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Pacewicz, Christine E.; Hill, Christopher R.; Lee, Seungmin; Myers, Nicholas D.; Prilleltensky, Isaac; McMahon, Adam; Pfeiffer, Karin A.; Brincks, Ahnalee M. – Measurement in Physical Education and Exercise Science, 2022
In physical education and exercise science, it is common to examine mean differences between groups or to assess change across time. However, before group differences or change can be confidently examined, measurement invariance can be tested. Measurement invariance tests the equivalence of a construct across groups or across time. If measurement…
Descriptors: Physical Education, Exercise, Well Being, Self Efficacy
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Sung, Hoyong; Collier, David N.; DuBose, Katrina D.; Kemble, C. David; Mahar, Matthew T. – Measurement in Physical Education and Exercise Science, 2018
To examine the reliability and validity of 1-mile walk tests for estimation of aerobic fitness (VO[subscript 2max]) in 10- to 13-year-old children and to cross-validate previously published equations. Participants (n = 61) walked 1-mile on two different days. Self-reported physical activity, demographic variables, and aerobic fitness were used in…
Descriptors: Test Construction, Physical Fitness, Test Validity, Test Reliability
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Strömmer, Sofia T.; Ingledew, David K.; Markland, David – Measurement in Physical Education and Exercise Science, 2015
There are existing measures of exercise motives (what people want from exercise), but corresponding measures of gains (what people get) are needed, because motives and gains could influence each other and together influence other variables. An exercise motives and gains inventory (EMGI) was developed by creating gains scales to complement existing…
Descriptors: Exercise, Motivation, Measures (Individuals), Test Construction