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grigory [225]
4 years ago
6

Erica is working in the lab. She wants to remove the fine dust particles suspended in a sample of oil. Which method is she most

likely to use?
A) reverse osmosis
B) osmosis
C) filtration
D) dilution
Physics
2 answers:
seropon [69]4 years ago
8 0
A) reverse osmosis

Thank you for letting me answer your question here on brainly. I like to help people as much as I can, so please let me now if my answers provide any help to  you. It means a lot to me to know that my questions help provide support to people in the community to need help. If you want extra help, you can PM me! I get  lot of PMs tough, so it might take a while to respond, my apologies. Thanks for reading this, and have a great day! ~  brainily user, Lillyxrose

mamaluj [8]4 years ago
6 0

Answer: Filtration

Explanation:

Filtration can be defined as the technique which is used to remove the solute particles or solid dust particles that is suspended in the liquid.

There are various types of filtration techniques available for the filtration of dust particles from oil.

Oil is passed through the filtration membrane, filtration membrane stops the dust particles on the membrane that is equipped to filter smaller particles. The filtered oil is collected after this process.

The correct answer is that Erica will use filtration technique to filter oil.

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b. The wavelength of light emitted by the object is 233 nm

c. The type of radiation originally emitted by the object is ultraviolet radiation.

To find the wavelength, we need to know what redshift is.

<h3>What is redshift?</h3>

Redshift is the increase in wavelength and the corresponding decrease of frequency and photon energy of electromagnetic radiation.

Redshift is given by z = λ'/λ - 1 where

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Making λ subject of the formula, we have

λ = λ'/(1 + z)

Given that has a redshift of 7.6 and the JWST observes the object at a wavelength of 2 micrometres (mid-infrared light).

So,

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<h3>(b) What is the wavelength of the light emitted by the object?</h3>

Substituting the values of the variables into the equation, we have

λ = λ'/(1 + z)

λ = 2μm/(1 + 7.6)

λ = 2μm/8.6

λ = 0.233 μm

λ = 233 nm

So, the wavelength of light emitted by the object is 233 nm

<h3>c. What type of radiation was originally emitted by the object?</h3>

Since the wavelength is 233 nm and the wavelength is in the range of ultraviolet radiation 200 nm - 315 nm.

So, the type of radiation originally emitted by the object is ultraviolet radiation.

Learn more about redshift here:

brainly.com/question/27915180

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8 0
3 years ago
Kevin is refinishing his rusty wheelbarrow. He moves his sandpaper back and forth 45 times over a rusty area, each time moving a
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W = F*x*(-1) ............ or ............. W = -F*x

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Also, note that the total work is the sum of all 45 passes by the sandpaper. So our final equation, when Ffriction is substituted, is:

W = (-45)(Fnormal)(coeff of friction)(distance)
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5 0
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Solve the science problem
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