Physics : asked on emurray
 29.05.2021

The molecule arrangement of ice, water and steam are very different. has the most ordered arrangement, has the next most orderly arrangement, and has the least orderly arrangement of molecules. a) ice, water, steam b) steam, water, ice c) water, steam, ice d) water, ice, steam

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30.05.2023, solved by verified expert
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The answer is A cuz in ice the molecules r packed cuz its solid.In water the molecukes r more free than the molecules in ice cuz its a liquid in steam the molecules have a huge gap between each other.
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Chemistry
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P Answered by PhD

The correct answer is A. Ice, water, steam

Explanation:

The arrangement of molecules in substances is widely influenced by the state of the matter of the substance. In this way, in solids the molecules have a fix organization and are closely packed due to this, solids have both a defined shape and volume; in liquids the molecules are still close to each other but there is no a defined structure and therefore liquids have a defined volume but not a defined shape; finally, in gases molecules do not follow an orderly arrangement and there is more space between them which makes them not have a define volume or shape.

According to this, the one with the most ordered arrangement is ice because this is solid, then this is followed by water in the liquid state and finally by steam in the gas state which is the one with least orderly arrangement of molecules.

Physics
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P Answered by PhD
The answer is A cuz in ice the molecules r packed cuz its solid.In water the molecukes r more free than the molecules in ice cuz its a liquid in steam the molecules have a huge gap between each other.
Biology
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P Answered by Master
Hello There!

The molecule arrangement of ice, water and steam are very different. Ice has the most ordered arrangement, water has the next most orderly arrangement, and steam has the least orderly arrangement of molecules.

Option A.

Hope This Helps You!
Good Luck :) 

- Hannah ❤
Biology
Step-by-step answer
P Answered by Specialist
Hello There!

The molecule arrangement of ice, water and steam are very different. Ice has the most ordered arrangement, water has the next most orderly arrangement, and steam has the least orderly arrangement of molecules.

Option A.

Hope This Helps You!
Good Luck :) 

- Hannah ❤
Chemistry
Step-by-step answer
P Answered by PhD

The correct answer is A. Ice, water, steam

Explanation:

The arrangement of molecules in substances is widely influenced by the state of the matter of the substance. In this way, in solids the molecules have a fix organization and are closely packed due to this, solids have both a defined shape and volume; in liquids the molecules are still close to each other but there is no a defined structure and therefore liquids have a defined volume but not a defined shape; finally, in gases molecules do not follow an orderly arrangement and there is more space between them which makes them not have a define volume or shape.

According to this, the one with the most ordered arrangement is ice because this is solid, then this is followed by water in the liquid state and finally by steam in the gas state which is the one with least orderly arrangement of molecules.

Physics
Step-by-step answer
P Answered by Master

Answer:

see below.

Step-by-step explanation:

To solve this problem, we can use the conservation of energy and conservation of momentum principles.

Conservation of energy:

The total initial energy is the rest energy of the proton and neutron, which is given by:

Ei = (mp + mn)c^2

where mp and mn are the masses of the proton and neutron, respectively, and c is the speed of light.

The total final energy is the rest energy of the deuteron plus the energy of the gamma ray, which is given by:

Ef = (md)c^2 + Eg

where md is the mass of the deuteron and Eg is the energy of the gamma ray.

According to the conservation of energy principle, the initial energy and final energy must be equal, so we have:

Ei = Ef

(mp + mn)c^2 = (md)c^2 + Eg

Conservation of momentum:

The total initial momentum is zero because the proton and neutron are at rest. The total final momentum is the momentum of the deuteron and the momentum of the gamma ray. Since the gamma ray is massless, its momentum is given by:

pg = Eg/c

where pg is the momentum of the gamma ray.

According to the conservation of momentum principle, the total final momentum must be equal to zero, so we have:

0 = pd + pg

where pd is the momentum of the deuteron.

Solving for md and pd:

From the conservation of energy equation, we can solve for md:

md = (mp + mn - Eg/c^2)/c^2

Substituting this expression into the conservation of momentum equation, we get:

pd = -pg = -Eg/c

Substituting the given values, we have:

mp = 1.6726 × 10^-27 kg mn = 1.6749 × 10^-27 kg Eg = 2.2 × 10^6 eV = 3.52 × 10^-13 J

Using c = 2.998 × 10^8 m/s, we get:

md = (1.6726 × 10^-27 kg + 1.6749 × 10^-27 kg - 3.52 × 10^-13 J/(2.998 × 10^8 m/s)^2)/(2.998 × 10^8 m/s)^2 = 3.3435 × 10^-27 kg

pd = -Eg/c = -(3.52 × 10^-13 J)/(2.998 × 10^8 m/s) = -1.1723 × 10^-21 kg·m/s

Therefore, the mass of the deuteron is 3.3435 × 10^-27 kg, and its momentum is -1.1723 × 10^-21 kg·m/s.

Physics
Step-by-step answer
P Answered by PhD

Answer:

9.6 meters

Step-by-step explanation:

Time taken by the tomatoes to each the ground

using h = 1/2 g t^2 

t^2 = 2h/g = 2 x 50/ 9.8 = 10.2

t = 3.2 sec 

horizontal ditance = speed x time = 3 x 3.2 = 9.6 meters

Physics
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P Answered by PhD

The question specifies the diameter of the screw, therefore the IMA of this screw is 0.812? / 0.318 = 8.02

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