Answer:
Ionic
Explanation:
Step 1: Define
1s²2s¹ is Lithium (Li)
1s²2s²2p⁵ is Chlorine (Cl)
Step 2: RxN
2Li (s) + Cl₂ (g) → 2LiCl (s)
Step 3: Identify
LiCl is a metal and a non-metal bonded together. Therefore, it will be an ionic bond. The Lithium would transfer it's electron to Chlorine (since it wants a full outer shell 0f 8 and it currently as 7) and form a salt.
b. neutral.
c. weakly basic.
d. strongly basic.
A solution with a pH of 8.0 is weakly basic. Thus ,the correct option is C.
The pH scale gives the measure of the acidity or basicity of a solution. It ranges from 0 to 14, where a pH of 7 is considered neutral. Solutions which have a pH less than 7 are acidic, while solutions which have a pH greater than 7 are basic.
In this case, since the pH is 8.0, which is greater than 7, the solution is basic. However, it is important to note that the basicity of the solution is weak, as it is only slightly above neutral.
For example, think of a pH of 8.0 as being similar to water from a freshwater lake. It's not strongly basic like bleach or ammonia, but it still has a slightly basic nature compared to a neutral solution.
Thus, the correct option is C.
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(2) 42 g (4) 104 g
Answer: It's 104 g
Explanation: yes
0.384 moles of atoms are in 5.00 g of ¹³C of isotope.
Moles of any substance will be calculate by dividing the given mass of the substance to the molar mass of that substance.
In the question given that:
Given mass of carbon = 5grams (because isotope of carbon is present ¹³C)
Molar mass of carbon = 13g/mol (because isotope of carbon is present ¹³C)
Moles of carbon = 5grams / 13g/mol
Moles = 0.384 moles
Hence, 0.384 moles is the required moles.
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b) hydrogen-2 and hydrogen-3
c) zinc-64 and calcium-44 d) potassium-40 and cadmium-113