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5. Elevated CO2 in semi-arid cropping systems: A synthesis of research from the Australian Grains Free Air CO2 Enrichment (AGFACE) research program

7. Narrowing uncertainties in the effects of elevated CO2 on crops

9. Intercropping—Towards an Understanding of the Productivity and Profitability of Dryland Crop Mixtures in Southern Australia

10. Statistical sampling of missing environmental variables improves biophysical genomic prediction

11. AgMIP-Wheat multi-model simulations on climate change impact and adaptation for global wheat

13. Integrating biophysical crop growth models and whole genome prediction for their mutual benefit: A case study in wheat phenology

21. Using genomic prediction with crop growth models enables the prediction of associated traits in wheat

22. Climate Change Impact and Adaptation for Wheat Protein

23. Using genomic prediction with crop growth models enables the prediction of associated traits in wheat.

24. Chapter One - Elevated CO2 in semi-arid cropping systems: A synthesis of research from the Australian Grains Free Air CO2 Enrichment (AGFACE) research program

25. Statistical Analysis of Large Simulated Yield Datasets for Studying Climate Effects

27. Intercropping—Evaluating the Advantages to Broadacre Systems

30. Early vigour in wheat: Could it lead to more severe terminal drought stress under elevated atmospheric [CO 2 ] and semi‐arid conditions?

31. Global wheat production with 1.5 and 2.0°C above pre-industrial warming

32. Climate change impact and adaptation for wheat protein

35. Global wheat production with 1.5 and 2.0°C above pre‐industrial warming

36. Elevated CO2in semi-arid cropping systems: A synthesis of research from the Australian Grains Free Air CO2Enrichment (AGFACE) research program

37. Response of wheat growth, grain yield and water use to elevated CO 2 under a Free‐Air CO 2 Enrichment (FACE) experiment and modelling in a semi‐arid environment

38. Early vigour in wheat: Could it lead to more severe terminal drought stress under elevated atmospheric [CO2] and semi‐arid conditions?

40. Multimodel ensembles improve predictions of crop–environment–management interactions

43. Australian wheat production expected to decrease by the late 21st century

44. Crop model improvement reduces the uncertainty of the response to temperature of multi-model ensembles

45. Frost response in wheat and early detection using proximal sensors.

46. Uncertainty of wheat water use: Simulated patterns and sensitivity to temperature and CO2

47. Similar estimates of temperature impacts on global wheat yield by three independent methods

48. Challenges and Responses to Ongoing and Projected Climate Change for Dryland Cereal Production Systems throughout the World.

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