Einstein's equation in it's simplest form is E=mc2
so to get 9*1016 J divide this by c2 which would give you the mass
'which in this case is 1, In these units I believe this is 1kg
The equation that relates energy produced to loss is Efficiency = (Energy produced / Energy input) * 100%. Efficiency quantifies how effectively energy input is converted into useful energy output, with lower losses resulting in higher efficiency.
The equation that relates the loss of mass to energy produced is E=mc^2, where E represents energy, m represents mass, and c is the speed of light in a vacuum. This equation, proposed by Albert Einstein in his theory of relativity, describes the equivalence of mass and energy.
The energy produced when 1kg of a substance is fully converted into energy is given by Einstein's famous equation E=mc^2, where E is the energy produced, m is the mass of the substance (1kg in this case), and c is the speed of light. This equation shows that a large amount of energy can be generated from a small amount of mass.
The energy produced can be calculated using the famous equation E=mc^2, where E is the energy produced, m is the mass converted, and c is the speed of light. Converting 1/1000 kg to grams (1 g), we get 0.001 kg. Plugging these values into the equation, we find that the energy produced is approximately 90 terajoules.
In a nuclear reaction, a small amount of mass is converted into energy according to Einstein's famous equation, E=mc^2. The energy released is in the form of electromagnetic radiation, such as gamma rays, and the kinetic energy of the particles produced in the reaction.
E = M c2M = (E) / (c2)M = (9 x 1016) / (3 x 108)2= (9 x 1016) / (9 x 1016)= 1 kgAmazing. That's a lotta energy. Like 2.85 gigawatt-years, according to my Casio !
it is the food that is produced in plants
If 1 mole of carbon reacts, 1 mole of CO is produced according to the balanced chemical equation for the reaction. Therefore, if 1.4 moles of carbon react, 1.4 moles of CO will be produced.
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Albert Einstein
The balanced chemical equation for the reaction is: C + 2SO2 → CS2 + 2O2. From the equation, 1 mole of carbon produces 1 mole of CS2. Therefore, if 5.9 moles of carbon react, 5.9 moles of CS2 are produced.
In most cases, if matter seems to disappear during a chemical reaction it is because there is an invisible gas produced by the reaction that you did not see or measure.
1.2 Moles
CH4 + 2O2 --> CO2 + 2H2O
The equation for the reaction of iron oxide and metal oxide is: Fe2O3(s) + 2M(s) → 2Fe(s) + MO(s) The gas produced in this reaction could depend on the metal oxide being used, but commonly oxygen gas (O2) is produced as a byproduct.
The word equation for the reaction in which stalactites and stalagmites are produced is: calcium bicarbonate in water reacts with carbon dioxide gas to form calcium carbonate, water, and carbon dioxide gas.
Mesopotamis would ave less people in its population and would eventually disappear.