Investigating Primary and Secondary Students‟
Learning of Physics Concepts in Taiwan”. International Journal of
Science Education, 29(4), 465 – 482.
Cheng, P.C. H. (1996). Problem Solving and Learning with Diagrammatic
Representations. In D. Peterson (Ed.), Forms of representation (pp. 47–
66). Exeter: Intellect Books.
Cheong, I. P- A., Treagust, D., Kyeleve, I. J., and Oh, P –Y. (2010). “Evaluation
of Students‟ Conceptual Understanding of Malaria”. International Journal
of Science Education, 32(18), 2497–2519.
Childs, P. (2009). “Improving Chemical Education: Turning Research Into
Effective Practice”. Chem. Educ. Res. Pract., 10, 189-203.
Clark, A.C. and Ernst, J.V. (2007). “A Model for the Integration of Science,

Technology, Engineering, and Mathematics”. The Technology Teacher ,
December/January 2007.
Coll, R. K., Ali, A., Bonato, J., and Rohindra. D. (2005). “Investigating First-Year
Chemistry Learning Difficulties in the South Pacific: A Case Study from
Fiji”. International Journal of Science and Mathematics Education , 4(2),
241-268.
Cook, M. Wiebe, E.N., and Carter G. (2008).”The Influence of Prior Knowledge on
Viewing and Interpreting Graphics With Macroscopic and Molecular
Representations”. Science Education. Published online 28 Januari 2008 in
Wiley Inter Scinece (www.interscience.wiley.com). (Diakses tanggal 11
Desember 2010).
Costa, A.L. (1985). Developving Minds, A Resource Book For Teaching Thingkin.
Association For Supervision and Curriculum Development. Alexandria,
Virginia.
Creswell, J. W., and Clark, V. L. P. (2007). Designing and Conducting Mixed
Methods Research. Thousand Oaks, California: Sage Publications.
Crippen, K. J. and Brooks, D. W. (2009). “Applying Cognitive Theory to
Chemistry Instruction: The Case for Worked Examples”. Chem. Educ.
Res. Pract., 10, 35-41
Crocker, L. and Algina, J. (2008). Introduction to Classical and Modern Test

Theory. New York: Holt, Rinehart and Winston, Inc.
Crowther, K., Thompson, D., and Cullingford, C. (1997). “Engineering Students
are Deficient in Mathematical Expertise – why?” International Journal
of Math. Educ. Sci. Technol, 28(6), 785–792.
Cui, L., Rebello, A.S., and Bennett, A. G. (2006). “College Students‟
Transfer from Calculus to Physics”. Salt Lake City, Utah: Physics
Education Research Conference , Part of the PER Conference series,
818, 37-40
Fahyuddin, 2014
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Dagher, Z. R. (1995). “Analysis of Analogies Used by Science Teachers”. Journal
or Research in Science Teaching, 32 (3), 259-270.
Dahar, R.W. (1996). Teori-Teori Belajar. Jakarta: Erlangga.
Davison, D. M., Miller, K.W., and Metheny, D.I. (1995). “What Does Integration
of Science and Mathematics Really Mean?” Journal of School Science and
Mathematics, 95(5), 226-230.
Donovan, W. J. and Wheland, E. R. (2009). “Comparisons of Success and

Retention in A General Chemistry Course Before and After The Adoption
of A Mathematics Prerequisite”. Journal of School Science and
Mathematics, 109 (7), 371-382.
Douglas, (2002). Fundamental of Analytica Chemistry, 7th Ed., Washington: John
Willey Son on Corporation.
Duit, R. (2007). “Science Education Research Internationally: Conceptions,
Research Methods, Domains of Research”. Eurasia Journal of
Mathematics, Science and Technology Education, 3(1), 3-15.
Easter, D. C. (2010).” Factors Influencing Student Prerequisite Preparation for
and Subsequent Performance in College Chemistry Two: A Statistical
Investigation”. Journal of Chemical Education, 87(5), 535-540.
Eilks, I. and Byers, B. (2010). “The Need for Innovative Methods of Teaching and
Learning chemistry in Higher Education – Reflections from a Project of
The European Chemistry Thematic Network”. Chem. Educ, Res. Pract.,
11, 233-240.
