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[

] 276

N

otes

& R

eferences

events: A la Niña Summit. Proceedings. M. Glantz (ed.) NCAR,

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(http://www.dir.ucar.edu/esig/lanina/

).

3.

Bidegain and Krecl, 1998, op. cit..

Pisciottano et al., 1994, op. cit..

Grimm et al., 1998, op. cit..

Grondona et al., 1998, op. cit..

Díaz et al., 1998, op. cit..

Baethgen, 1997, op. cit..

Podestá et al., 1998, op. cit..

Myneni et al,. 1996, op. cit..

4.

Baethgen, W. E., C. Ropelewski and M. A. Carriquiry. 2009. Tilting

the odds in maize yields: How climate information can help manage

risks. Bulletin of the American Meteorological Society (BAMS) vol. 90

(2)179-184.

5.

Ropelewski, C.F. and M.S. Halpert. 1989, op. cit..

Making stream flow monitoring work for biodiversity and social justice

1.

Van Wilgen, B.W., Richardson, D.M., Le Maitre, D.C., Marais,

C. and Magadlela, D. 2001. The economic consequences of alien

plant invasions: examples of impacts and approaches to sustainable

management in South Africa. Environment, Development and

Sustainability 3: 145–168, 2001.

2.

Le Maitre, D.C., Versfeld, D.B. and Chapman, R.A. 2000. The impact

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3.

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de Satgé, R., Urquhart, P., Manaka, B. and Moahloli, C. 2003.

Assessing the social development aspects of the Working for Water

programme. Social Team Final Evaluation Report. Working for Water

unpublished report.

5.

Giraud C., Laurent C., Ricroch A., Allsopp N., Carneiro M.-J.,

Matose F., Trouvé A., Bonnafous P., Baudry J., Perraud D., Boiron A.,

CorroyerP.,

LecoeurC., Thurneyssen A. 2008. Difficultés d’accès aux

connaissances scientifiques pour les décideurs publics chargés de

concevoir les contenus techniques de mesures réglementaires mettant

en jeu agriculture et préservation de la biodiversité. Résultats des

enquêtes réalisées en

France, au Brésil et en Afrique du Sud. Rapport Ebp-Biosoc,

Ensemble de travaux n°1 (ET1). INRA/ANR, 81 p. + annexes. http://

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Adapting to climate change and variability

1.

CONAMA, realizado por el Departamento de Geofísica, Facultad de

Ciencias Físicas y Matemáticas, Universidad de Chile, 2006, ‘Estudio

de la variabilidad climática en Chile para el siglo XXI’.

2.

Centro de Agricultura y Medio Ambiente, Universidad de

Chile, 2008, ‘Capítulo 1: Impactos producidos en el sector

silvoagropecuario de Chile frente a escenarios de Cambio Climático’,

180 pp. Informe Final.

3.

Comisión Nacional de Energía, 2008, Política Estratégica: Nuevos

Lineamientos, 176 pp.

4.

Ibid.

5.

RIDES, 2007, ‘Integrando la adaptación al cambio climático en las

políticas de desarrollo: ¿cómo estamos en Chile?’,

www.rides.cl.

Information and communication technologies and climate change

1.

This number does not include emissions from radiocommunication

systems/equipment.

G., (2007). ‘Predicting of regional scenarios and uncertainties for

defining European climate change risks and effects: The PRUDENCE

Project’, Climatic Change 81: Supplement 1, May 2007, p1-371.

-

Horvath, L., (2008), ‘Use of the spatial analogy method to analyse

possible land use change in Hungary’, AGRO-21 Füzetek No. 55,

p5-27

Earth observation and global environmental research for adaptation to

climate change – a Japanese perspective

1.

‘IBUKI’ means breath in Japanese. This nickname was given to

GOSAT because it observes the breath of the earth – GHGs.

2.

See

www.gosat.nies.go.jp/index_e.html

3.

See

www.apn.gr.jp/en/indexe.html

4.

www.env.go.jp/en/earth/cc/wacc_080618.pdf

Seasonal climate forecasts and satellite information: improving decisions

in the Uruguayan agricultural sector

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Ropelewski, C.F. and M.S. Halpert. 1987. Global and regional scale

precipitation patterns associated with El Niño/Southern Oscillation.

Mon. Wea. Rev. 115:1606-1626.

Ropelewski, C.F. and M.S. Halpert. 1989. Precipitation patterns

associated with high index phase of Southern Oscillation. J. Climate,

2:268-284.

Bidegain, M. and P. Krecl. 1998. Comportamiento de la temperatura

en el sudeste de Sudamerica (Uruguay) asociado al fenómeno ENSO.

Congreso Iberico – Latinoamericano de Meteorologia. Brasilia, Brazil.

September 1998.

Pisciottano, G.J; A.F. Díaz and C.R. Mechoso. 1994. El Niño-

Southern Oscillation impact on rainfall in Uruguay. J. Climate,

7:1286-1302.

Grimm, A.M.; S.E.T. Ferraz and J. Gomes. 1998. Precipitation

anomalies in southern Brazil associated with El Niño and La Niña

events. J. Climate:11:2863–2880.

Grondona, M.O.; G.O. Magrin; M.I. Travasso; R.C. Moschini;

G.R. Rodriguez; C. Messina; D.R. Boullon; G. Podesta and J.Jones.

Impacto del fenomeno “El Nino” sobre la produccion de trigo y maiz

en la region Pampeana Argentina. Workshop and Conference on

the 1997-98 El Niño: Impacts and Potential Applications of Climate

Prediction in Southeast South America. December 1997. Montevideo,

Uruguay.

Díaz, A.; C.D. Studzinski and C.R. Mechoso. 1998. Relationships

between precipitation anomalies in Uruguay and southern Brazil and

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11:251-271.

Baethgen, W.E. 1997. Relaciones entre la temperatura superficial

del Pacífico tropical y los rendimientos de cultivos en Uruguay.

Workshop and Conference on the 1997-98 El Niño: Impacts and

Potential Applications of Climate Prediction in Southeast South

America. December 1997. Montevideo, Uruguay.

Podestá, G.P., C. D. Messina, M.O. Grondona and G.O. Magrin.

1998. Associations between grain crop yields in central-eastern

Argentina and El Niño-Southern Oscillation. Journal of Applied

Meteorology 38: 1488-1498.

Myneni, R.B.; S.O. Los and C.J. Tucker. 1996. Satellite-based

identification of linked vegetation index and sea surface temperature

anomaly areas from 1982-1990 for Africa, Australia and South

America. Geophys. Res. Letters. 23:729-732.

2.

Baethgen, W.E. 1998. El Niño and La Niña Impacts in Southeastern

South America. Review on the causes and consequences of cold