Different figures have different formulae; here you will find formulae for the areas of some figures: http://en.wikipedia.org/wiki/Area#Formulae
There is no formula that covers all aspects of quadrilaterals. There are different formulae for its area, or its angles.There is no formula that covers all aspects of quadrilaterals. There are different formulae for its area, or its angles.There is no formula that covers all aspects of quadrilaterals. There are different formulae for its area, or its angles.There is no formula that covers all aspects of quadrilaterals. There are different formulae for its area, or its angles.
Mainly, many magnitudes are related through different kinds of formulae. In advanced science you may have to derive your own formulae, but in more basic science, you just use existing formulae.Mainly, many magnitudes are related through different kinds of formulae. In advanced science you may have to derive your own formulae, but in more basic science, you just use existing formulae.Mainly, many magnitudes are related through different kinds of formulae. In advanced science you may have to derive your own formulae, but in more basic science, you just use existing formulae.Mainly, many magnitudes are related through different kinds of formulae. In advanced science you may have to derive your own formulae, but in more basic science, you just use existing formulae.
There are different formulae for different shapes.
The answer will depend on the shape n question. There are different formulae for some simple shapes, more complicated formulae for complex shapes, and you probably have to estimate for really complicated shapes.The answer will depend on the shape n question. There are different formulae for some simple shapes, more complicated formulae for complex shapes, and you probably have to estimate for really complicated shapes.The answer will depend on the shape n question. There are different formulae for some simple shapes, more complicated formulae for complex shapes, and you probably have to estimate for really complicated shapes.The answer will depend on the shape n question. There are different formulae for some simple shapes, more complicated formulae for complex shapes, and you probably have to estimate for really complicated shapes.
There are different formulae for calculating different kinds of energy.There are different formulae for calculating different kinds of energy.There are different formulae for calculating different kinds of energy.There are different formulae for calculating different kinds of energy.
Different figures have different formulae; here you will find formulae for the areas of some figures: http://en.wikipedia.org/wiki/Area#Formulae
There is no formula that covers all aspects of quadrilaterals. There are different formulae for its area, or its angles.There is no formula that covers all aspects of quadrilaterals. There are different formulae for its area, or its angles.There is no formula that covers all aspects of quadrilaterals. There are different formulae for its area, or its angles.There is no formula that covers all aspects of quadrilaterals. There are different formulae for its area, or its angles.
Mainly, many magnitudes are related through different kinds of formulae. In advanced science you may have to derive your own formulae, but in more basic science, you just use existing formulae.Mainly, many magnitudes are related through different kinds of formulae. In advanced science you may have to derive your own formulae, but in more basic science, you just use existing formulae.Mainly, many magnitudes are related through different kinds of formulae. In advanced science you may have to derive your own formulae, but in more basic science, you just use existing formulae.Mainly, many magnitudes are related through different kinds of formulae. In advanced science you may have to derive your own formulae, but in more basic science, you just use existing formulae.
There are different formulae for their volume, surface area, mass, etc. You have not specified what formula and for what purpose.There are different formulae for their volume, surface area, mass, etc. You have not specified what formula and for what purpose.There are different formulae for their volume, surface area, mass, etc. You have not specified what formula and for what purpose.There are different formulae for their volume, surface area, mass, etc. You have not specified what formula and for what purpose.
There are different formulae for different shapes.
There are different formulae for different shapes.
There are different formulae for different shapes.
The answer will depend on the shape n question. There are different formulae for some simple shapes, more complicated formulae for complex shapes, and you probably have to estimate for really complicated shapes.The answer will depend on the shape n question. There are different formulae for some simple shapes, more complicated formulae for complex shapes, and you probably have to estimate for really complicated shapes.The answer will depend on the shape n question. There are different formulae for some simple shapes, more complicated formulae for complex shapes, and you probably have to estimate for really complicated shapes.The answer will depend on the shape n question. There are different formulae for some simple shapes, more complicated formulae for complex shapes, and you probably have to estimate for really complicated shapes.
There are different formulae for different plane figures. Since there are infinitely many possible shapes there are infinitely many formulae.
There are different formulae for different solids such as spheres or polyhedra.
There are different formulae for different shapes.