Stochastic Differential Equations
Differential equations that combine deterministic evolution with random forcing to represent systems influenced by continuous uncertainty.
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Clear searchDifferential equations that combine deterministic evolution with random forcing to represent systems influenced by continuous uncertainty.
Coastal vegetated habitats such as mangroves, salt marshes and seagrass meadows that capture and store substantial carbon in biomass and sediments.
Continuously updated computational representations of physical assets or processes used to estimate state, test scenarios and guide decisions.
The characterisation and management of subsurface heat, fluids and fractures for durable geothermal energy production.
Irregular, multiscale fluid motion in which nonlinear interactions transport momentum, heat and energy across a hierarchy of eddies.
Engineered structures whose collective wave response is governed primarily by subwavelength geometry rather than bulk composition alone.
The framework that combines quantum mechanics with special relativity by treating particles as excitations of underlying fields.
The deformation, sliding and mass exchange that govern how land ice flows from accumulation zones toward its margins.
The capacity of reef ecosystems to resist disturbance, recover structure and retain ecological function under environmental change.
Machine-learning architectures that learn representations from entities connected by relational structure.
The wind-, buoyancy- and tide-driven movement of seawater that redistributes heat, carbon, nutrients and momentum.
Variation within species, among species and across ecosystems, together with the interactions that sustain ecological function.
How electron transport and a proton gradient power ATP production across the inner mitochondrial membrane.
The framework that explains the motion of Earth's lithospheric plates and the concentration of geological activity at their boundaries.