Fah, L. Y. (2006). “Logical Thinking Abilities among Form 4 Students in the
Interior Division of Sabah, Malaysia”. Journal of Science and
Mathematics Education in Southeast Asia, 32(2), 161-187
Fahyuddin, (2011). Analisis Kemampuan Konsep Matematika yang Dibutuhkan
dan Miskonsepsi Konsep Matematika Dasar Pada Mahasiswa Prodi

Pendidikan Kimia . Tugas Field Study Pada Mata kuliah Pengembangan
Program Pendidikan IPABandung: SPS UPI. (tidak dipublikasikan).
Fahyuddin, Liliasari, Sabandar, J., and Martoprawiro, A. K. (2012). Analisis
Konsep-Konsep Matematika Esensial untuk Kelancaran Belajar Kimia.
Jurnal Kimia dan Pendidikan Kimia Sains, 1(1), 40-57.
Fahyuddin (2013). Pengembangan Alat Ukur Tes Kemampuan Berpikir
Matematis dalam Konteks Kimia Bagi Mahasiswa Calon Guru Kimia .
Laporan Penelitian Hibah Disertasi Doktor. Kendari, Unhalu, Lembaga
Penelitian.
Fahyuddin, Liliasari, dan Sabandar, J., and Martoprawiro, A.K. (2013a). Tingkat
Pemahaman Mahasiswa Pendidikan Kimia pada Beberapa Konsep Dasar

Fahyuddin, 2014
Perkuliahan matematika kimia untuk meningkatkan kemampuan berpikir
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Matematika yang Dibutuhkan untuk Kelancaran Belajar Kimia Kuantitatif.
Prosiding, Seminar Nasional Pendidikan Sains. Suarabaya: SPs UNESA.
Fahyuddin, Liliasari, dan Sabandar, J. (2013b). Pengembangan Tes Diagnosis

Penalaran Formal Dalam Konteks Kimia. Prosiding, Seminar Nasional
Pendidikan. Palembang: FKIP UNSRI.
Frykholm, J. and Glasson, G. (2005). “Connecting Science and Mathematics
Instruction: Pedagogical Context Knowledge for Teachers”. School
Science and Mathematics , 105, 127–141.
Furner, J., and Kumar, D. (2007). “The Mathematics and Science Integration
Argument: A Atand for Teacher Education”. Eurasia Journal of
Mathematics,Science, and Technology Education, 3, 185–189.
Gabel, D. (1999). “Improving teaching and learning through chemistryeducation
research:A look to the future”. Journal of Chemical Education, 76, 548554.
Gaigher, E., Roga, J.M., and Braun, M. W. H. (2007). Exploring The
Development Of Conceptual Understanding Through Structured ProblemSolving In Physics.Inter national Journal of Science Education, 29(9),
1089–1110.
Gall, M.D., Gall, J.P., and Borg, W.R. (2003). Education Research: An
Introduction. Seventh Edition. Boston: Allyn anb Bacon.
Gerstner, S., and Bogner (2010). “Cognitive Achievement and Motivation in
Hands-on and Teacher-Centred Science Classes: Does an Additional
Hands-on Consolidation Phase (concept mapping) Optimise Cognitive
L earning at Work Stations?” International Journal of Science
Education, 32(7), 849-870.

Gilbert, J. K., Bulte, A. M.W., and Pilot, A. (2011). “Concept Development and
Transfer in Context-Based Science Education”. International Journal of
Science Education, 33 (6), 817–837.
Gilbert, J. K. (2006). “On the Nature of “Context” in Chemical Education”.
International Journal of Science Education, 28(9), 957–976.
Greeno, J. G. and Hall, R.P. (2004). “Practicing Representation Learning with and
about Representational Forms. Online Journal Phi Delta Kappan. from
http:/ /www. dkintl.org/kappan /k9701gre.htm. (Diaskes 23 Nopember
2010).
Greeno, J. (1980). Trends in the theory of knowledge for Problem Solving. In
D. T. Tuma and F. Reif (Eds.), Problem solving and education: Issues in
teaching and research (pp. 9–23). Hillsdale, NJ: Lawrence Erlbaum
Associates.
Guthrie, J. T., Wigfield, A., and VonSecker, C. (2000). “Effects of Intgrated
Instruction on Motivation and Strategy uses in Reading”. Journal of
Education Psychology, 92, 331 – 341.
Fahyuddin, 2014
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Hahn, K. E., and Polik, W.F. (2004). “Factors Influencing Success in Physical
Chemistry”. Journal of Chem. Education, 81(4), 560-572.
