A partial least squares-path model of causality among environmental deterioration indicators in the dry period of Paraopeba River after the rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) - ScienceDirect

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A partial least squares-path model of causality among environmental  deterioration indicators in the dry period of Paraopeba River after the  rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) -  ScienceDirect
Spectro-temporal analysis of the Paraopeba River water after the tailings dam burst of the Córrego do Feijão mine, in Brumadinho, Brazil
A partial least squares-path model of causality among environmental  deterioration indicators in the dry period of Paraopeba River after the  rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) -  ScienceDirect
The Igarapé Weir decelerated transport of contaminated sediment in the Paraopeba River after the failure of the B1 tailings dam (Brumadinho) - ScienceDirect
A partial least squares-path model of causality among environmental  deterioration indicators in the dry period of Paraopeba River after the  rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) -  ScienceDirect
Immediate and long-term impacts of one of the worst mining tailing dam failure worldwide (Bento Rodrigues, Minas Gerais, Brazil) - ScienceDirect
A partial least squares-path model of causality among environmental  deterioration indicators in the dry period of Paraopeba River after the  rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) -  ScienceDirect
Immediate and long-term impacts of one of the worst mining tailing dam failure worldwide (Bento Rodrigues, Minas Gerais, Brazil) - ScienceDirect
A partial least squares-path model of causality among environmental  deterioration indicators in the dry period of Paraopeba River after the  rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) -  ScienceDirect
A partial least squares-path model of environmental degradation in the Paraopeba River, for rainy seasons after the rupture of B1 tailings dam, Brumadinho, Brazil - ScienceDirect
A partial least squares-path model of causality among environmental  deterioration indicators in the dry period of Paraopeba River after the  rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) -  ScienceDirect
A partial least squares-path model of causality among environmental deterioration indicators in the dry period of Paraopeba River after the rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) - ScienceDirect
A partial least squares-path model of causality among environmental  deterioration indicators in the dry period of Paraopeba River after the  rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) -  ScienceDirect
A partial least squares-path model of environmental degradation in the Paraopeba River, for rainy seasons after the rupture of B1 tailings dam, Brumadinho, Brazil - ScienceDirect
A partial least squares-path model of causality among environmental  deterioration indicators in the dry period of Paraopeba River after the  rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) -  ScienceDirect
Scenarios of environmental deterioration in the Paraopeba River, in the three years after the breach of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) - ScienceDirect
A partial least squares-path model of causality among environmental  deterioration indicators in the dry period of Paraopeba River after the  rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) -  ScienceDirect
Immediate and long-term impacts of one of the worst mining tailing dam failure worldwide (Bento Rodrigues, Minas Gerais, Brazil) - ScienceDirect
A partial least squares-path model of causality among environmental  deterioration indicators in the dry period of Paraopeba River after the  rupture of B1 tailings dam in Brumadinho (Minas Gerais, Brazil) -  ScienceDirect
Effect of Large-Scale Circulation Anomalies on Summer Rainfall over the Yangtze River Basin: Tropical versus Extratropical in: Journal of Climate Volume 36 Issue 13 (2023)
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