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Heisenberg Uncertainty Principle
Use the Heisenberg uncertainty principle to calculateΔx for an electron withΔv = 0.120 m/s.
By what factor is the uncertainty of the (above) electron's position larger than the diameter of the hydrogen atom?
(Assume the diameter of the hydrogen atom is 1.00×10-8cm.)
Use the Heisenberg uncertainty principle to calculateΔx for a ball (mass = 144 g, diameter = 6.50 cm) withΔv = 0.120 m/s.
The uncertainty of the (above) ball's position is equal to what factor times the diameter of the ball?
Can anyone please help me with this question in detail i dont know how the Heisenberg uncertainty principle works.
How many moles of oxygen molecules would be needed to react with 111.2 grams of iron? How many grams of rust would result from this reaction
The solubility product constant (Ksp) for the dissolution of CdC2O4 as represented by the chemical equation is 1.5 x 10-8.
Using 1-butanol as the only organic starting material, write out a series of reactions that will produce this molecule:
a sample of he gas 3.0 l at 5.6 atm and 25degc was combined with 4.5 l of ne gas at 3.6 atm and 25degc at constant
In which of the following are there more than eight electrons in the valence shell of the central atom?
Match the detector or detectors that can be used in gas chromatography for the detection of the following list of analytes by dragging the detector into the box to the left of the analyte.
What is the pressure in the cylinder if the temperature is increased to 45 degrees Celsius and the piston is raised so that the volume occupied by the gas is doubled.
Using the same sample of gas ( = 275 , = 43 ), we wish to change the pressure to 2750 with no accompanying change in volume or amount of gas.
Explain which alcohol would you expect to be more water soluble more g/ml or grams of the alcohol could dissolve in say 100 ml of water, ethanol or octanol and why
Calculate the amount of energy released per gram of hydrogen nuclei reacted for the following reaction. The atomic masses are H (with 1 neutron) = 1.00782 amu; H (with 2 neutrons) = 2.01410 amu; an electron = 5.4858 x 10^-4 amu.
Using the "like dissolves like" rule and the chemical structure of your unknown liquid, explain its solubility/insolubility in water. Describe the type of bonding that your unknown has (covalent, polar covalent)
67.0 mL of a 1.80 M solution is diluted to a voume of 218 mL. A 109 mL portion of that solution is diluted using 121 mL of water. What is the final concentration
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