Haladyna, T. M. (1997). Writing Test Items to Evaluate Higher Order Thinking.
USA: Allyn Bacon.
Hailikari, T. K., and Nevgi, A. (2010). “How to Diagnose At-risk Students in
Chemistry: The Case of Prior Knowledge Assessment”. International
Journal of Science Education, 32(15), 2079–2095.
Hailikari, T., Nevgi, A., and Komulainen, E. (2008). “Academic Self-beliefs and
Prior Knowledge as Predictors of Student Achievement in Mathematics: A
Structural Model”. Educational Psychology, 28 (1), 59–71.
Hake, R. R. (1998).”Interactive-engagement Versus Traditional Methods: A sixThousand-student Survey of Mechanics Test Data for Introductory
Physicscourses. American Journal of Physics, 66 (1), 64 – 74.
Harskamp, E., and Ding, N. (2006). “Structured Collaboration versus Individual
Learning in Solving Physics Problems”. International Journal of Science
Education, 28(14), 1669-1688.
Herron, J. D., (1975). Piaget for Chemist; Explaining What Good Student Cannot
Understand, Journal of Chemical Education, 52, 146 – 150.
Higgins, S., Hall, E., Baumfield, V., and Moseley, D. (2005). A meta-analysis of
the impact of the implementation of thinking skills approaches on pupils .
In Research evidence in education library. London: EPPI-Centre, Social
Science Research Unit, Institute of Education, University of London.
Hines, C. (1990). “Students‟ Understanding of Chemical Equations in Secondary
Schools in Botswana. School Science Review, 72(258), 138–140.
House, J. D. (2001). Relationships between instructional activities and
mathematics achievement of adolescent students in Japan:
Findings from the Third International Mathematics and Science
Study (TIMSS). International Journal of Instructional Media, 28(1),
93–106.
Hoyles, C., Newman, K., and Noss, R. (2001). “Changing Patterns of Transition
from School to University Mathematics, Inter”. J. Math. Educ. Sci.
Technol, 32, 829–845.
Hung, W. and Jonassen, D. H. (2006). “Conceptual Understanding of Causal
Reasoning in Physics”. International Journal of Science Education ,
28(13), 1601–1621.
Hurley, M. M. (2001). “Reviewing Integrated Science and Mathematics: The
Search For Evidence and Definitions From New Perspectives”. Journal of
School Science and Mathematics, 101, 259-268.
Jarvis, M. (2000). Teori-Teori Psikologi: Pendekatan Modern untuk Memahami
Perilaku, Perasaan, dan Pikiran Manusia . Diterjemahkan oleh SPAFahyuddin, 2014
Perkuliahan matematika kimia untuk meningkatkan kemampuan berpikir
logis,matematis,,komunikasi matematis,dan pemecahan masalah kimia kuantitatif
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Teamwork dari karya Matt Jarvis: Theoretical Approaches in Psychology.
London: Routledge, 2000.
Johnstone, A. H. (1991). “ Why is Science Difficult to Learn? Things are
Seldom Like They Seem”. Journal of Computer Assisted Learnin, 7, 75–
83.
Jonassen, D. H. (2011). Learning to Solve Problems: A Handbook For Designing
Problem-Solving Learning Environments. Routledge: Madison Avenu,
New York, NY.
Jones, G., Taylor, A., and Broadwell, B. (2009). “Estimating Linear Size and
Scale: Body Rulers”. International Journal of Science Education,
31(11), 1495–1509.
Kalender, I. and Berberoglu, G. (2009). “An Assessment of Factors Related to
Science Achievement of Turkish Students”. Inter na tiona l Jour na l of
Science Educa tion , 31(10) , 1379–1394.
Kelly, R.M., Barrera, J. H., and Mohamed, S.C. (2010). “An Analysis of
Undergraduate General Chemistry Students‟ Misconceptions of The
Submicroscopic Level of Precipitation Reactions”. Journal of Chemical
Education, 87(1), 113-118.
Kim, M. and Song, J. (2009). “The Effects of Dichotomous Attitudes Toward
Science on Interest and Conceptual Understanding in Physics”.
International Journal of Science Education, 31(17), 2385–2406.
King, F. I., Goodson, L., and Rohani, F. (2011). Higher Order Thinking Skills.
