Learning objectives

  1. Understand the foundational concepts of Educational Technology (EdTech) and its role in transforming K-12 education by enhancing teaching methods and improving learning outcomes.

  2. Analyze the significance of research, evidence, and impact assessments in evaluating the effectiveness and educational value of EdTech solutions.

  3. Explore various evaluation methodologies such as randomized controlled trials, quasi-experimental designs, mixed-methods research, and case studies to assess EdTech innovations.

  4. Develop the ability to identify and navigate challenges like equity, accessibility, and contextual appropriateness when implementing EdTech policies and strategies.

Introduction

In today’s digital age, educational technology (EdTech) has the potential to transform K-12 education by enhancing teaching methods, engaging students, and improving learning outcomes. Policy-makers need to understand how to effectively evaluate these technologies is crucial to making informed decisions that can drive educational improvements and allocate resources effectively. This unit will provide you with a foundational overview of EdTech, the significance of research and evidence in evaluating its impact, and the various approaches available for assessing educational technologies.

This terminology is taken from the Glossary developed by the International Centre for EdTech Impact researchers and collaborators, available from: https://www.foreduimpact.org/glossary

Glossary

Fact Box: Types of Research and Their Relevance for EdTech Evaluations

A pupil-level RCT can be used to establish proof-of-concept for a new EdTech solution by randomising children within one school to engage with a new EdTech compared to standard instructional practice. This enables a rigorous test of an EdTech solution whilst controlling for external school-level factors influencing results. Pitchford (2015) adopted this approach to demonstrate proof-of-concept that a personalised learning EdTech – onecourse – significantly improved foundational numeracy compared to standard classroom instruction within one primary school in Malawi. The program is now being scaled nationwide.

Examples:

A quasi-experimental study was adopted by Pitchford and colleagues (2019) to assess if an EdTech solution enhanced foundational skills compared to standard practice in primary schools in Malawi. The EdTech solution was implemented in seven ‘intervention’ schools chosen by the Government of Malawi. To compare to standard practice, seven ‘control’ schools were recruited that did not have the Edtech solution, but were matched to the intervention schools in key demographics, including number of 1st- and 2nd-grade pupils, number of 1st- and 2nd-grade teachers, overall school size and geographical location, in an attempt to control for these variables influencing results.

A mixed-methods study was adopted by Outhwaite and colleagues (2019) to evaluate the impact of the implementation of an EdTech solution on learning outcomes. A two-phased approach was used that combined qualitative data with quantitative analyses to examine the causal relationships between intervention implementation and outcomes in the context of a maths app intervention previously evaluated in a RCT across 11 UK schools. Phase I identified four implementation themes from class observations which were then rated so they could be entered into a regression analysis in Phase II, to examine if the implementation themes predicted learning outcomes.

How policy makers in Malawi used research evidence to inform decisions to adopt EdTech to support foundational learning in all state primary schools

Case study:

 In 1994, Malawi introduced free primary education, significantly increasing access to schooling. However, the country, one of the world’s poorest, faces a high learning poverty rate of 87%, meaning that the majority of children in grade 4 are unable to read. This learning gap is exacerbated by overcrowded classrooms, limited resources, and a shortage of trained teachers, all of which hinder foundational education in the country.

To address these challenges, the Government of Malawi, in partnership with the non-profit organizations Imagine Worldwide and onebillion, has introduced an innovative EdTech designed to improve literacy and numeracy skills. This EdTech uses personalized, adaptive software – onecourse – on tablets, offering children in grades 1-4 engaging activities, games, and stories tailored to their individual learning levels.

In 2013, a randomized control trial demonstrated the effectiveness of this technology. Children using the software for just 30 minutes a day for 12 weeks showed significant improvements in numeracy compared to traditional classroom methods. Further research confirmed that the EdTech program boosted literacy and numeracy skills for both boys and girls and for children with special educational needs, and was effective in diverse contexts, including bilingual and refugee settings.

Rigorous, ongoing studies have shown that the EdTech not only improves academic outcomes but also increases children’s excitement about learning and enhances school attendance and learners’ confidence. The program has even helped mitigate learning loss during COVID-19 school closures. The program is now being implemented nationwide, with plans to serve 3.8 million children annually across all 6,000 state primary schools in Malawi.

Informed by strong research evidence, the Government of Malawi officially launched the nationwide rollout of the program in 2022. The program exemplifies how EdTech can help eliminate learning poverty and improve educational outcomes for marginalized children globally. The hope is that other governments will follow Malawi’s lead in making foundational education a reality for all children.

Further information about this case study can be found here.

Quiz