Answer:
Explanation:
its 85 cm because it just is in meters it would be .8m which would be decent distance to hear it
adaptations
speciation
genes
Answer:
"Darwin's finches" reside on the Galapagos Islands. Each species has a different type of beak, however, they can all be traced back to one common ancestor. The different beaks are an example of adaptations.
Explanation:
In biology, adaptation has three related meanings. Firstly, it is the dynamic evolutionary process that fits organisms to their environment, enhancing their evolutionary fitness. Secondly, it is a state reached by the population during that process.
Answer:The balloon steals electrons from your hair, leaving the hair positively charged, and the balloon negatively charged. It causes the hair to be apart from each other, because they have the same charge. Glass has a weaker hold on electrons, and silk absorbs the lost electrons.
this set of data? Which axis of a line graph does it normally go on?
If you are bombarded with 1.00 mol of photons with a wavelength of 370 nm, you are being subjected to 322 kJ/mol of energy.
The energy of a photon is given by the equation:
E = hc/λ
where:
h = Planck's constant = 6.626 x J s
c = speed of light = 2.998 x m/s
λ = wavelength of the radiation
To find the energy of a mole of photons, we need to multiply the energy of a single photon by Avogadro's number (6.022 x ).
First, we need to convert the wavelength of the radiation from nanometers to meters:
370 nm = 370 x m
Now, we can use the equation to calculate the energy of a single photon:
E = hc/λ
E = (6.626 x J s) x (2.998 x m/s) / (370 x m)
E = 5.35 x J
Next, we can calculate the energy of a mole of photons:
(5.35 x J/photon) x (6.022 x photons/mol) = 3.22 x J/mol
Finally, we can convert the energy to kilojoules per mole of photons:
3.22 x J/mol = 322 kJ/mol
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b. 15 days
c. 30 days
d. 60 days
Answer:
C. 30 years
Explanation:
Half life of a radioactive substance is defined as the time taken by the substance to decay to half of its original value.
The number of days it will take for one half of the original amount of a radioactive substance to decay given the half life of 30 years will be that same 30years according to the half life definition.
According to the formula for half life t1/2 = ln2/¶ where ¶ is the decay constant.
¶ = ln2/t1/2
¶ = ln2/30
¶ = 0.023
Using the radioactivity formula to get the time it will take 1/2 of the original amount to decay, we have;
N/No = e^-¶t where
N/No is the fraction of amount decayed at time t i.e 1/2
Substituting the given values in the equation, we have;
1/2 = e^-0.023t
ln1/2 = lne^-0.023t
ln1/2 = -0.023t
t = ln0.5/-0.023
t = 30years.