Strong nuclear forces hold the nucleus of an atom together. Weak nuclear forces are involved when certain types of atoms break down
Enjoy it for your cheat ! p.s i used it also
NOESY Nuclear Overhauser Effect SpectroscopyCorrelation spectroscopy (COSY)
Nuclear dynamite contain atoms with high energy so it can blow a large area whereas normal dynamite is just the opp..
A fire bomb is a conventional incendiary bomb: magnesium, napalm, etc. A nuclear bomb uses fission and/or fusion and is mostly a blast effect weapon.
Nuclear size and shape are determined by a number of factors. Size: Amount of genetic material, fluid, proteins and byproducts of the transcription process. Shape: Most nuclei are "anchored" in the cell by microtubules that are coordinated by the centrosomes. This internal structure works a lot like steel beams when constructing home or other buildings. Position: Is also determined by the relationship between motor proteins that are attached to the nuclear envelope and the microtubules.
Neither properly describes it. All attractions are forces, and there are only four forces in the known universe: gravity, weak nuclear, strong nuclear, and electromagnetic. Magnet attractions are electromagnetic. Both physical forces (that are not gravity) and chemical forces are also classified as electromagnetic forces. So neither physical or chemical properly describes a magnetic force, although classical physics would be more accurate to say than chemical.
Nuclear decay rates vary, but chemical reaction rates are constant
Einstein's equation, E=mc^2, describes the relationship between energy (E), mass (m), and the speed of light (c). It states that energy and mass are interchangeable, with a constant speed of light acting as a conversion factor. The equation suggests that a small amount of mass can be converted into a large amount of energy, as seen in nuclear reactions.
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Nuclear energy is used to produce electrical energy, but there is no direct relationship
The term that describes the tiny difference in mass between the products and reactants of a nuclear change is "mass defect." This difference in mass is converted into energy according to Einstein's famous equation E=mc^2, which explains the principle behind nuclear reactions.
E=mc^2 is known as Einstein's famous equation, which describes the relationship between energy (E), mass (m), and the speed of light (c). It states that energy and mass are interchangeable and that a small amount of mass can be converted into a large amount of energy, as seen in nuclear reactions.
Exactly the same way you 'work out' a formula for electricity, ocean depth, population, speed in a car, or nuclear energy: You decide on the quantity to be found by your formula, then you decide on the information you'll have when you use the formula, and if there's a solid relationship between the two, then you write a statement that shows exactly how the relationship works.
Energy
Energy
He did not invent or create nuclear power he dicovered the relationship between Weight and Mass for instance E=MC2 is a famous formula but this was the basis for making Nuclear power einstein was more theory than creativity
fallout emits nuclear radiation, but lots of other things do too.fallout is particulates from dust size to baseball size, nuclear radiation is a mix of electromagnetic radiation and high speed subatomic particles.
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