Answer:
The Correct answer is C
Explanation:
The sequence of three bases which codes for a specified amino acid.
Answer:
Which best describes a codon? 1. a cell structure that gives the master instructions for an organism 2. a segment of DNA that is the basis of heredity in organisms 3. the sequence of three bases that codes for a specific amino acid 4. the basic unit of structure and function of all living things
B. 0.0860
C. 0.113
D. 0.761
The dry solute has a mass of 0.086 g. 0.113 g of water evaporated while heating, the concentration in G solute / mL solvent at 30.1 C is 0.88.
To find the concentration in g solute / mL solvent, we first need to find the mass of the solvent left after evaporation:
Mass of water before evaporation = 0.113 g
Mass of water after evaporation = 0.113 g - 0.086 g = 0.027 g
Since 1 g of water has a volume of 1 mL, the volume of water after evaporation is also 0.027 mL.
Next, we need to convert the temperature to Kelvin:
T = 30.1 + 273.15 = 303.25 K
We can now use the formula:
concentration = (mass of solute / mass of solvent) / (1 - (mass of water evaporated / mass of solvent))
Plugging in the values we get:
concentration = (0.086 g / (0.027 g)) / (1 - (0.113 g / (0.086 g + 0.027 g)))
concentration = 0.88 g/mL
Therefore, the answer is A. 0.88.
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Answer:
A
Explanation:
worked for me on acellus
Answer:
water and salt
Explanation:
In the FLVS salt will be your answer but technaically when a acid reacts with a base it can create salt and water
2.09 x 1020
O 2.31% 10110
O 1.18 x 102 103
O 1.11% 1021)
Answer:
Each cyclist will need to drink 619 l
Explanation:
Hi there!!
First, let´s convert the miles to kilometers:
If 1.0 mi = 1609 m, then 385 mi will be:
385 mi · (1609 m/ 1.0 mi) · (1 km/ 1000 m) = 619 km
Now, if each cyclist need to drink one liter water per kilometer ( I think that´s a lot of water!), for the entire journey each cyclist will need to drink:
619 km · 1 l/km = 619 l
Then, each cyclist will need to drink 619 l.
Answer:
Explanation:
When an electron moves from a lower energy level to a higher energy level, energy is absorbed by the atom. When an electron moves from a higher to a lower energy level, energy is released and photon is emitted.
this emitted photon is depicted as a small wave-packet being expelled by the atom in a well-defined direction.