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hoa [83]
4 years ago
13

Can you give examples of bad using radioactive elements ?

Chemistry
1 answer:
Katyanochek1 [597]4 years ago
8 0
In early ninetees it was used as a paint in watch factories.
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Ocean water is a combination of salt and water. Which of the following best describes the composition of ocean water? It is an e
brilliants [131]

Answer:

The ocean is made up of salt water, which is a combination of fresh water, plus minerals collectively called "salts." These salts aren't just sodium and chloride (the elements that make up our table salt), but other minerals such as calcium, magnesium, and potassium, among others.

Explanation:The answer is since particles can be found in ocean water It is a compound, since it results from the combination of elements It is a solution

3 0
3 years ago
Which shows evidence of active transport?
Aloiza [94]
Cells X and Y.
Have a nice day.
4 0
3 years ago
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A chemistry student in lab needs to fill a temperature-control tank with water. The tank measures 24.0 cm long by 21.0 cm wide b
Natalija [7]

Answer:

The required volume of water the student needs is 4.9 litres of water

Explanation:

From the diagram related to the question, we have;

The dimensions of the tank are;

Length of tank = 24.0 cm = 0.24 m

Width of tank = 21.0 cm = 0.21 m

Depth of tank = 13.0 cm. = 0.13 m

Allowance provided between the top of the tank and the top of the water = 2.0 cm

Diameter of the round bottom flask, D = 10.5 cm = 0.105 m

Therefore, the radius of the round bottom flask, r = 0.105/2 = 0.0525 m

Therefore we have;

Depth of water in the tank = Depth of tank - Allowance provided between the top of the tank and the top of the water

∴ Depth of water in the tank = 13.0 - 2.0 = 11.0 cm = 0.11 m

Given that the flask is immersed in the water contained in the tank to raise the tank water level, we have;

Volume of water + Volume of flask in the tank = Length of tank × Width of tank × Depth of water in the tank

Volume of water + Volume of flask in the tank =  0.24 × 0.21 × 0.11 = 0.005544 m³ = 0.005544 m³× 1000 l/m³ = 5.544 l

The volume of the spherical flask = 4/3·π·r³ = 4/3·π·0.0525³ = 6.06×10⁻⁴ m³ = 6.06×10⁻⁴ m³ × 1000 l/m³ = 0.606 l

The required volume of water the student needs , V = Volume of water + Volume of flask in the tank - The volume of the spherical flask = 5.544 l - 0.606 l = 4.9 l.

6 0
3 years ago
BRAINLIEST ANSWER! What is the best description of the side of the moon that faces Earth? A. goes through cycles B. the same C.
spayn [35]
The answer for the question is A
4 0
3 years ago
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For the reaction X + Y → Z, the reaction rate is found to depend only upon the concentration of X. A plot of 1/X verses time giv
Kisachek [45]

Answer:

Option (b) is correct

Explanation:

For a second order of reaction of type:

                                2A\rightarrow products

Rate law is -  rate = k[A]^{2}, where k is rate constant and [A] is concentration of A

Integrated rate law is-  \frac{1}{[A]}=\frac{1}{[A]_{0}}+kt, where [A]_{0} is initial concentration of reactant A and [A] is concentration of A after "t" time (k and [A]_{0}[/tex] are constants)

The integrated rate law can be compared with y= mx+c equation for a straight line (x vs y) where \frac{1}{[A]} is y and t is x.

As the rate of reaction depends only upon concentration of X therefore-

                                   rate = k[X]^{2}

3 0
3 years ago
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