This document defines and provides examples of different types of instructional software: drill and practice, tutorial, simulation, instructional games, and problem-solving. Drill and practice software allows users to repeatedly practice and receive feedback on problems. Tutorial software provides complete self-contained lessons. Simulation software represents real systems. Instructional games combine education and entertainment. Problem-solving software fosters skills for solving various problems. Each type of software has benefits like increased engagement and retention when used appropriately in education. The document also provides example websites for each category.
Technology Integration in the Classroom - A case study in learning engagement...William Welder
This presentation, presented at the Houston Association of Talent Development (ATD) 2014 conference highlights two case studies in which training practitioners take a creative approach to leverage existing technologies for business results.
Session Objective:
* Dispel common concerns around technical training assessment.
* Repurpose existing learning resources for extended use in the organization.
* Identify methods to drive engagement in the classroom.
* List reporting and analytics critical for compliance management and continuous improvement.
* Outline considerations for systems integration projects.
* Overcome obstacles to training delivery and management.
Alternative Assessment Using Web-based Toolssammydog
Are papers and exams the best way to measure student learning for your course? Are students integrating your content into their personal knowledge bases in a meaningful and useful way? Do students find your assessments interesting and engaging? If your answers to any of these questions are ‘no’ or ‘maybe not’, then you might want to consider some of the alternative assessments made feasible by the variety of web-based tools available today. This presentation will discuss and provide examples of alternative assessments using such tools as Wikis, Blogs, Podcasts, Google Docs, e-Portfolios, and web-based presentation tools. Each of these tools provides student-friendly applications that will allow you to assess student learning in an engaging fashion. These strategies also can offer a ‘real world’, authentic perspective that is difficult to achieve with the more traditional assessment strategies.
Technology Integration in the Classroom - A case study in learning engagement...William Welder
This presentation, presented at the Houston Association of Talent Development (ATD) 2014 conference highlights two case studies in which training practitioners take a creative approach to leverage existing technologies for business results.
Session Objective:
* Dispel common concerns around technical training assessment.
* Repurpose existing learning resources for extended use in the organization.
* Identify methods to drive engagement in the classroom.
* List reporting and analytics critical for compliance management and continuous improvement.
* Outline considerations for systems integration projects.
* Overcome obstacles to training delivery and management.
Alternative Assessment Using Web-based Toolssammydog
Are papers and exams the best way to measure student learning for your course? Are students integrating your content into their personal knowledge bases in a meaningful and useful way? Do students find your assessments interesting and engaging? If your answers to any of these questions are ‘no’ or ‘maybe not’, then you might want to consider some of the alternative assessments made feasible by the variety of web-based tools available today. This presentation will discuss and provide examples of alternative assessments using such tools as Wikis, Blogs, Podcasts, Google Docs, e-Portfolios, and web-based presentation tools. Each of these tools provides student-friendly applications that will allow you to assess student learning in an engaging fashion. These strategies also can offer a ‘real world’, authentic perspective that is difficult to achieve with the more traditional assessment strategies.
This slide contains everything about application software. I went ahead to talk about the types of application software and some examples. I discussed also, the functions of application software.
8. Extensive feedback activitiesGood software includes: Control over presentation rate Answer judging Appropriate feedback for correct and incorrect aswers Benefits of Drill and Practice: This gives the learner the opportunity for repetitive rehearsal that increases long term memory. It provides immediate feedback, motivation, and saves the teacher time. Websites: www.mathmedia.com - a math website that allows for multiple disciplines to be practiced. http://www.rayslearning.com - a writing website that helps learners with their writing skills.
9. Tutorial This type of software envelops the entire instructional sequence, from beginning to end of a lesson. This is intended to be self contained and not require outside sources for additional instruction to master the lesson. This is a true teaching software (Doering & Roblyer 2010). Examples include: Flash card activities Branching drills Extensive feedback activities Good software includes: Extensive interactivity Adequate answer-judging feedback capabilities Thorough user control Appropriate graphics Appropriate pedagogy Adequate record keeping Benefits: This software utilizes the same aspects of drill and practices therefore it will have the same benefits. Websites: http://www.mtstutor.com - thissofwareprovidesmanydifferenttutorialprograms for education.
10. Simulation This type of software is a simulation that is designed to represent at realist system and how it works. The software usually includes tasks rather then drills, and it requires the learner to choose a specific task to accomplish (Doering & Roblyer 2010). Examples include: Simulations that teach about something; Physical simulations, Interative simulations Simulations that teach how to do something; Procedural simulations, Situational simulations Good software includes: Realistic and accurate Good graphics User control over testing and analyzing data Benefits: This software compresses time, has slow down processes, gets students involved, and makes experimentation safe. Websites: http://bridgecontest.usma.edu/download.htm - thisallows for the learner to builddifferenttypes of brideges, test the bridges and analizę the testinginformation. http://thesims.ea.com - this software allows the user to control and see the effects of changing elements to a realistic scenario effects the outcome of the sims.
11. Instructional Game This type of software bridges the worlds of gaming, entertainment, and education in an attempt to deliver fun and interactive learning (Doering & Roblyer 2010). Good software includes: Appealing formats and activities Instructional value Physical dexterity is reasonable Social, Societal, and Cultural considerations Where to use them: In place of worksheets and exercises To teach cooperative group working skills As a reward Benefits: This software adds to the fun of the classroom. It has also been observed that simulations and games add to the retention level. This comes fro the students desire to compete. Websites: http://fcit.usf.edu/mathvids/strategies/ig.html - used for mathconcepts http://www.quia.com/ - multi-facet website for instructionalgames
12. Problem Solving This type of software functions in a way of fostering component skills in or approaches to general problem-solving ability, or it may provide opportunities to practice solving various kinds of content area pronlems (Doering & Roblyer 2010). Examples include: Content-area skills Content-free skills Good software includes: Problem formats should be interesting and challenging Clear link to developing specific problem-solving ability skills Benefits: Improved interest and motivation Prevents inert knowledge Websites: http://www.crazymachinesgame.com/ - allows the student to solvedifferentproblemsrelated to design thatrequires the movement of objects.
13. Instructional Software General websites that provide multiple website lists: http://www.schoolforge.net/education-software http://www.specialconnections.ku.edu/cgi-bin/cgiwrap/specconn/index.php http://www.kaplaneduneering.com/kappnotes/ http://www.superkids.com/aweb/pages/reviews/problem/ References: Roblyer, M. D. & Doering, A. H. (2010). Integrating Education Technology into Teaching. United States of America: Allyn & Bacon.