Publication Date
| In 2026 | 0 |
| Since 2025 | 0 |
| Since 2022 (last 5 years) | 1 |
| Since 2017 (last 10 years) | 4 |
| Since 2007 (last 20 years) | 6 |
Descriptor
| Course Descriptions | 31 |
| Mathematics Education | 31 |
| Problem Solving | 31 |
| Mathematics Instruction | 21 |
| Higher Education | 17 |
| Mathematics Curriculum | 17 |
| College Mathematics | 13 |
| Mathematics Skills | 12 |
| Course Content | 9 |
| Mathematical Concepts | 9 |
| Teaching Methods | 9 |
| More ▼ | |
Source
Author
Publication Type
Education Level
| Higher Education | 4 |
| Postsecondary Education | 4 |
| Secondary Education | 2 |
Audience
| Practitioners | 15 |
| Teachers | 13 |
| Students | 7 |
| Policymakers | 2 |
| Administrators | 1 |
Laws, Policies, & Programs
Assessments and Surveys
| Program for International… | 1 |
What Works Clearinghouse Rating
Tomas Højgaard – Educational Studies in Mathematics, 2024
For decades, mastery ambitions related to processes like problem-solving, modelling, and reasoning have been incorporated in mathematics curricula around the world. Meanwhile, such ambitions are hindered by syllabusism, a term I use to denote a conviction that results in mastery of a subject being equated with proficiency in a specific subject…
Descriptors: Mastery Learning, Problem Solving, Mathematics Skills, Mathematics Curriculum
Victor I. Piercey – Numeracy, 2017
In this paper, I share a hybrid quantitative reasoning/algebra two-course sequence that challenges the common assumption that quantitative literacy and reasoning are less rigorous mathematics alternatives to algebra and illustrates that a quantitative reasoning framework can be used to teach traditional algebra. The presentation is made in two…
Descriptors: Numeracy, Mathematics Skills, Thinking Skills, Algebra
Thompson, Robert – Advances in STEM Education, 2018
This chapter is a case study examining the symbiotic relationship among an Arts and Sciences mathematics department, a school of education, and a large urban public school district, as a context for the development of pedagogical content knowledge in the curriculum. Specifically, Hunter College, CUNY, has a long-standing master's program in…
Descriptors: Pedagogical Content Knowledge, Masters Programs, Secondary School Mathematics, Mathematics Education
Silverman, Jason – Journal of Computers in Mathematics and Science Teaching, 2017
This article explores one segment of an extended research and development project that was conducted to better understand the ways online teacher professional development can support teachers' development of deep and connected mathematical understandings. In particular, this article discusses teachers' understandings of the concept of…
Descriptors: Mathematics Teachers, Pedagogical Content Knowledge, Online Courses, Faculty Development
Kirwan, Liz – International Electronic Journal of Elementary Education, 2015
This article interrogates the extent to which the Organization for Economic Cooperation and Development (OECD) through its Programme for International Student Assessment (PISA) influenced the development of Project Maths, a new second-level mathematics education policy in Ireland. It argues that the Irish government, in its revision of mathematics…
Descriptors: Foreign Countries, Mathematics Curriculum, Secondary School Mathematics, International Assessment
Gerhardt, Ira; Weld, Kathryn – PRIMUS, 2013
A problem-solving capstone course for mathematics and mathematics education majors can help majors synthesize material learned in the major, create a basis for lifelong learning in the discipline, develop confidence, and promote interest in graduate study. Such a course may also play a role in departmental assessment of the major. This article…
Descriptors: Problem Solving, Mathematics Curriculum, Mathematics Education, Majors (Students)
Brown, Stephen I.; Walter, Marion I. – 1983
The focus of this book is on a rationale and a set of strategies for problem generation in mathematics. Six chapters attempt to involve readers in the process of posing problems and in understanding why that process is important. Chapter 1 discusses two problem posing perspectives, while chapter 2 looks at the first phase of problem posing. The…
Descriptors: College Mathematics, Course Descriptions, Higher Education, Induction
Peer reviewedThomas, C. W.; Churchill, W. H. – School Science and Mathematics, 1977
Instructional methods used in a course designed to strengthen abstract thinking skills are described. (DT)
Descriptors: College Mathematics, Computer Assisted Instruction, Course Descriptions, Curriculum
Texas Education Agency, Austin. – 1986
This publication should help educators provide a mathematics program that emphasizes productive time on task and active involvement of students in mathematics activities. The focus on problem solving is stressed. Time allotments are stated, followed by descriptions of essential elements for kindergarten through grade 8: understanding numbers and…
Descriptors: Course Descriptions, Educational Objectives, Educational Philosophy, Elementary Secondary Education
Hastings, Janet – 1981
This report discusses how a computer was used to enhance the curriculum of a college calculus course. Problems with a calculus adjunct course in computer science are detailed, along with the nature of changes in the new program. The changes moved from student use of the computer as an automatic typewriter to use as a tool with instructional…
Descriptors: Calculus, College Mathematics, Computers, Course Descriptions
Peer reviewedSevilla, Alicia; Somers, Kay – Primus, 1993
Describes a course designed by Moravian College, Pennsylvania, to integrate precalculus topics as needed into a first calculus course. The textbook developed for the course covers the concepts of functions, Cartesian coordinates, limits, continuity, infinity, and the derivative. Examples are discussed. (MDH)
Descriptors: Calculus, College Mathematics, Course Descriptions, Higher Education
Peer reviewedRemus, William – International Journal of Mathematical Education in Science and Technology, 1978
The process of designing a learning system for an undergraduate business course in problem solving is described. The system includes pre-testing, problem solving strategies, providing practice and evaluating systems performance. (MN)
Descriptors: Business Education, Class Organization, College Mathematics, Course Descriptions
Peer reviewedJacobs, Judith E. – Arithmetic Teacher, 1983
Since problem solving is recommended as the focus of school mathematics, it should be given emphasis in programs for teacher preparation. A course should focus on strategies for solving problems, rather than simply using problem-solving techniques as other content is studied. (MNS)
Descriptors: Course Descriptions, Editorials, Elementary Secondary Education, Mathematics Education
Peer reviewedStockton, P. J.; Westgate, B. – Mathematics in School, 1988
Illustrates how one mathematics department has added courses to widen pupils' views of mathematics and to improve their problem-solving ability. (PK)
Descriptors: Course Descriptions, Course Organization, Curriculum, Curriculum Development
West Bloomfield Schools, MI. – 1979
This curriculum guide outlines the mathematics objectives of each of the grades K-8 under the headings of operations, sentences and problem solving, numbers and numeration, measurement, geometry, statistics, and applications. Examples of each of the objectives are given. High school minimal skills are listed. The sequence of mathematics courses…
Descriptors: Algebra, Calculus, Course Descriptions, Curriculum

Direct link
