linear ordinary differential equations造句
例句与造句
- It is a coupled system of linear ordinary differential equations.
- Like his teacher Fuchs, he worked primarily on linear ordinary differential equations.
- These solutions are often presented in the form of non-linear ordinary differential equations.
- This time evolution is given by a system of linear ordinary differential equations which can be solved.
- Given the coefficient matrix, one wishes to solve the initial value problem associated with the linear ordinary differential equation
- It's difficult to find linear ordinary differential equations in a sentence. 用linear ordinary differential equations造句挺难的
- *PM : linear ordinary differential equation, id = 7389-- WP guess : linear ordinary differential equation-- Status:
- *PM : linear ordinary differential equation, id = 7389-- WP guess : linear ordinary differential equation-- Status:
- Dr . Obi's early research dealt mainly with the question of the existence of periodic solutions of non-linear ordinary differential equations.
- The method of integrating linear ordinary differential equations with constant coefficients was discovered by Leonhard Euler, who found that the solutions depended on an algebraic'characteristic'equation.
- It is a basic feature of linear ordinary differential equations that singularities of solutions occur only at singularities of the equation, and so linear equations do not have movable singularities.
- In the study of differential equations, the "'Loewy decomposition "'breaks every linear ordinary differential equation ( ODE ) into what are called largest completely reducible components.
- You have a separable first-order linear ordinary differential equation; see the first example in Examples of differential equations .-- Lambiam 11 : 23, 24 September 2007 ( UTC)
- In summary, the Hodgkin Huxley equations are complex, non-linear ordinary differential equations in four independent variables : the transmembrane voltage " V ", and the probabilities " m ", " h " and " n ".
- Applying the law of mass action, which states that the rate of a reaction is proportional to the product of the concentrations of the reactants ( i . e . [ E ] [ S ] ), gives a system of four non-linear ordinary differential equations that define the rate of change of reactants with time t