150 low- and high-fidelity simulations and serious games scenarios created for Nursing, …
150 low- and high-fidelity simulations and serious games scenarios created for Nursing, Respiratory Therapy, EMT-Paramedic, Medical Assistant and Pharmacy Technician programs. Nursing scenarios are aligned with WTCS Statewide Nursing Curriculum. Simulation documents can be used as standalone scenarios or as augmented reality scenarios using the free, open source iOS "ARIS" app on iPads.
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This activity lesson plan is called “Build a Better Wall” where students …
This activity lesson plan is called “Build a Better Wall” where students are planners and constructors who are trying to construct a wall using various materials that can withstand an earthquake.
The objective of this course is to introduce large-scale atomistic modeling techniques …
The objective of this course is to introduce large-scale atomistic modeling techniques and highlight its importance for solving problems in modern engineering sciences. We demonstrate how atomistic modeling can be used to understand how materials fail under extreme loading, involving unfolding of proteins and propagation of cracks.
This workshop is designed to introduce students to different perspectives on politics …
This workshop is designed to introduce students to different perspectives on politics and the state of the world through new visualization techniques and approaches to interactive political gaming (and selective 'edutainment.') Specifically, we shall explore applications of interactive tools (such as video and web-based games, blogs or simulations) to examine critical challenges in international politics of the 21C century focusing specifically on general insights and specific understandings generated by operational uses of core concepts in political science.
Discusses basic physical mechanisms of particle and radiation transport due to microscopic …
Discusses basic physical mechanisms of particle and radiation transport due to microscopic collisions. Simple explanation of transport coefficients (e.g., diffusivity, viscosity, heat conductivity, electrical conductivity) and various nuclear cross sections. Derivation of the microscopic kinetic equation describing transport; the Boltzmann equation. Derivation of practical engineering fluid models (e.g., classical thermodynamics, the Navier Stokes equations, the neutron transport equations) from the kinetic model. Subject material elucidates the common roots of these widely different models. Transport is among the most fundamental and widely studied phenomena in science and engineering. This subject will lay out the essential concepts and current understanding, with emphasis on the molecular view, that cut across all disciplinary boundaries. (Suitable for all students in research.) Broad perspectives of transport phenomena; From theory and models to computations and simulations; Micro/macro coupling; Current research insights
The concentration of a solution is a simply a measure of the …
The concentration of a solution is a simply a measure of the amount of solute dissolved in a given amount of solvent or solution.
Solutions are often referred to as being “dilute” or “concentrated,” but these terms are somewhat vague (qualitative) and not very quantitative.
In this lesson, students explore two "quantitative" methods to express the concentrations of solutions: molarity and molality. Provided are links to two interactive online simulations (PhET), downloadable Student Guides/Activities, a fun laboratory activity, and a worksheet of practice problems to enhance mathematics problem solving.
People and Organizations examines the historical evolution and current human and organizational …
People and Organizations examines the historical evolution and current human and organizational contexts in which scientists, engineers and other professionals work. It outlines today's major challenges facing the management profession. The course uses interactive exercises, simulations and problems to develop critical skills in negotiations, teamwork and leadership. Students will be introduced to concepts and tools to analyze work and leadership experiences in optional undergraduate fieldwork projects.
Computer-based methods for the analysis of large-scale structural systems. Modeling strategies for …
Computer-based methods for the analysis of large-scale structural systems. Modeling strategies for complex structures. Application to tall buildings, cable-stayed bridges, and tension structures. Introduction to the theory of active structural control. Design of classical feedback control systems for civil structures. Simulation studies using motion lab.
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