Virginia USA: ASCD Alexandria.
Koirala, H. P. and Bowman, J. K. (2003). “Preparing Middle Level Preservice
Teachers to Integrate Mathematics and Science: Problems and
Possibilities. School Science and Mathematics, 145, 145–154.
Konold, C. and Higgins, T. (2003). Reasoning About Data . In Kilpatrick, J.,
Martin, W. G., and Schifter, D. (Eds.), A Research Companion to
Principles and Standards for School Mathematics (193-215). Reston, VA:
NCTM.
Lazear, D. (2004). Higher-Order Thinking: The Mutliple Intelligences Way.
Chicago: Zephyr Press.
Lawson, A.E. (1985). “A review of Research on Formal Reasoning and
Science Teaching”. Journal of Resear ch in Science Tea ching, 22, 569617.
Lawson, A. E. (1993). Classroom test of Scientific Reasoning: Revised Paper –
Pencil Edition. Tempe, AZ: Arizona State University.
Leech, N. L., Barrett, K. C., and Morgen, G. A. (2005). SPSS for Introductory
Statistics: Use and interpretation. (Second Editian). New Jersey:
Lawrence Erlbaum Associates Inc.

Fahyuddin, 2014
Perkuliahan matematika kimia untuk meningkatkan kemampuan berpikir
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Lemke, J.L. (1998). “Multiplying Meaning: Visual and Verbal Semiotics in
Scientific Text”. InJ.R. Martin and R. Veel (Eds.), Reading science (pp.
87–113). London: Routledge.
Leopold, D. G. and Edgar, B. (2008). “Degree of Mathematics Fluency and
Success in Second-Semester Introductory Chemistry”. Journal of
Chemical Education, 85(5), 724-731.
Leung, F. K. (2002). Behind the high achievement of East Asian students.
Educational Research and Evaluation , 8, 87–108.
Liliasari. (2005). Membangun Keterampilan Berpikir Manusia Indonesia melalui
Pendidikan Sains. Pidato Pengukuhan Jabatan Guru Besar. Tidak
dipublikasikan. Bandung: Universitas Pendidikan Indonesia.
Lunsford, E., Melear, C. T., Roth, W-M., Perkins, M., and Hickok, L. G. (2007).
“Proliferation of Inscriptions and Transformations Among Preservice
Science Teachers Engaged in Authentic Science”. Journal of Research in
Science Teaching, 44, 538-564.
Maloney, D. P., O‟Kuma, T. L., Hieggelke, C. J., and van Heuvelen, A. (2001).
“Surveying Students‟ Conceptual Knowledge of Electricity and
Magnetism”. American Journal of Physics, Supplement, 69(7), S12.
Matthews, K. E., Adams, P., and Goos, M. (2009). “Putting it Into Perspective:
Mathematics in The Undergraduate Science Curriculum”. International
Journal of Mathematics Education in Science and Techonology, 40(7),
891-902.
Meltzer, D. E. (2002). “The Relationship between Mathematics Preparation and
Conceptual Learning Gains in Physics: A possible „„Hidden Variable‟‟ in
Diagnostic Pretest Scores”. American Journal of Physics, 70, 1259–1268.
Morgen, G.A., Leech, N. L., Gloeckner, G. W., and Barrett, K. C. (2004). SPSS
for Introductory Statistics: Use and interpretation . (Second Editian). New
Jersey: Lawrence Erlbaum Associates Inc.
Morrison, Judith, and McDuffie, A. R. (2009). “Connecting Science and
Mathematics: Using Inquiry Investigations to Learn about Data Collection,
Analysis, and Display”. Journal of School Science and Mathematics, 109
(1).
Mortimer, R. G. (2005). Mathematics for Physical Chemistry. 3nd Edition,
Amsterdam: Elsevier Academic Press.
Munir, R. (2010). Matematika Diskrit. Edisi 3. Bandung: Informatika.
NCTM. (2000). Curriculum and evaluation standards for School Mathematics.
Reston: Author.
Niaz, M. (1996). “Reasoning Strategies of Students in Solving Chemistry
Problems as a Function of Developmental Level, functional M-capacity
and Disembedding Ability”. International Journal of Science Education ,
18(5), 525–541.
