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lorasvet [3.4K]
3 years ago
7

The number, 6.022 x 1023 is known as a ___.

Chemistry
1 answer:
Gennadij [26K]3 years ago
4 0

Avogadro's Law is the equation of 6.022 x 10^23 so I hope this helps with the question you are trying to ask
You might be interested in
2. How does dilation of the blood vessels of the skin reduce the temperature of the skin surface?
KATRIN_1 [288]

Answer:

this is what i know

Explanation:

Blood vessels have the ability to dilate and constrict to control body temperatre. When body temperature is too low, the tiny blood vessels near the surface of the skin (capillaries) constrict (vasoconscriction). This decreases the blood flow near the surface of the skin so less heat is lost through radiation.

4 0
4 years ago
You have been given three test tubes one is acid other two is basic and distilled water how will you find the respective only wi
Masteriza [31]

Answer:

red litmus paper stays red in acidic and neutral solution.

red litmus paper turns blue in basic and alkaline solutions

the two basic will turn it blue

the acid will turn it red

8 0
4 years ago
A slow chemical reaction will have...
yawa3891 [41]

Answer:

Ay high concentration of reactants

Explanation:

To slow down a reaction, you need to do the opposite. Factors that can affect rates of reactions include surface area, temperature, concentration, and the presence of catalysts and inhibitors. ... Concentration - another way to increase the rate of a chemical reaction is to increase the concentration of the reactants.

5 0
3 years ago
naturally occurring bromine molecules, br2 have masses of 158, 160, and 162. they occur in the relative abundances 25.69%, 49.99
4vir4ik [10]
The average atomic mass of an element can be determined by multiplying the individual masses of the isotopes with their respective relative abundances, and adding them. 

Average atomic mass of Br = 158 amu(0.2569) + 160 amu(0.4999) + 162 amu(0.2431)
Average atomic mass = 159.96 amu

As described in the problem, the relative abundance for Br-79 is 25.69%. This is because 2 atoms of Br is equal to 79*2 = 158 amu. Similarly, the relative abundance of Br-81 is 81*2 = 162, which is 24.31%.
4 0
3 years ago
Using the accepted value for the specific heat of tungsten (See the References tool), calculate the final temperature of the wat
miss Akunina [59]

Answer:

22.75° C

Explanation:

Heat loss = Heat gain

Thus, Q{tungsten}=Q{water}+Q{calorimter}Q

tungsten= Q(water) + Q(calorimeter) ------------(i)

At equilibrium final temperature of the system is the same for all it's constituents. Let this temperature be T{f}° C

Q=ms\∆T =c\∆TQ=msΔT=cΔT

m = mass of the substance (in gms.gms. )

s = specific heat capacity (in J/g°CJ/g°C )

ΔT= change in temperature of the substance ( °C )

c= heat capacity of the substance ( J/°CJ/°C )

Assuming we were given tha

m{tungsten}=19.40 gms.m

​

Temperature of Tungsten=97.35°C

m{water}=83.87gms

Temperature of water= 20.58°C = temperature of calorimeter

=20.58°C

​

At first the calorimeter will be at equilibrium with the water

Specific heat capacity{calorimeter}=1.83 J/°Cc

calorimeter

​

specific heat capacity{water}=1J/g°Cs

specific heat capacity{tungsten}=0.13J/g°C

Slotting in the values into (i), we have;

19.40 ×0.13(97.35-T{final} )=83.87×1(T{final} - 19.40 × 0.13(97.35−T{final}

​

=83.87×1(T{final}) −20.58)+1.83×(T{final} -20.58)20.58)+1.83∗(T{final}} -20.58)

2.522(97.35-T{final})=85.7(T{final}-20.58)2.522(97.35−T{final}

​

=85.7(T{final} −20.58)

2.522×97.35-2.522T{final} =85.7T{final}×85.7× 20.582.522×97.35−2.522T{final} =85.7T{final}−85.7×20.58

245.517+1763.706=88.222T{final} 245.517+1763.706=88.222T{final}

​

T{final}=2009.223/88.222T

f

​

=2009.223/88.222

=22.775° C

4 0
3 years ago
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