Search arXivSearch

arXiv · 1410.6469

EMP Needs of Medical Undergraduates in a Saudi Context

Abstract

Needs analysis (NA) is an information gathering process (Nunan 1988) that is executed to identify the learners reasons for learning a language so that they might be taught the relevant teaching materials. This study was undertaken at College of Medicine and Medical Sciences (CMMS), Taif University during the academic year 2008 to identify English for Medical Purposes (EMP) needs of the medical undergraduates. Multiple methods of data collection such as exploratory interviews, observations and a questionnaire were used to find out their linguistic needs and the data were triangulated to validate the findings. The findings offered significant insights in selecting suitable course contents to teach English to freshmen medical undergraduates of CMMS. It has been reported that 1) the students lacked the required level of English language proficiency, 2) they needed reading and speaking skills more than others and 3) the data analysis also helped identify the most important language tasks in the context of CMMS. Both populations; the faculty members and the medical undergraduates, recommended that English contact hours should be increased and that EMP should be emphasized more instead of EAP to prepare the learners for their medical studies

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Choudhary Zahid Javid. 2014-10-21. EMP Needs of Medical Undergraduates in a Saudi Context. https://arxiv.org/abs/1410.6469

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related papers

Johann Bernoulli's analysis of elastic collisions (a teaching sequence to introduce the dynamic law thereby inspired)

In order to explain an elastic collision, Johann Bernoulli considered two bodies connected by a spring. Motion is defined as a succession of states of rest. Then, considering the spring to be a lever with a body at each extremity, the laws of equilibrium imply that `motion' is described by the time variation of the (common) quantity of motion of the bodies; the dynamic law is thus deduced. This inspires a teaching sequence to introduce the dynamic law (in one dimension) in introductory physics course; we call it ``bernoullian sequence''.

physics.ed-ph

Design and Initial Evaluation of a Photovoltaics-focused Course-based Undergraduate Research Experience in Physics

Traditional physics laboratory courses often focus on experiments with well-known results, limiting students' engagement in authentic scientific practices. Course-based undergraduate research experiences (CUREs), where students engage in real research with unknown outcomes, have been shown to support positive student outcomes, such as increased self-efficacy, persistence, and engagement in scientific practices. However, discipline-specific studies of CUREs in physics remain limited. We describe the development, structure, and initial implementation of a photovoltaics-focused CURE in a second-year undergraduate physics laboratory course at the University of Colorado Boulder. To examine how students experienced the course, we analyzed end-of-semester reflection assignments using the five CURE components (i.e., scientific practices, discovery, relevance, collaboration, and iteration), as well as established dimensions of research authenticity, as analytic frameworks. Students described experiences associated with all five CURE components, with collaboration, relevance, and scientific practices appearing most prominently in their reflections. Students also associated authentic research with meaningful scientific contribution, engagement in authentic scientific practices, and navigating the uncertainty and setbacks inherent in research, although fewer explicitly identified themselves as researchers or scientists. A subset of students additionally connected the course to their immediate thinking about future academic and professional pathways. This work contributes both a discipline-specific model for implementing CUREs in experimental physics laboratory courses and provides insight into how students interpret and experience authentic research within this course context.

physics.ed-ph

A Workshop Series for Effective Use of AI in Uncertain Times: Building a Physics Faculty Learning Community

Generative AI tools are being widely taken up by students in their physics courses and beyond, often before instructors and institutions can develop policies and effective approaches for the use of these tools. Building on a framework for change in the era of AI, we developed and implemented a faculty learning community to help a university physics department address these challenges collectively. Over six biweekly sessions, faculty worked through course policies, classroom conversations about AI, AI-integrated coursework tasks, and assessment. Each session shared a common structure: we presented local data and department-sourced materials, tested them in small groups, and discussed them together, emphasizing durable pedagogical approaches over specific tools and platforms, and leading with evidence of students' own AI use. The series produced a shared, evolving repository of resources for faculty to draw on. This workshop provides an adaptable, theoretically informed model for a faculty learning community that departments can build on.

physics.ed-ph