Role of Science, Technology and Innovation in Addressing …
77
References
1. Lybbert T, Sumner D (2010) Agricultural technologies for climate change mitigation and
adaptation in developing countries: policy options for innovation and technology diffusion
issue brief no. 6. International Centre for Trade and Sustainable Development (ICTSD) &
International Food & Agricultural Trade Policy Council (IPC)
2. IPCC (2007) Climate change 2007, impacts, adaptation and vulnerability. Contribution of working group II to the fourth assessment report of the intergovernmental panel on climate change,
Cambridge University Press, Cambridge, UK, 2007. Retrieved from http://www.ipccdata.org/
ddc_co2.html
3. Cook J, Nuccitelli D, Green SA, Richardson M, Winkler B, Painting R, Way R, Jacobs P,
Skuce A (2013). Quantifying the consensus on anthropogenic global warming in the scientific
literature. Environ Res Lett 8, 024024 (7 pp). Retrieved from https://doi.org/10.1088/17489326/8/2/024024
4. Pulatov B, Jönsson AM, Wilcke RAI, Linderson M-L, Hall K, Bärring L (2016) Evaluation
of the phenological synchrony between potato crop and Colorado potato beetle under future
climate in Europe. Agr Ecosyst Environ 224(2016):39–49. https://doi.org/10.1016/j.agee.2016.
03.027
5. World Bank (2009) Development and climate change. The World Bank Group at Work.
Washington DC 20433
6. RICCAR (2017) Regional initiative for the assessment of the impact of climate change on
water resources and socio-economic vulnerability in the Arab Region. ESCWA, UN
7. Greacen El (1981) Soil water assessment by the neutron method (CSIRO, Adelaide S. Aust),
140 pp
8. International Atomic Energy Agency (2003) Neutron and gamma probes: their use in agronomy,
2nd edn. Training Course Series No 16, 73 pp
9. IAEA, FAO (2001) Use of isotope and radiation method in soil and water management and
crop nutrition (Manual), Training Course Series No 14, 247 pp
10. IAEA (1996) Nuclear techniques to assess irrigation schedules for field crops, IAEA-TECDOC888, 273 pp
11. Food and Agriculture Organization of the United Nations & International Atomic
Energy Agency (2002). Deficit irrigation practices. Water Rep 22:102 pp. Retrieved from
ftp://ftp.fao.org/agl/aglw/docs/wr22e.pdf
12. Kirda C, Moutonnet P, Hera C, Nielsen DR (eds) (1999) Crop yield response -deficit irrigation.
Kluwer Academic Publishers, Dordrecht, The Netherlands
13. IAEA (2000) Comparison of soil water measurement using the neutron scattering, time domain
reflectometry and capacitance methods, IAEA, TECDOC- 1137, 161 pp
14. IAEA (1998) Management of nutrients and water in rainfed arid and semi-arid areas, IAEATECDOC-1026
15. Williams DG, Cable W, Hultine K, Hoedjes JCB, Yepez EA, Simonneaux V, Er-Raki S, Boulet
G, De Bruin HAR, Chehbouni A, Martogensis OK, Timouk F (2004) Evapotranspiration components determined by stable isotopes, sap flow and eddy covariance techniques. Agric For
Meteor 125:241–258
16. Yepez EA, Williams DG, Scott RL, Lin G (2003) Partitioning overstory and understory evapotranspiration in a semiarid savanna woodland from the isotopic composition of water vapor.
