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Use equation.
You'll find "real-life applications" of the quadratic equation mainly in engineering applications, not in sustainable development.
The quadratic equation has multiple real-world applications throughout engineering. One of which is modeling ballistic arcs and trajectories as in the path of bullet or projectile.
A differential equation is a measure of change. If differencing with respect to time, it is the rate of change. Location, when differentiated, gives velocity. Velocity, when differentiated, gives acceleration. There are significant applications across all aspects of science.
All the optimization problems in Computer Science have a predecessor analogue in continuous domain and they are generally expressed in the form of either functional differential equation or partial differential equation. A classic example is the Hamiltonian Jacobi Bellman equation which is the precursor of Bellman Ford algorithm in CS.
Use equation.
You'll find "real-life applications" of the quadratic equation mainly in engineering applications, not in sustainable development.
find the variable(s). then write the equation(s). finally simplify the equation(s)
Airplane,ventrimeter,andpump
The same way humans do. By different types of mutations.
Poisson's equation is a partial differential equation of elliptic type. it is used in electrostatics, mechanical engineering and theoretical physics.
NEUROCRINE CARCINOMA is an old and somewhat ambiguous entity of malignant tumor. In general, NC is a tumor that demonstrates neurocrine differention. That can be a usual carcinoma with prominent neurocrine differention, a large cell neurocrine carcinoma, small cell carcinoma or an atypical carcinoid tumor(in the lung). NEUROCRINE CARCINOMA is an old and somewhat ambiguous entity of malignant tumor. In general, NC is a tumor that demonstrates neurocrine differention. That can be a usual carcinoma with prominent neurocrine differention, a large cell neurocrine carcinoma, small cell carcinoma or an atypical carcinoid tumor(in the lung).
There is no application of differential equation in computer science
Many real world problems can be represented by first order differential equation. Some applications of differential equation are radio-active decay and carbon dating, population growth and decay, warming/cooling law and draining a tank.
The quadratic equation has multiple real-world applications throughout engineering. One of which is modeling ballistic arcs and trajectories as in the path of bullet or projectile.
Being a physicist I do not know too much about the applications. But in general the time dependent Schrodinger Equation tells us how a quantum state evolves in time. I believe this might be applicable to things like flash/thumb drives, and computers in general.
Many real world problems can be represented by first order differential equation. Some applications of differential equation are radio-active decay and carbon dating, population growth and decay, warming/cooling law and draining a tank.