Mobile technology integration in educational settings is becoming an increasingly important topic as information technology continues to improve, prices decrease, and mobile devices proliferate. Geocaching, a high-tech scavenger hunt played with mobile GPS devices, is a significant example of a mobile technology-based activity that can be incorporated into educational practice. The history and implications of geocaching and its technological contributions are explored, while numerous theoretical frameworks for implementing geocaching in educational settings are discussed. Existing research on educational geocaching is presented, and the social effects of this unique mobile technology activity are examined. Pedagogical applications and best practices are detailed across the spectrum of curricular areas—informed, in part, by the personal teaching experiences of the two authors. Ideas for future research regarding geocaching and other forms of mobile technology-based educational practices are developed. Finally, selected texts for additional reading are provided.
Objective. To compare first-year student pharmacists and nursing students with respect to their spirituality and perceptions of the role of spirituality in professional education and practice. Methods. This was a five-year, cross-sectional study. All first-year student pharmacists and nursing students were invited to participate in the survey during the first week of the fall semester in 2012 through 2016. Descriptive and inferential statistics were used to analyze the data. Results. A total of 1,084 students participated, including 735 student pharmacists and 349 nursing students. Significant differences in baseline demographics were noted between the groups. Students in both groups reported having frequent spiritual experiences. A significantly larger percentage of nursing students reported these experiences compared to student pharmacists. Furthermore, compared with student pharmacists, nursing students were more likely to anticipate that spirituality would play a role in their academic course work (76% vs 58%) and professional practice (90% vs 74%). Conclusion. Student pharmacists and nursing students reported having frequent spiritual experiences, and both groups anticipated that spirituality would be incorporated into their education and professional practice.
This work uses the framework of distributed cognition for understanding the way that educators perceive cognition in classroom application. The focus is on the elements of technological tools and peers as extensions of students' cognitive capacity. A qualitative study was conducted with teachers at a combined middle and secondary school in an urban area. Data from interviews in this exploratory case study revealed that teachers had minimal awareness of distributed cognition especially in terms of developing and assessing student learning outcomes. Teachers particularly struggled with ways to label, quantify and apply this construct. One unexpected finding was the concern about a lack of student expertise in utilizing tools. Suggestions call for systemic changes in curriculum, instruction and assessment. A focus on instructional technology as a mediator for critical thinking and problem solving is advocated. Additional reform measures include a renewed look at educators' epistemology through transformative professional learning.
With the initial implementation of the Common Core State Standards in Mathematics (CCSSM) currently under way across much of the United States and the continuing evolution and expansion of educational technology, it is imperative that teachers not only understand the new Common Core content expectations but also know how to incorporate the Common Core Standards for Mathematical Practice using technological tools. As teacher educators of pre-service and in-service K-12 teachers, the authors have developed and utilized a variety of methods to introduce the CCSSM and technology tools to our students. Among these methods are a heavy emphasis on mathematical problem solving and the use of Web 2.0 tools, both by us and our students, to illustrate mathematical concepts, promote exploration, and assess understanding. Asking pre-service and in-service teachers to produce their own CCSSM-aligned Web 2.0 creations is an effective way to teach the new standards while introducing them to the latest technological tools. With technology becoming ever more vital in the teaching and learning of mathematics, it is essential that teachers develop expertise in promoting the CCSSM with the latest technological tools.
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