Soil salinity is one of the fastest growing threats§that affects agriculture and food production.§Detecting and evaluating the impact of soil salinity§with traditional methods has been a laborious and §time consuming job, recently methods for detecting§soil salinity have improved greatly thanks to new§technology. This book describes methods to detect§soil salinity levels in agricultural lands based on§crop conditions and Evapotranspiration (ET) using§satellite imagery. §§Quantifying ET accurately has always been considered§one of the most challenging and expensive tasks, most§of the methods currently used to achieve this task§depend on point measurements that do not reflect the§spatial variability of ET§in agriculture fields. This book describes the§development of a surface energy balance-based model§(Remove Sensing of ET - ReSET) that handles the§spatial variability in ET, the model estimates ET§based on remotely sensed data using satellite§imagery. ET is estimated for each pixel in the image§therefore displaying the spatial variability of ET§even within fields. Relationships between ET and soil§salinity levels in agriculture fields were developed§for several crops.