The equation we need to use to solve this is: c=λν
c is the speed of light (2.998 x 10^8 m/s)
λ is the wavelength, which we're gonna solve for
ν is the frequency ( 2.4 x 10^14 Hz )
First, plug in the values we were given into the equation
2.998 x 10^8 m/s= (λ)(2.4 x 10^14 Hz)
Next, divide both sides of the equation by 2.4 x 10^14 Hz to solve for the wavelength (λ)
λ= 1.249166667 x 10^-6 m
Round to 2 significant figures
λ= 1.2 x 10^-6 m
Answer: The correct answer for the blank is-
B) cytoplasm.
Cytoplasm is the fluid filled compartment ( a thick, gel like substance) within the cell of a living organism that is mainly composed of water, salts, and proteins. It is surrounded by the cell membrane ( plasma membrane) and contains all the parts of cell ( such as in eukaryotic cell, it contains all the cell organelles except nucleus). It is the site for all the essential cellular processes.
Thus, option B) is the right answer.
Answer: Option (B) is the correct answer.
Explanation:
It is thick and gel like in nature which has fluid filled compartment.
Thus, we can conclude that out of the given options cytoplasm is a gel-like substance enclosed by the cell membrane that contains the cell's organelles.
Answer:
the cell will either
Explanation:
How is salicylic acid obtained?
Answer: 5 grams of liquid water at 20°C will have more energy.
Explanation:
Kinetic energy is the measure of temperature of the system.
The equation used to calculate kinetic energy of a particle follows:
where,
E = kinetic energy of the particles
k = Boltzmann constant =
T = temperature of the particle
From the above relation, it is visible that kinetic energy is directly related to the temperature of the system.
If the temperature of the particles is high, it means that the particles will have more energy.
We are given:
5 grams of ice cubes at -10°C
5 grams of liquid water at 20°C
So, the temperature of water particles is more than the temperature of ice cube.
Hence, 5 grams of liquid water at 20°C will have more energy.
Answer : The mass of 12.3 moles of helium (He) is, 49.2 grams.
Solution : Given,
Moles of helium = 12.3 moles
Molar mass of helium = 4 g/mole
Formula used :
Therefore, the mass of 12.3 moles of helium (He) is, 49.2 grams.
Answer:
C. 49.2 g He
Explanation:
I got it right