Answer:
0.225 L = 225 mL
Explanation:
Charles' Law states that for a fixed pressure, the volume is directly proportional to the temperature, which means things expand at the same rate as the rate of it being heated up
Mathematically, we can write that as:
V1/T1 = V2/T2, where 1 and 2 are the two situations
So, when we substitute the values in, we get:
0.25 L/298 K = V2/268 K
Rearranging this, we get:
(0.25/298) x 268 = 0.225 L = 225 mL.
This also makes sense, as the volume reduced a little when the temperature reduced (cooled down)
Let me know if this makes sense, and hope I helped! :)
Explanation:
Below is an attachment containing the solution
Answer:
pH= 0.369
Explanation:
The formic acid reacts with NaOH as
HCOOH + NaOH= HCOONa + H2O
Apply CaVa/ CbVb = Na/Nb
Ca×25/(29.8×0.3587) = 1/1
Ca= (29.8×0.3587)/25= 0.428M
pH = - log(H+)
Since only 0ne H+ is in the stoichiometric equation, it means H+ = 0.428M
pH = -log(0.428) =0.369
True, Plants don't have brains, but they still adapt to their environments.
Adaptation is a process where they are changing their nature to suit the environment.
We have seen that plants do adaptation according to the environment, as in the summer season their leaves are hanging down but in the rainy season they show blossoms and green leaves. So, according to the environment for the survival and reproduction they adapt their body.
Hence, plants have no brains, but they still adapt.
To learn more about adaptation, visit the below link:
Answer:
True
Explanation:
I just took that last year, and got a100%
B. pressure
C. temperature
D. dissolved salt
Answer:
The answer is D. dissolved salt hopefully this helps!
Salinity refers to the amount of dissolved salt in a body of water. It affects the types of organisms that can live in that water due to the effects of salinity on cellular hydration. Certain organisms are adapted to survive differing levels of salinity.
Salinity refers to the amount of dissolved salt in a body of water. It is usually expressed as the number of grams of salt per kilogram of water. The salinity of a body of water can have significant impacts on its ecosystem, including the types of organisms that can survive there.
For instance, high salinity levels can cause cells to dehydrate, making it difficult for some organisms to survive. On the other hand, certain organisms like halophiles thrive in high salinity conditions. Therefore, understanding salinity is crucial in studying marine and aquatic biology.
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Considering the definition of molar mass and molarity, the volume of each compound is:
The molar mass of substance is a property defined as its mass per unit quantity of substance, in other words, molar mass is the amount of mass that a substance contains in one mole.
Molar concentration or molarity is a measure of the concentration of a solute in a solution and indicates the number of moles of solute that are dissolved in a given volume.
The molarity of a solution is calculated by dividing the moles of solute by the volume of the solution:
Molarity is expressed in units.
You know that the molar mass of each compound is:
On the other side, you know that the mass of each compound is:
Then, considering the definition of molar mass, the amount of moles of each compound is:
The molarity of each compound is:
Considering the molarity, the volume of each compound is calculated as:
Learn more about
molar mass:
molarity: