1757970000
The following programs are available to U.S. Scholars in Spain
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Grant
The Boundary Element Method and the Non-Destructive Identification of Cavities
The Boundary Element Method and the Non-Destructive Identification of Cavities
Grant
Identifying the Sequences of the Insulin-Sensitive Glucose Transporter's (GLUT4) Exit From the Trans-Golgi Network (TGN) and Subsequent Distribution Into the Intracellular Insulin-Sensitive Compartments
Identifying the Sequences of the Insulin-Sensitive Glucose Transporter's (GLUT4) Exit From the Trans-Golgi Network (TGN) and Subsequent Distribution Into the Intracellular Insulin-Sensitive Compartments
Grant
Identifying the Sequences of the Insulin-Sensitive Glucose Transporter's (GLUT4) Exit From the Trans-Golgi Network (TGN) and Subsequent Distribution Into the Intracellular Insulin-Sensitive Compartments
Identifying the Sequences of the Insulin-Sensitive Glucose Transporter's (GLUT4) Exit From the Trans-Golgi Network (TGN) and Subsequent Distribution Into the Intracellular Insulin-Sensitive Compartments
Grant
Catholic Women's Mobilization in Western Europe: A Comparative Gender Analysis
Catholic Women's Mobilization in Western Europe: A Comparative Gender Analysis
Grant
Mechanistic Analysis of the Functions of the Trap Complex and Other Coactivators in the Activation of T3 Responsive Promoters
Mechanistic Analysis of the Functions of the Trap Complex and Other Coactivators in the Activation of T3 Responsive Promoters
Grant
Eukaryotic Glycolysis Regulation: Studying the Structure and Functional Relationships of Phosphofructokinase (PFK)
Eukaryotic Glycolysis Regulation: Studying the Structure and Functional Relationships of Phosphofructokinase (PFK)
Grant
The Role of Neutrophils During Toxoplasma Gondii Infections
The Role of Neutrophils During Toxoplasma Gondii Infections
Grant
Probing Ligand-Receptor Forces in Normal and Malignant Cells by Atomic Force Microscopy
Probing Ligand-Receptor Forces in Normal and Malignant Cells by Atomic Force Microscopy
Grant
Using Bayesian Networks to Model the Impact of Single Nucleotide Polymorphisms (SNPs) on Human Disease Response
Using Bayesian Networks to Model the Impact of Single Nucleotide Polymorphisms (SNPs) on Human Disease Response