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MAVERICK [17]
4 years ago
13

Please Help me with this Question!!!

Chemistry
1 answer:
otez555 [7]4 years ago
5 0

equal cause if the preatators die than the other animal would over populate

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A student has a sample of a solid dissolved in a liquid. The task is to separate the mixture into its pure components. What ques
Lunna [17]

Answer:

When two or more substances, that do not react chemically, are blended together,

the result is a mixture in which each component retains its individual identity and

properties.

The separation of the components of a mixture is a problem frequently encountered

in chemistry. The basis of the separation is the fact that each component has a

different set of physical and chemical properties. The components are pure substances

which are either elements or compounds. Under the same conditions of pressure and

temperature, the properties of every sample of a pure substance are identical. Each

sample melts at the same temperature, boils at the same temperature, has the same

solubility in a given solvent, etc.

Although these and other characteristics can be used to identify a particular

substance, we will be concerned, in this experiment, with the separation of a mixture

into its components, not with the identification of the substances. Techniques used to

separate mixtures rely on differences in the physical properties of the components.

Techniques useful for the separation of mixtures include the following:

DISTILLATION is the purification of a liquid by heating it to its boiling point, causing

vaporization, and then condensing the vapors into the liquid state and collecting the

liquid. Separation of two or more liquids requires that they have different boiling

temperatures. All boiling temperatures can be reduced by decreasing the pressure

on the liquid.

EXTRACTION is the removal of one substance from a mixture because of its

greater solubility in a given solvent.

FILTRATION is the process of removing or "straining" a solid (the chemical term is

precipitate) from a liquid by the use of filter paper or other porous material.

DECANTING is the pouring of a liquid from a solid-liquid mixture, leaving the solid

behind.

CENTRIFUGING is the process of separating a suspended solid from a liquid by

whirling the mixture at high speed.

SUBLIMATION is the physical property of some substances to pass directly from

the solid state to the gaseous state without the appearance of the liquid state. Not

all substances possess this characteristic. If one component of a mixture

sublimates, this property may be used to separate it from the other components of

the mixture. Iodine (I2), naphthalene (C10H8, mothballs), ammonium chloride

(NH4Cl) and dry ice (solid CO2) are some substances which sublime.

CHROMATOGRAPHY is the process of separating a mixture by the distribution of

its components between two phases, one phase being stationary and the other

phase moving. Some examples of chromatography are gas chromatography, paper

chromatography, and thin-layer chromatography.

7 0
4 years ago
Read 2 more answers
A light year measure the distance a lightbeam can travel in one year one light year is equivalent to 9500000000000 km why do sci
Nina [5.8K]

Answer:

Light years are the only practical unit for measuring the distance of space

Explanation:

Practical... aka logical.

8 0
3 years ago
How many seconds does it take to deposit 0.94 g of Ni on a decorative drawer handle when 14.9 A is passed through a Ni(NO3)2 sol
Goshia [24]

Answer:

Time take to deposit Ni is 259.02 sec.

Explanation:

Given:

Current I = 14.9 A

Faraday constant = 96485 \frac{C}{mole}

Molar mass of Ni = 58.69 \frac{g}{mole}

Mass of Ni = 0.94 g

First find the no. moles in Ni solution,

Moles of Ni = \frac{0.94}{58.69}

                   = 0.02 mol

From the below reaction,

  Ni^{2+}  + 2e ⇆ Ni_{(s)}

Above reaction shows "1 mol of Ni^{2+} requires 2 mol of electron to form 1 mol of Ni_{(s)} "

So for finding charge flow in this reaction we write,

    = 0.02 \times \frac{2  }{1 }  \times 96485 \frac{C}{mol}

Charge flow = 3859.4 C

For finding time of reaction,

  I = \frac{q}{t}

Where q = charge flow

   t = \frac{q}{I}

   t = \frac{3859.4}{14.9}

   t = 259.02 sec

Therefore, time take to deposit Ni is 259.02 sec.

3 0
3 years ago
If the seawater carbonate ion (CO3 2-) concentration is 270 µmol/kg, a) what is the approximate rate of calcification, and b) ap
STALIN [3.7K]

Explanation:

Below are attachments containing the graph and solution.

6 0
3 years ago
3. Why do you think the image of the pencil inside the beaker of water is different than the pencil
tia_tia [17]

Answer:

the water.

Explanation:

well the water makes things look larger than due to ( the surface of a water drop curves outwards to make a dome. this outward or convex, curature light rays inward. the result is an enlarge ment image on the eye. / makes it look larger) + more mass.

6 0
3 years ago
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