Fahyuddin, 2014
Perkuliahan matematika kimia untuk meningkatkan kemampuan berpikir
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Nicoll, G. and Francisco, J. S. (2001). “An Investigation of the Factors
Influencing Student Performance in Physical Chemistry”. Journal of
Chemical Education, 78(1), 99 – 102.
Niklasson, C., Christie, M., Larsson, S., O¨ hrstro¨ , L., and Bowden, J. (2003).
“Integration of Mathematics/Numeric Analysis with Chemistry/Chemical
Engineering”. http: //www.math.chalmers.se/_stig/papers
/JEE%20paper%20031101.pdf. (Diakses 21 Desember 2010).
Nitko, A. (1996). Educational Assessment of Students.2th Ed. Ohio: Merrill an
imprint of Prentice Hall Englewood Cliffs.
NRC. (1996). National Science Education Standards. Washington, DC: National
Academy Press.
NSTA(1996). NSTA Board Endorses New Position Statement on Interdisciplinary
Learning. PreK-Grade 4. NSTA Reports!, 6, 8.
Nunnally, J. C. (1978). Psychometric Theory. 2th Ed. New Delhi: Tata
McGrawHill Publishing Company Limited.
Oehrtman, M. and Lawson, A.E. (2008). “Connecting Science and Mathematics:
The Nature of Proof and Disproof In Science and Mathematics”.
International Journal of Science and Mathematics Education , 6, 377- 403.
Offer, Joey, and Mireles, S.V. (2009). “Mix It Up: Teachers' Beliefs on Mixing
Mathematics and Science”. Journal of School Science and Mathematics,
109, (3).
Ostermeier, C., Prenzel, M., and Duit, R. (2010). “Improving Science and
Mathematics Instruction: The SINUS Project as an Example for Reform as
Teacher Professional Development”. International Journal of Science
Education, 32(3), 303–327.
Othman, J., Treagust, D.F. and Chandrasegaran, A.L. (2008). “An Investigation
Into The Relationship Between Students‟ Conceptions of The Particulate
Nature of Matter and Their Understanding of Chemical Bonding”.
International Journal of Science Education , 30 (11), 1531–1550.
Oxtoby, D.W., Gillis, H.,P., and Nachtrieb, N.H. (2003). Prinsip-Prinsip Kimia
Modern. Jilid 2. Alih bahasa, Achmadi, S.S. Ed. Keempat. Jakarta:
Erlangga.
Pang, J. S. and Good, R. (2000). “A review of the Integration of Mathematics and
Science: Implications for Futher Research”. School Science and
Mathematics, 100, 73-82.
Poedjiadi, A. (1999). Pengantar Filsafat Bagi Pendidik. Bandung: Cipta
Cendrawasih.
Poedjiadi, A. dan Supriyanti, F. M.T. (2005). Dasar-dasar Biokimia . (Edisi
Revisi). Jakarta: UI Press.

Fahyuddin, 2014
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Potgieter, M., Harding, A., and Engelbrecht, J. (2008). “Transfer of Algebraic and
Graphical Thinking between Mathematics and Chemistry”. Journal of
Research In Science Teaching, 45(2), 197–218.
Prancis, P. G. (1984). Mathematics for Chemists, 1st Editioan, New York:
Chapman and Hall Ltd.
Purcell, E.J., Varberg, D., and Rigdon, S. E. (2004). Kalkulus Jilid I. Ed.
Kedelapan ). Alih Bahasa, Gresando, J. Jakarta: Erlangga.
Rutherford, J. and Ahlgren, A. (1990). Science for all Americans. New York:
Oxford University Press.
Repko, A. F. (2008). Interdisciplinary Research: Process and Theory. Los
Angeles: Sage Publications, Inc.
Resnick, L. B. and L. Klopfer. 1989. Toward the Thinking Curriculum: Current
Cognitive Research. Alexandria, Va.: Association for Supervision and
Curriculum Development.
Rylands, L. J. and Coady, C. (2009). “Performance of Students with Weak
Mathematics in First-year Mathematics and Science”. International
Journal of Mathematical Education in Science and Technology, 40 (6),
741–753.
Sabandar, J (2006). “Pertanyaan Tantangan dalam Memunculkan Kemampuan
Berpikir Kritis dan Kreatif dalam Pembelajaran Matematika”. Artikel
Ilmiah.” Journal Pendidikan, 2(25).
Sadiman, A.S. (2004). Pendayagunaan Teknologi Informasi dan Komunikasi
untuk Pembelajaran. Makalah.
