Radioactive isotopes last for less time, is the one among the following choices given in the question that shows the way a radioactive isotope and a stable isotope differs
What is the activation energy of this reaction?
Answer:
Ea = 35 kJ.
Explanation:
Activation energy (Ea) is the difference between the potential energy of intermediate "activated complex/ peak" and reactants.
Ea = P.E. of products - P.E. of reactants = 65 kJ - 30 kJ = 35 kJ.
kindly find the attached image.
Answer: 2.30x10²⁴ molecules CO2
Explanation: Solution:
Convert mass of CO2 to moles
Convert moles of CO2 to molecules using Avogadro's number.
168.2 g CO2 x 1 mole CO2 / 44 g CO2 x 6.022 x10²³ molecules CO2 / 1 mole CO2
= 2.30 x10²⁴ molecules CO2
The sample of carbon dioxide weighing 168.2 grams contains approximately 2.30 x 10^24 molecules. This is calculated by first converting the sample mass to moles, and then multiplying by Avogadro's Number.
To calculate the number of molecules in a sample, you need to know the formula for the substance and the molar mass of the substance. For carbon dioxide (CO2), the molar mass is 44.01 grams/mole.
The sample mass is 168.2 grams, so to calculate the number of moles, we divide the mass of the sample by the molar mass:
Number of moles = Sample Mass / Molar Mass =168.2 grams / 44.01 grams/mole = 3.82 moles (rounded to two decimal places).
The number of molecules is then calculated by multiplying the number of moles by Avogadro's Number (6.022 x 10^23 molecules/mole):
Number of molecules = Number of Moles x Avogadro's Number = 3.82 moles x 6.022 x 10^23 molecules/mole = 2.30 x 10^24 molecules (rounded to two decimal places).
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• It must have a high melting temperature (so the rockets don’t melt it)
Which kind of bonds should the material Mrs. Nogaki chooses to make her suit from have?
Question 6 options:
Metallic Bonds
Covalent Bonds
Ionic Bonds
Answer:
Ionic Bonds
Explanation: