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padilas [110]
3 years ago
15

Which of the following would you expect to have the highest value for entropy?

Chemistry
2 answers:
Anon25 [30]3 years ago
6 0
Chemistry cool

 <span>CO2 (g)  is your answer</span>
Inessa05 [86]3 years ago
5 0
Hey there i see you need help well i am here to do just that  
<span>

CO2 (g) is the correct answer
 

hope this helps </span>
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What type of bond forms between two oxygen atoms
mr_godi [17]

Answer:A double convalescent bond is where two pairs of electrons are shared between the atoms rather than just one pair. Two oxygen atoms can both achieve stable structures by sharing two pairs of electrons as in the diagram.

Explanation:

6 0
3 years ago
PLEAS HELP I HAVE LIMITED TIME!!
Burka [1]

Answer:

H2 is the limiting reactant.

Explanation:

From the diagram above:

H2 => White ball

O2 => Red ball

Before the reaction

H2 => White ball => 10

O2 => Red ball => 7

After the reaction

H2O => White and red ball => 10

O2 => 2

From the simple illustration above, we can see that all the H2 were used up in the reaction but there are left over of O2.

This simply means that H2 is the limiting reactant as all of it is used up in the reaction while O2 is the excess reactant as there are leftover.

7 0
3 years ago
The two naturally occurring isotopes of copper are copper-63 and copper-65. how many neutrons are in one atom of copper-65? 29 3
vampirchik [111]
It's 36. Since copper has 29 protons you do 65-29=36
7 0
4 years ago
Read 2 more answers
What is a radio wave?
geniusboy [140]

Answer:

Radio waves are a type of electromagnetic radiation best-known for their use in communication technologies, such as television, mobile phones and radios.

5 0
3 years ago
A helium balloon has a volume of 36 L. The pressure of the helium gas in the balloon is 132 kPa and its temperature is 27 degree
Verdich [7]

Answer:

n =1.905mol

Explanation:

Hello!

In this case, by considering helium gas as an ideal one, we can use the following equation:

PV=nRT

Whereas P should go in atmospheres and T in Kelvins; thus we proceed as follows:

n=\frac{PV}{RT}=\frac{132kPa*\frac{1atm}{101.325kPa}*36L}{0.08206\frac{atm*L}{mol*K}(27+273)K} =1.905mol

Best regards!

3 0
3 years ago
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