answersLogoWhite

0

Nature is full of free energy: Life.

The question is: are we moral enough to handle this energy, if we were to get our hands on it and manipulate it.

People are searchng for free energy as if it were gold. Which is close to the truth, of course. But we have to ask ourselves how much we value the sacred gift of life, and if it's worth putting it to use for utility stuff.

User Avatar

Wiki User

15y ago

What else can I help you with?

Related Questions

How can you get free current from earth?

Wherever you get energy from, it will never be "free". It will require significant investments. To get energy from Earth sounds like geothermal energy; take advantage of the heat of Earth's interior. Yes, that is possible, and it is actually done. The advantage of this method is that there is no permanent use of fuel. But still, it isn't exactly free.Wherever you get energy from, it will never be "free". It will require significant investments. To get energy from Earth sounds like geothermal energy; take advantage of the heat of Earth's interior. Yes, that is possible, and it is actually done. The advantage of this method is that there is no permanent use of fuel. But still, it isn't exactly free.Wherever you get energy from, it will never be "free". It will require significant investments. To get energy from Earth sounds like geothermal energy; take advantage of the heat of Earth's interior. Yes, that is possible, and it is actually done. The advantage of this method is that there is no permanent use of fuel. But still, it isn't exactly free.Wherever you get energy from, it will never be "free". It will require significant investments. To get energy from Earth sounds like geothermal energy; take advantage of the heat of Earth's interior. Yes, that is possible, and it is actually done. The advantage of this method is that there is no permanent use of fuel. But still, it isn't exactly free.


Is there anybody who is using a 'free energy generator'?

There is no such thing. There is no such thing. 1) It costs money to build any machine; you can't build a machine for free. 2) But pressumably, this refers to get energy where there was none before; this is not physically possible.


Gibbs quantity of maximum possible work?

Gibbs free energy represents the maximum reversible work that can be extracted from a system at constant temperature and pressure. It combines the system's enthalpy and entropy to predict whether a reaction is spontaneous. The change in Gibbs free energy (∆G) determines whether a reaction will proceed spontaneously or not.


What is the relationship of free energy to stability work capacity?

the relationship of free energy to stability, work capacity, and spontaneous change is that it is unstable systems are rich in free energy, or G. They have a tendency to change spantaneously to more stable state , and it is possible to harness this " down hill" change to perform work.


Is it possible to have more kinetic energy than potential energy?

Yes, it is possible to have more kinetic energy than potential energy. Kinetic energy is associated with the motion of an object, while potential energy is associated with its position or state. For example, in free fall, an object has maximum kinetic energy and minimal potential energy at the bottom of its trajectory.


Is this possible to convert sound energy in to electrical energy?

Yes it is possible.


Why conversion of a photon to an electron positron pair is not possible in free space?

Because energy mass conservation will not be satisfied in free space, so that this process needs some material by which this conversion will be proceed.


How do you construct a Tesla coil to produce free energy?

You can't produce "free energy". This simply isn't possible, even if you invoke the name of famous scientists. You can look up "Tesla coil" in the Wikipedia. Such an item exists, but its purpose is NOT to produce "free energy". Thousands of inventors have been trying to get "free energy", for centuries. So far, none has succeeded. It seems unlikely that anyone ever will. You will certainly not get the recipe here on answers.com, for something nobody has discovered yet.


What is the difference between Gibbs free energy and standard free energy, and how do they relate to each other in chemical reactions?

Gibbs free energy and standard free energy are both measures of the energy available to do work in a chemical reaction. The main difference is that Gibbs free energy takes into account the temperature and pressure of the system, while standard free energy is measured under specific standard conditions. In chemical reactions, the change in Gibbs free energy determines whether a reaction is spontaneous or non-spontaneous. If the Gibbs free energy change is negative, the reaction is spontaneous, while a positive change indicates a non-spontaneous reaction. The relationship between Gibbs free energy and standard free energy lies in the fact that the standard free energy change can be used to calculate the Gibbs free energy change under any conditions.


What must happen to free energy for energy to be released?

For energy to be released in a system, the free energy must decrease. This occurs when the system moves from a higher free energy state to a lower free energy state, typically during spontaneous processes or chemical reactions. The decrease in free energy indicates that the system can perform work or release energy, often in the form of heat or light.


How can you get a grant to build a possible free energy machine?

Only if you find someone really stupid. Free energy machines have been proven over and over again to be impossible, so you're unlikely to find anyone willing to spend money on dead-end research.


What the free energy will be if the temperature is kept uniform in a system?

If the temperature is kept uniform in a system, the free energy will remain constant. Free energy, also known as Gibbs free energy, depends on temperature and is a measure of the system's ability to do work. When the temperature is held constant, there is no change in the free energy of the system.