Answer:
150
Explanation:
A gas will have the lowest rate of diffusion the lowest temperature from a given set of temperature values.
Since 150 is the lowest value, then this represents the lowest rate of diffusion.
The rate of diffusion is related to the prevalent temperature. When gases diffuse, they move from regions of high concentration to the at of low concentration. They must have enough kinetic energy to move in order to diffuse.
The higher the temperature, the more the kinetic energy and higher rate of diffusion.
Answer:
15º
Explanation:
The rate of diffusion is lower when the temperature is lower. Since 15º is the lowest temperature of the answers, it has the lowest rate of diffusion.
(2) faster and more product is produced
(3) the same and the reaction has stopped
(4) the same and the reaction continues in both directions
A chemical reaction is at equilibrium. Compared to the rate of the forward reaction, the rate of the reverse reaction is the same and the reaction continues in both directions and the correct option is option 4.
Chemical equilibrium refers to the state of a system in which the concentration of the reactant and the concentration of the products do not change with time, and the system does not display any further change in properties.
It is the state of a reversible reaction where the rate of the forward reaction equals the rate of the reverse reaction. While a reaction is in equilibrium the concentration of the reactants and products are constant.
Therefore, A chemical reaction is at equilibrium. Compared to the rate of the forward reaction, the rate of the reverse reaction is the same and the reaction continues in both directions and the correct option is option 4.
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Answer:
choice 4
Explanation:
the reaction is constant but it does not stop, therefore it's choice 4
The mass percent of sodium in NaCl can be determined by dividing the mass of sodium by the total mass of the compound (NaCl), then multiplying the result by 100. So, 39.34% of the mass of sodium in NaCl is composed of sodium.
The molecular weight of chlorine (Cl) is 35.45 g/mol while that of sodium (Na) is 22.99 g/mol.
The molecular weight of NaCl is calculated as follows:
Total molecular weight = 22.99 g/mol + 35.45 g/mol = 58.44 g/mol
To determine the sodium mass percent in NaCl:
(mass of sodium / total mass of NaCl) * 100 to get the mass percent of sodium.
(22.99 g/mol / 58.44 g/mol) x 100 = 39.34% sodium mass percent
As a result, 39.34% of the mass of sodium in NaCl is composed of sodium.
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(b) At absolute zero, ideal gases freeze to give solids.
(c) At absolute zero, solid and liquid water are at equilibrium.
(d) Absolute zero is the lowest temperature so far reached in the laboratory