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1. Soil properties as key predictors of global grassland production: Have we overlooked micronutrients?

2. Plant species' origin predicts dominance and response to nutrient enrichment and herbivores in global grasslands

3. Direct Aqueous Injection-Liquid Chromatography with Post-Column Derivatization for Determination of N-Methylcarbamoyloximes and N-Methylcarbamates in Finished Drinking Water: Collaborative Study

4. The positive effect of plant diversity on soil carbon depends on climate.

5. Soil properties as key predictors of global grassland production: Have we overlooked micronutrients?

6. Global impacts of fertilization and herbivore removal on soil net nitrogen mineralization are modulated by local climate and soil properties.

7. Precipitation contributes to plant height, but not reproductive effort, for western prairie fringed orchid ( Platanthera praeclara Sheviak & Bowles): Evidence from herbarium records.

8. Nutrient addition increases grassland sensitivity to droughts.

9. Soil net nitrogen mineralisation across global grasslands.

10. Mitigating gender bias in student evaluations of teaching.

11. Herbivory and eutrophication mediate grassland plant nutrient responses across a global climatic gradient.

12. Comment on "Worldwide evidence of a unimodal relationship between productivity and plant species richness".

13. Plant species' origin predicts dominance and response to nutrient enrichment and herbivores in global grasslands.

14. Spatial heterogeneity in soil microbes alters outcomes of plant competition.

15. Predicting invasion in grassland ecosystems: is exotic dominance the real embarrassment of richness?

16. Productivity is a poor predictor of plant species richness.

17. Direct aqueous injection-liquid chromatography with post-column derivatization for determination of N-methylcarbamoyloximes and N-methylcarbamates in finished drinking water: collaborative study.

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