5 (a) Which of these describes isotopes of an element?
A same atomic number different number of neutrons
B same atomic number different number of protons
C same mass number different number of neutrons
D same mass number different number of protons
(b) Figure 7 represents a decay that can happen inside the nucleus of an atom - Edexcel - GCSE Physics Combined Science - Question 5 - 2020 - Paper 1
Question 5
5 (a) Which of these describes isotopes of an element?
A same atomic number different number of neutrons
B same atomic number different number of protons
C same mass... show full transcript
Worked Solution & Example Answer:5 (a) Which of these describes isotopes of an element?
A same atomic number different number of neutrons
B same atomic number different number of protons
C same mass number different number of neutrons
D same mass number different number of protons
(b) Figure 7 represents a decay that can happen inside the nucleus of an atom - Edexcel - GCSE Physics Combined Science - Question 5 - 2020 - Paper 1
Step 1
Which of these describes isotopes of an element?
96%
114 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
The correct answer is A: same atomic number, different number of neutrons.
Isotopes are defined as variants of a particular chemical element that have the same number of protons (which determines the atomic number) but a different number of neutrons, resulting in different mass numbers.
Step 2
Which decay is represented in Figure 7?
99%
104 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
The decay represented in Figure 7 is B: beta minus.
In beta minus decay, a neutron in the nucleus of an atom is transformed into a proton while emitting an electron (beta particle) and an antineutrino, which is depicted in the figure.
Step 3
Estimate the activity of this source in the year 2020.
96%
101 rated
Only available for registered users.
Sign up now to view full answer, or log in if you already have an account!
Answer
To estimate the activity of the cobalt-60 source in 2020, we first calculate how many half-lives have passed since 2000:
The time from 2000 to 2020 is 20 years.
The half-life of cobalt-60 is 5 years. Therefore, the number of half-lives is:
n=520=4
Since the activity halves with each half-life, we can calculate the remaining activity after 4 half-lives:
Initial activity in 2000 = 38.5 kBq
After 1 half-life (5 years): 238.5=19.25 kBq
After 2 half-lives (10 years): 219.25=9.625 kBq
After 3 half-lives (15 years): 29.625=4.8125 kBq
After 4 half-lives (20 years): 24.8125=2.40625 kBq
Thus, the estimated activity of the cobalt-60 source in 2020 is approximately 2.41 kBq.