Agric For Meteor 119(2003):53–68
17. Saadalla MM (2001) Chemical desiccation as a screening method for post-anthesis drought
tolerance in wheat. Bull Fac Agric Cairo Univ 52:385–400
18. Amani I, Fischer RA, Reynolds MP (1996) Canopy temperature depression association with
yield of irrigated spring wheat cultivars in a hot climate. J Agron Crop Sci 176:119–126
19. Saadalla MM, Alderfasi AA (2000) Infrared-thermal sensing as a screening criterion for drought
tolerance in wheat. Ann Agric Sci Ain Shams Univ 45(2):421–437
20. Hubick K, Farquhar G (1989) Carbon isotope discrimination and the ratio of carbon gains to
water lost in barley cultivars. Plant Cell Environ 12:795–804
77
References
1. Lybbert T, Sumner D (2010) Agricultural technologies for climate change mitigation and
adaptation in developing countries: policy options for innovation and technology diffusion
issue brief no. 6. International Centre for Trade and Sustainable Development (ICTSD) &
International Food & Agricultural Trade Policy Council (IPC)
2. IPCC (2007) Climate change 2007, impacts, adaptation and vulnerability. Contribution of working group II to the fourth assessment report of the intergovernmental panel on climate change,
Cambridge University Press, Cambridge, UK, 2007. Retrieved from http://www.ipccdata.org/
ddc_co2.html
3. Cook J, Nuccitelli D, Green SA, Richardson M, Winkler B, Painting R, Way R, Jacobs P,
Skuce A (2013). Quantifying the consensus on anthropogenic global warming in the scientific
literature. Environ Res Lett 8, 024024 (7 pp). Retrieved from https://doi.org/10.1088/17489326/8/2/024024
4. Pulatov B, Jönsson AM, Wilcke RAI, Linderson M-L, Hall K, Bärring L (2016) Evaluation
of the phenological synchrony between potato crop and Colorado potato beetle under future
climate in Europe. Agr Ecosyst Environ 224(2016):39–49. https://doi.org/10.1016/j.agee.2016.
03.027
5. World Bank (2009) Development and climate change. The World Bank Group at Work.
Washington DC 20433
6. RICCAR (2017) Regional initiative for the assessment of the impact of climate change on
water resources and socio-economic vulnerability in the Arab Region. ESCWA, UN
7. Greacen El (1981) Soil water assessment by the neutron method (CSIRO, Adelaide S. Aust),
140 pp
8. International Atomic Energy Agency (2003) Neutron and gamma probes: their use in agronomy,
2nd edn. Training Course Series No 16, 73 pp
9. IAEA, FAO (2001) Use of isotope and radiation method in soil and water management and
crop nutrition (Manual), Training Course Series No 14, 247 pp
10. IAEA (1996) Nuclear techniques to assess irrigation schedules for field crops, IAEA-TECDOC888, 273 pp
11. Food and Agriculture Organization of the United Nations & International Atomic
Energy Agency (2002). Deficit irrigation practices. Water Rep 22:102 pp. Retrieved from
ftp://ftp.fao.org/agl/aglw/docs/wr22e.pdf
12. Kirda C, Moutonnet P, Hera C, Nielsen DR (eds) (1999) Crop yield response -deficit irrigation.
Kluwer Academic Publishers, Dordrecht, The Netherlands
13. IAEA (2000) Comparison of soil water measurement using the neutron scattering, time domain
reflectometry and capacitance methods, IAEA, TECDOC- 1137, 161 pp
14. IAEA (1998) Management of nutrients and water in rainfed arid and semi-arid areas, IAEATECDOC-1026
15. Williams DG, Cable W, Hultine K, Hoedjes JCB, Yepez EA, Simonneaux V, Er-Raki S, Boulet
G, De Bruin HAR, Chehbouni A, Martogensis OK, Timouk F (2004) Evapotranspiration components determined by stable isotopes, sap flow and eddy covariance techniques. Agric For
Meteor 125:241–258
16. Yepez EA, Williams DG, Scott RL, Lin G (2003) Partitioning overstory and understory evapotranspiration in a semiarid savanna woodland from the isotopic composition of water vapor.
Agric For Meteor 119(2003):53–68
17. Saadalla MM (2001) Chemical desiccation as a screening method for post-anthesis drought
tolerance in wheat. Bull Fac Agric Cairo Univ 52:385–400
18. Amani I, Fischer RA, Reynolds MP (1996) Canopy temperature depression association with
yield of irrigated spring wheat cultivars in a hot climate. J Agron Crop Sci 176:119–126
19. Saadalla MM, Alderfasi AA (2000) Infrared-thermal sensing as a screening criterion for drought
tolerance in wheat. Ann Agric Sci Ain Shams Univ 45(2):421–437
20. Hubick K, Farquhar G (1989) Carbon isotope discrimination and the ratio of carbon gains to
water lost in barley cultivars. Plant Cell Environ 12:795–804
