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Lorico [155]
3 years ago
9

The relationship between the mass and the temperature of water

Physics
1 answer:
mafiozo [28]3 years ago
3 0

Answer:

MATTER is recognised through measure of MASS

MASS has no particular relation with Temperature

Temperature is a physical property of MATTER

Temperature is the measure of HEAT DENSITY in MATTER

HEAT is of mass being belonged to ENERGY MATTER, one of the three Fundamental categories of SPACE MATTER such as;

MEDIUM MATTER:- Made up of empty bubble like Vacuum Particles Spherical in STRUCTURE and Static with neither Linear nor Rotary dynamics. (Vacuum in the free space and the entrapped vacuum in elementary Particles )

ENERGY MATTER:- The same Vacuum Particles when projected out as Rays of Linear Dynamics are recognised as Energy Mater (Light Photons, Heat Photons, Electrons, Solar Wind etc.)

ATOMIC MATTER:- Made up of bubble like Spherical Particles in STRUCTURE of which Solidity is decided by the MASS of the Interior Rotary DYNAMIC system of subatomic particles. (Atoms, Atoms of the 10^15 dropped scale-Moola Atoms(Neutrinos)

HEAT is the speed slowed state of LIGHT

VACUUM is the speed lost state of the particles of ENERGY MATTER

HEAT is emerged and in contrary, disappeared from confined systems as ENTROPY due to the DYNAMICS in Contraction & Expansion

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What is the speed of a wave if the wavelength is 50 meters and the period is 10 seconds?
Karolina [17]
Based on the information you provided, this means the wave is traveling 50 meters every ten seconds. Meaning it is traveling 50/10 meters per second.
When you simplify you get 5 meters per second.
8 0
3 years ago
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what is the energy required to melt down a 12,400g Gold bar assuming its temperature goes from 23c to 1,064c
sergejj [24]

1665183.6J

Explanation:

Given parameters:

Mass of Gold = 12400g

Initial temperature = 23°C

Final temperature = 1064°C

Unknown:

Energy required to melt = ?

Solution:

The amount of heat required to cause this temperature change to heat the gold bar is given as;

   H    =   m  c Ф

 m is the mass of gold bar

  c is the specific heat capacity of gold

  Ф is the heat change

 Specific heat capacity of gold = 0.129J/g°C

  H = m c (Ф₂ - Ф₁)

 H = 12400 x 0.129 x (1064 - 23) = 1665183.6J

learn more:

Specific heat capacity brainly.com/question/7210400

#learnwithBrainly

5 0
3 years ago
This is the normal nucleotide sequence on a DNA strand: A-C-T-G-G-A-T what is a subtituction?
Sunny_sXe [5.5K]
A is the answer to this question...
3 0
4 years ago
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The table shows the charges and the distance between five different pairs of objects.
zmey [24]

Answer:

the list of forces from greatest to least is Y, W, X, Z

Explanation:

Given data:

5 pairs of charged plates with force between each pair as : F, W, X,Y, Z

Also given are the charges q1 and q2 of plates in each pair and the distances between them (refer attachment)

To find: to arrange the force from greatest to least.

Initial step is to calculate the force value using the given data of charges and distance between plates.

We know that the force between two charged plates is given by the formula:

F = \frac{kq1q2}{r^{2} }

where,

q1 and q2 are charge of the two plates

r is the distance between two plates

k is coulomb constant

Since the problem involves comparison of forces, the k values is not necessarily discussed.

Now we have to calculate force values

F = \frac{kq^{2} }{d^{2} }

W = \frac{2kq^{2} }{d^{2} }

X = \frac{kq^{2} }{4d^{2} }

Y = \frac{3kq^{2} }{d^{2} }

Z = \frac{kq^{2} }{9d^{2} }

Assume values of q = 1 and d = 2, we get

F = 0.5k

W = 0.5k

X = 0.0625k

Y = 0.75k

Z =0.025k

F and W are though same, the calculated force value shows W = 2F

Hence W is greater than F.

Therefore, the list of forces from greatest to least is Y, W, F, X, Z

Hence answer is : Y, W, X, Z

7 0
3 years ago
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1. Starch can be tested by using _______
nignag [31]

Answer:

a) iodine solution

Explanation:

this is because in the presence of starch, iodine turns a blue/black colour.

hope this helps!^^

3 0
3 years ago
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