Schmidt, P.A., and Rich, B.,(2002). Aljabar Elementer . Ed. Ketiga. Alih Bahasa,
Gresando, J. Jakarta: Erlangga.
Schulman, L.S. (2002). Foreword. In M. Taylor Huber and S.P. Morreale (Eds.),
Disciplinary Styles in The Scholarship of Teaching and Learning: Exploring
Common Ground. Menlo Park, CA: American Association for Higher
Education.
Scusa, T. and Yuma, C. O. (2008). Five Processes Of Mathematical Thinking: Math
in the Middle Institute Partnership . University Of Nebraska – Lincoln:
Summative Projects For Ma Degree.
Seery, M.K. (2009). “The Role of Prior Knowledge and Students Aptitude in
Undergraduate Performance in Chemistry: A Correlation-Prediction
Study”. Chemsitry Education Research and Practice, 10, 227-232
Setiono, K. (2000). Psikologi Perkembangan: Kajian Teori Piaget, Selman,
Kohlberg dan Aplikasi Riset. Edisi kedua, Bandung: Widya Padjadjaran.
Shapiro, A. M. (2004). “How Including Prior Knowledge as a Subject Variable
may Change Outcomes of Learning Research? American Educational
Research Journal, 41(1), 159–189.
Fahyuddin, 2014
Perkuliahan matematika kimia untuk meningkatkan kemampuan berpikir
logis,matematis,,komunikasi matematis,dan pemecahan masalah kimia kuantitatif
Universitas Pendidikan Indonesia | repository.upi.edu | perpustakaan.upi.edu

Sherrill, J. M. (1983). “Solving Textbook Mathematical Word Problems”. Alberta
Journal of Educational Research, 29(2), 140–152.
Sherrod, S.E., Dwyer, J., and Narayan, R. (2009). “Developing Science and Math
Integrated Activities for Middle School Students”. International Journal of
Mathematics Education in Science and Techonology, 40 (2), 247-257.
Silberberg, M. S. (2006). Chemistry: The Molecular Nature of Matter and Change
(4th e d.).New York: McGraw-Hill.
Skoog, D.A., Holler, F.J., and Nieman, T.A. (1998). Principles of Instrumental
analysis. (5th ed.). Philadelphia, PA: Saunders College Publishing.
Sözbilir, M. (2004). “What Makes Physical Chemistry Difficult?” Journal of
Chemical Education, 81(4), 573-578.
Stewar, J. (2002). Calculus. (Fourth Edition). Alih Bahasa Susila, I Nyoman and
Gunawan, H (Kalkulus Jilid 1). Jakarata: Erlangga.
Stinson, K., Harkness, S. S., Meyer, H., and Stallworth, J. (2009). “Mathematics
and Science Integration: Models and Characterization”. Journal of School
Science and Mathematics , 109, (3).
Sumarno, U. (1987). Kemampuan Pemahaman dan Penalaran Matematika Siswa
SMA Dikaitkan dengan Kemampuan Penalaran Logik Siswa dan Beberapa
Unsur Proses Belajar Mengajar . Bandung: Disertasi SPS UPI.
Taber, K. S. and Bricheno, P. (2009). “Coordinating Procedural and Conceptual
Knowledge to Make Sense of Word Equations: Understanding the
complexity of a „simple‟ completion task at the learner‟s resolution”.
International Journal of Science Education, 31(15), 2021–2055
Tai, R. H., Sadler, P. M., and Loehr, J. F. (2005). “Factors Influencing Success in
Introductory College Chemistry”. Journal of Research in Science
Teaching, 42, 987-1012.
Tai, R. H., Ward, R. B., and Sadler, P. M. (2006). “High School Chemistry
Content Background of Introductory College Chemistry Students and Its
Association with College Chemistry Grades”. Journal of Chemical
Education, 83, 1703-1711.
Taylor, A. and Jones, G. (2009). “Proportional Reasoning Ability and Concepts of
Scale: Surface Area to Volume Relationships in Science”. International
Journal of Science Education, 31(9), 1231–1247.
Tan et al. (2008). “Students‟ Conceptions of Ionisation Energy: A Cross-cultural
Study. International Journal of Science Education, 30 (2), 263 – 283.
Testa, I., Monroy, G., and Sassi, E. (2002). “Students‟ Reading Images in
Kinematics: The Case of Real-time Graphs”. International Journal of
Science Education, 24, 235–256.
