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V125BC [204]
3 years ago
5

Which statement describes thermal energy?

Chemistry
2 answers:
Butoxors [25]3 years ago
6 0

Answer:

D

Explanation:

JUST TOOK THE TEST

Alona [7]3 years ago
5 0

Answer: Option (d) is the correct answer.

Explanation:

Thermal energy is defined as the internal energy of an object because of the kinetic energy present within the molecules of the object.

So, when thermal energy is added to an object then kinetic energy within its molecules will also increase. As a result, temperature of the object will also increase due to increase in number of collisions between the molecules.

Therefore, we can conclude that the statement energy that is associated with temperature, describes thermal energy.

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On a mission to a newly discovered planet, an astronaut finds copper abundances of 69.15 % for 63cu and 30.85 % for 65cu. what i
ioda
The relative atomic mass is the weighted average mass of elements relative to 1/12th the mass of a 12-C atom.
Isotopes are atoms of the same element with different masses , in other words different numbers of neutrons.
Relative atomic mass =sum of (mass x percentage )
R.a.m = 62.9300 x 69.15% + 64.9200 x 30.85%
= 43.52 + 20.03
= 63.55 amu
8 0
3 years ago
Read 2 more answers
Plz help me thanks?!?!
Brut [27]

Answer:

Burning

Explanation:

Hope i helped :)

5 0
3 years ago
Read 2 more answers
Me=9.11×10to the -31 power
weqwewe [10]

True

Explanation:

The mass of an electron is 9.11 x 10⁻³¹kg. It is the lightest subatomic particle compared the protons and neutrons.

Protons weighs  1.67 x 10⁻²⁷kg

Neutrons  weighs  1.68 x 10⁻²⁷kg

  • Electrons carry negative charges.
  • They were first discovered by J.J Thomson where he called them cathode rays.
  • They occupy the regions in space around the nucleus.
  • The regions consists of orbitals and are called sublevels or subshells.

learn more:

Subatomic particles brainly.com/question/2757829

#learnwithBrainly

3 0
3 years ago
14. What is the mass of 5.99 moles of C6H2C14.
Flauer [41]

Hey there!

Find molar mass of C₆H₂Cl₄.

C: 6 x 12.01

H: 2 x 1.008

Cl: 4 x 35.45

------------------

     215.876g

This is the mass of 1 mole of C₆H₂Cl₄.

Multiply 215.876 by 5.99.

215.876 x 5.99 = 1293

The mass of 5.99 moles of C₆H₂Cl₄ is 1293 grams.

Hope this helps!

6 0
4 years ago
Predict the signs of !iH, !).S, and !).G of the system for the following processes at 1 atm: (a) ammonia melts at - 60°C, (b) am
Elza [17]

Answer:

Explanation:

(a) Given,

Normal melting point of ammonia is -77.7 °C

In this process , ammonia melts at - 60°C  

Now , during the process of melting , ammonia in the solid phase changes to liquid phase, and this increases the number of particles , therefore , the sign of entropy would be positive . And since , the process is an endothermic process , hence , the change in enthalphy sign will be positive .

Even , the temperature of the ammonia is more than its normal melting point .

Therefore ,  

TΔS > ΔH

Hence ,

ΔG < 0

Therefore ,  

ΔH = Positive

ΔS = Positive  

ΔG = Negative.

(b)Given,

Normal melting point of ammonia is -77.7 °C

In this process , ammonia melts at -77.7 °C

Now , during the process of melting , ammonia in the solid phase changes to liquid phase, and this increases the number of particles , therefore , the sign of entropy would be positive . And since , the process is neither endothermic process nor exothermic process, hence , the change in enthalphy sign will be neutral / zero .

Hence ,

ΔG < 0

Therefore ,  

ΔH = 0

ΔS = Positive ΔG = Negative.

(c) Given,

Normal melting point of ammonia is -77.7 °C

In this process , ammonia melts at - 100°C  

Now , during the process of melting , ammonia in the solid phase changes to liquid phase, and this increases the number of particles , therefore , the sign of entropy would be positive . And since , the process is an endothermic process , hence , the change in enthalphy sign will be positive .

Even , the temperature of the ammonia is less than its normal melting point .

Hence ,

ΔG > 0

Therefore ,  

ΔH = Positive

ΔS = Positive  

ΔG = Negative.

7 0
4 years ago
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