ordainay differential eq in daily life plzzzzzzzzzzz tell me
Here are two variablesDemand and Price, whereas Price is Independent variable &Demand is dependent variable, i.e. if price of something changes the demand will also be affected. Now simple Differential Equation isd (Demand)= constantd (Price)But keep in mind that Price is a function not a simple variable.
You can use it to build buildings, pools, and and if your boss gives you a mathematical equation, you can answer it.
The quadratic equation has many application related to resolving and modelling daily life problems. two examples are in archery and rifle sports. The trajectory of the projectile can follow a ballistic arc. The arc itself can be explained and graphically illustrated by the quadratic equation.
A differential equation is a tool to certains carrers to find and solve all kinds of problems, in my case i'm a civil engineer and i use this tool to solve problems in the area of hidraulics, and in the area of structures. The differencial ecuations have all kinds of uses in the area of engieneering and in other fields too
ordainay differential eq in daily life plzzzzzzzzzzz tell me
PDEs are used in simulation of real life models like heat flow equation is used for the analysis of temperature distribution in a body, the wave equation for the motion of a waveforms, the flow equation for the fluid flow and Laplace’s equation for an electrostatic potential.
Differential equation is defined in the domain except at few points (may be consider the time domain ti ) may be (finite or countable) in the domain and a function or difference equation is defined at each ti in the domain. So, differential equation with the impulsive effects we call it as impulsive differential equation (IDE). The solutions of the differential equation is continuous in the domain. But the solutions of the IDE are piecewise continuous in the domain. This is due to the nature of impulsive system. Generally IDE have first order discontinuity. There are so many applications for IDE in practical life.
Differential equation is defined in the domain except at few points (may be consider the time domain ti ) may be (finite or countable) in the domain and a function or difference equation is defined at each ti in the domain. So, differential equation with the impulsive effects we call it as impulsive differential equation (IDE). The solutions of the differential equation is continuous in the domain. But the solutions of the IDE are piecewise continuous in the domain. This is due to the nature of impulsive system. Generally IDE have first order discontinuity. There are so many applications for IDE in practical life.
A differential equation have a solution. It is continuous in the given region, but the solution of the impulsive differential equations have piecewise continuous. The impulsive differential system have first order discontinuity. This type of problems have more applications in day today life. Impulses are arise more natural in evolution system.
can you tell me and not ask me?!
Here are two variablesDemand and Price, whereas Price is Independent variable &Demand is dependent variable, i.e. if price of something changes the demand will also be affected. Now simple Differential Equation isd (Demand)= constantd (Price)But keep in mind that Price is a function not a simple variable.
When you go shopping you have to deal with the whole amount and partial amount. If your in London, you have Pound's (£) and Penny's (p).
You can use it to build buildings, pools, and and if your boss gives you a mathematical equation, you can answer it.
The quadratic equation has many application related to resolving and modelling daily life problems. two examples are in archery and rifle sports. The trajectory of the projectile can follow a ballistic arc. The arc itself can be explained and graphically illustrated by the quadratic equation.
A differential equation is a tool to certains carrers to find and solve all kinds of problems, in my case i'm a civil engineer and i use this tool to solve problems in the area of hidraulics, and in the area of structures. The differencial ecuations have all kinds of uses in the area of engieneering and in other fields too
first it takes you through whole lot dumb stuff and you take it up there