Tobin, K. and Capie, W. (1981). “The Development and Validation of a Group
Test of Logical Thinking”. Educational and Psychological Measurement,
41, 413-423.
Fahyuddin, 2014
Perkuliahan matematika kimia untuk meningkatkan kemampuan berpikir
logis,matematis,,komunikasi matematis,dan pemecahan masalah kimia kuantitatif
Universitas Pendidikan Indonesia | repository.upi.edu | perpustakaan.upi.edu

Treagust, D. F. (1988). “The Development and Use of Diagnostic Instruments to
Evaluate Students‟ Misconceptions in Science”. International Journal of
Science Education,10, 159–169.
Tsaparlis, G. and Papaphotis, G. (2009). “High-school Students‟ Conceptual
Difficulties and Attempts at Conceptual Change: The Case of Basic
Quantum Chemical Concepts”. International Journal of Science
Education, 31(7), 895–930 .
Tsitsipis, G., Stamovlasis, D., and Papageorgiou, G. (2010). “ The Effect of Three
Cognitive Variables on Students‟ Understanding of the Particulate Nature
of Matter and its Changes of State”. International Jour nal of Science
Education, 32(8), 987–1016 .
Turrell, G. (2002). Mathematics for Chemistry and Physics. New York: Academic
Press.
Valanides, N. (1998). “Formal Operational Performance And Achievement of
Lower Secondary School Students”. Studies in Educational Evaluation, 24
(1), 1 - 23.
Valanides, N. (1997). “Formal Reasoning Abilities and School Achievement”.
Studies in Educational Evaluation, 23(2), 169-185.
Van de Walle, J.A. (2007). Elementary and middle school mathematics. Teaching
Developmentally (6th ed) Boston, MA: Pearson Education.
Walsh, L. N., Howard, R. G., and Bowe, B. (2007). Phenomenographic Study of
Students‟ Problem Solving Approaches in Physics. Phy. Rev. Spec. TopicPeb, 3, 020108.
Webb, N. L. and Coxford, A. F. (Eds, 1993). Assesment in Mathematics
Classroom. Virginia: NCTM.
White, J. D. and Carpenter, J. P. (2008). “Integrating Mathematics into the
Introductory Biology Laboratory Course”. Primus : Problems, Resources,
and Issues in Mathematics Undergraduate Studies, 18(1).
Wilhelm, J. A. and Confrey, J. (2003). “Projecting Rate of Change in the Context
of Motion onto the Context of Money, Int”. Journal Mathematics
Education Science Technology, 34(6), 887–904.
Witten, G. Q. (2005). “Designing A Mathematics Course for Chemistry and
Geology Students”. Educational Studies in Mathematics, 58, 1–19.
Wood, P. K. (1983). Inquiring Systems and Problem Structure: Implications for
Cognitive Development. Human Development, 26(5), 249–265.
Wright, M., and Chorin, A. (2000). Mathematics and Science. National Science
Foundation Report. from http: //nsf.gov/pubs/2011/mps0001/mps001.
(Diakses 23 Januari 2011).
Wu, Y.T. and Tsai, C. C. (2007). “High School Students‟ Informal Reasoning on
a Socio-scientific Issue: Qualitative and Quantitative Analyses”.
International Journal of Science Education , 29(9), 1163–1187.
Fahyuddin, 2014
Perkuliahan matematika kimia untuk meningkatkan kemampuan berpikir
logis,matematis,,komunikasi matematis,dan pemecahan masalah kimia kuantitatif
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Wu, H.-K., Krajcik, J. S., and Soloway, E. (2001). “Promoting Understanding of
Chemical Representations: Students‟ Use of a Visualization Tool in the
Classroom”. Journal of Research in Science Teaching, 38, 821–842.
Zakaria, E. and Nordin N. M. (2008). “The Effects of Mathematics Anxiety on
Matriculation Students as Related to Motivation and Achievement”.
Eurasia Journal of Mathematics, Science and Technology Education,
4(1), 27-30
Zohar, A. (2006). “ Connected Knowledge in Science and Mathematics
Education”. International Journal of Science Education, 28(13), 1579–
1599.

Fahyuddin, 2014
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logis,matematis,,komunikasi matematis,dan pemecahan masalah kimia kuantitatif
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