You can find examples of benefits derived from science at your local library. You can cite these sources directly from the exact books you use.
Astrology, parapsychology, and faith healing. There are many other examples.
these type of quantities are called derived quantities. Their value depends on some fundamental quantities or some other derived quantities. eg. force is a derived quantity whose value depends on mass(fundamental) and acceleration(derived).
There are nearly unlimited benefits from science and technology. Technology can make our lives easier through the use of medical supplies and other things, such as cellphones. You are reaping the benefits of computers right now by finding the answer to your question. Sciences such as seismology (the study of earthquakes) help us to know when an earthquake is coming and where would be a safe place to escape to. It can also help to build more earthquake-resistant buildings by studying how the waves move and how to counteract them to avoid destruction. There are literally millions more application, but these are just a few examples. Pretty much anything man-made or or any study could be an example.
This is not at all unusual. Volume for instance is formed from length, width, and depth. Electrical power is formed from knowing voltage and current. Speed from distance and time. There are many examples easy to think of.
Derived Unit
economics and social science examples
Astrology, parapsychology, and faith healing. There are many other examples.
Derived quantities are physical quantities that are derived from one or more base quantities through mathematical operations. Examples include velocity (derived from distance and time with the formula v = d/t), acceleration (derived from velocity and time with the formula a = Δv/Δt), and density (derived from mass and volume with the formula ρ = m/V). These derived quantities are essential in physics and other scientific fields for describing and analyzing various phenomena.
Science relies on minerals for the testing of hypothesis through chemical or other means. Testing devices are constructed of materials derived from minerals. Technology is the application of scientific discovery. These applications include the manufacture of products that rely on materials derived from minerals.
We also examine in detail some other examples of more relevance to Computer Science.
The SI has 7 base units. These units can be combined in an almost unlimited way to form other (derived) units. The Wikipedia article on "SI derived units" lists some examples.
A fundamental quantity is a physical quantity that cannot be defined in terms of other physical quantities, while a derived quantity is a physical quantity that is defined in terms of fundamental quantities through mathematical relationships. Examples of fundamental quantities include mass, length, and time, while examples of derived quantities include velocity, acceleration, and energy.
Physics is the study of matter and energy and is a branch of science directly derived from mathematics. It is considered the basic science because all the other sciences either derive from physics or use the concepts of physics.
A pseudocarp is also known as an accessory fruit. The fruit is derived from tissue adjacent to the carpel. Other examples are pineapples, mulberries and figs.
I take bath every dayI visit my aunts house dailyI read story books dailyWe study science in science period
consumers take in food by eating producers or other consumers. Examples include foxes, elephants, sharks, humans, cows and venus fly traps
Derived quantities are physical quantities that are calculated from two or more base quantities. They are expressed as a combination of base units using mathematical operations such as multiplication, division, and exponentiation. Examples of derived quantities include velocity (derived from distance and time) and density (derived from mass and volume). These derived quantities play a crucial role in physics and other sciences for describing and understanding complex relationships between different physical quantities.