The approximate pH of a 5x10-3 MHCl solution is 3.
The pH of a solution can be calculated using the formula pH = -log[H+], where [H+] represents the concentration of hydrogen ions in the solution. In this case, we have an HCl solution with a concentration of 5x10-3 M. To find the pH, we need to convert the concentration into the molarity of H+ ions. Since HCl is a strong acid, it dissociates completely in water, meaning that 1 molecule of HCl yields 1 H+ ion. Therefore, the molarity of H+ ions is also 5x10-3 M. Plugging this value into the pH formula, we get:
pH = -log(5x10-3)
pH = -(-3) = 3
Therefore, the approximate pH of the 5x10-3 M HCl solution is 3.
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The plausible reason for the change in mineral A will be the lower activation energy than the transferred energy.
The addition of energy will result in the change in the minerals if the activation energy is exceeded.
The minerals found in mining A and B have transferred the energy. The minimum amount of energy required to do the transition in the atoms in the activation energy.
The possible reason for the change in the mineral A will be the lower activation energy for the mineral A. The mineral B does not change because the activation energy of mineral B is higher as compared to mineral A.
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Answer: Mineral A changed because Molecular energy transferred is equal or greater than than its Activation energy
Mineral B didn't change because Molecular energy transferred is less than its Activation energy.
Explanation:
The molecules of Mineral A has been disturbed by the addition of energy causing a change and the entropy is increased. The Molecules of Mineral B has not been disturbed because the residual energy has not been overcome and therefore yielding no visible change
a. True
b. False
Magma from Earth's interior oozes from the cracks at mid-ocean ridges.
true is the right one
The molar mass of the gas that occupies the given volume is 127.4 g/mol.
The given parameters;
The number of moles of the gas is calculated form ideal gas law as follows;
PV = nRT
where;
The molar mass of the gas is calculated as follows;
Thus, the molar mass of the gas that occupies the given volume is 127.4 g/mol.
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