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Using longitudinal data, this article examines mobility and wage equilibration patterns for instructional personnel for kindergarten through the twelfth grade. The study concludes that (1) contrary to popular belief, educators are at least as responsive as other workers to interoccupational wage differences in deciding to change occupations; (2) educators paid above (below) the wage they could expect in the economy at large experience less (greater) than average wage growth; (3) educators are responsive to wage differentials within teaching in deciding to change districts but not as strongly responsive as to wage differentials between teaching and other occupations; and (4) educators paid above (below) the average wage for educators with similar qualifications experience less (greater) than average wage growth from one school year to the next.“Frustrated teachers stew over working conditions, but most don't quit.” 相似文献
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Educational technology research and development - 相似文献
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Pulmonary diffusing capacity (DICO), together with spirometric variables, arterial oxygen tension (paO2) and cardiac output were determined before and at intervals after maximal arm cranking, treadmill running and ergometer rowing. Independent of the type of exercise, D1CO increased immediately post-exercise from a median 13.6 (range 7.3-16.3) to 15.1 (9.3-19.6) mmol min-1 kPa-1 (P < 0.01). However, it decreased to 11.6 (6.9-15.5) mmol min-1 kPa-1 (P < 0.01) after 24 h with cardiac output and paO2 at resting values, and D1CO normalized after 20 h. Thoracic electrical impedance at 2.5 and 100 kHz increased slightly post-exercise, indicating a decrease in thoracic fluid balance, and there were no echocardiographic signs of left ventricular failure at the time of the decrease in D1CO. Also, active muscle (limb) circumference and volume, and an increase in haematocrit from 43.8 (38.0-47.0) to 47.1 (42.7-49.8) (P < 0.01), had normalized at the time of the decrease in D1CO. Vital capacity, forced vital capacity, forced expiratory volume in 1 s, peak and peak mid-expiratory flows did not change. However, total lung capacity increased from 6.8 (5.0-7.6) to 7.0 (5.1-7.8) litres (P < 0.05) immediately after exercise and remained elevated at 6.9 (5.1-8.7) litres (P < 0.05) when a decrease in D1CO was noted. The results demonstrate that independent of the type of maximal exercise, an approximate 15% reduction in D1CO takes place 2-3 h post-exercise, which normalizes during the following day of recovery. 相似文献
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