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Particles in a solid are closely packed (held together), hence are difficult to break apart. They vibrate but do not move from place to place as particles in liquids and gases do.

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Solids, liquids, and gases are made of tiny particles called atoms and molecules. In a solid, the particles are very attracted to each other. They are close together and vibrate in position but don’t move past one another. In a liquid, the particles are attracted to each other but not as much as they are in a solid.

Crystalline solids have a very orderly, three-dimensional arrangement of atoms or molecules. These particles are arranged in a repeating pattern of rows. Examples include iron, diamond, and ice. Amorphous solids are composed of atoms or molecules that are in no particular order.

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Particles in a solid can vibrate, but not move past each other. Particles in a liquid are close together with no regular pattern.

Substances that consist of large molecules, or a mixture of molecules whose movements are more restricted, often form amorphous solids. For examples, candle waxes are amorphous solids composed of large hydrocarbon molecules.

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A crystalline solid is formed by arranging the components in a regular repeating three-dimensional array (a crystal lattice), whereas an amorphous solid is formed by arranging them more or less randomly. Crystalline solids have sharp melting points, well-defined edges and faces, and diffract x-rays.

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Amorphous solids are rigid structures but they lack a well-defined shape. They do not have a geometric shape. So they are non-crystalline. This is why they do not have edges like crystals do.

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If an amorphous solid is maintained at a temperature just below its melting point for long periods of time, the component molecules, atoms, or ions can gradually rearrange into a more highly ordered crystalline form.

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The looser arrangement of particles is what allows liquids to take on the shape of their container. The intermolecular forces between particles in liquid determine properties like viscosity and surface tension. Particles in a liquid are higher in energy than the solid state, but lower in energy than the gas state.

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As the temperature of a solid, liquid or gas increases, the particles move more rapidly. As the temperature falls, the particles slow down. If a liquid is cooled sufficiently, it forms a solid.

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In a liquid, intermolecular attractive forces hold the molecules in contact, although they still have sufficient KE to move past each other. Intermolecular attractive forces, collectively referred to as van der Waals forces, are responsible for the behavior of liquids and solids and are electrostatic in nature.

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The particles that form a liquid are relatively close together, but not as close together as the particles in the corresponding solid. The particles in a liquid have more kinetic energy than the particles in the corresponding solid.

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solid: Relatively rigid, definite volume and shape. In a solid, the atoms and molecules are closely bonded that they vibrate in place but don’t move around. liquids: Definite volume but able to change shape by flowing. In a liquid, the atoms and molecules are loosely bonded.

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In amorphous solids, the particles are not arranged in a regular pattern. Amorphous solids do not melt at a distinct temperature. Instead when it is heated, it may become softer and softer or changes into another substance.

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When a solid turns into a liquid it is called melting. The Particles in a solid gain so much energy that the vibrations increase and the particles break from the fixed positions.

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The particles in a solid are arranged two different ways crystalline and amorphous solids. Crystalline as solids with particles in a pattern and create crystals. Amorphous does not have a pattern and when heated it becomes softer.

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particles in a gas are well separated with no regular arrangement. It vibrate and move freely at high speeds. 2. liguid are close together with no regular arrangement.

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The atoms in a solid are so attracted to each other that they vibrate and don’t move past each other. The molecules of a liquid are attracted to each other, but move more freely and past one another.

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Sound travels more quickly through solids than through liquids and gases because the molecules of a solid are closer together and, therefore, can transmit the vibrations (energy) faster. Sound travels most slowly through gases because the molecules of a gas are farthest apart.

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A crystal is a form of solid where the atoms are arranged in a predictable, specific arrangement. The atoms in a crystal form a repeating pattern called a crystal lattice. Examples of crystals include diamond, table salt and polymers (including plastics).

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crystal, any solid material in which the component atoms are arranged in a definite pattern and whose surface regularity reflects its internal symmetry.

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In crystalline solids, the atoms, ions or molecules are arranged in an ordered and symmetrical pattern that is repeated over the entire crystal. The smallest repeating structure of a solid is called a unit cell, which is like a brick in a wall. Unit cells combine to form a network called a crystal lattice.

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In a solid, the particles pack together as tightly as possible in a neat and ordered arrangement. The particles are held together too strongly to allow movement from place to place but the particles do vibrate about their position in the structure.

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When a solid is heated the particles gain energy and start to vibrate faster and faster. Initially the structure is gradually weakened which has the effect of expanding the solid. Further heating provides more energy until the particles start to break free of the structure.

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Which of the following best describes the motion of the particles in a piece of steel? All are moving.

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The atoms condense on the cold surface and, under a range of conditions (usually a high rate of deposition and a low substrate temperature), an amorphous solid is formed as a thin film. Pure silicon can be prepared as an amorphous solid in this manner.

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Quartz glass (SiO2) is an amorphous solid due to its short range order of constituent particles. Note Quartz is a crystalline solid while quartz glass is an amorphous solid.

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It is possible to take a crystalline solid and convert it into an amorphous solid by bombarding it with high-kinetic-energy ions. Under certain conditions of composition and temperature, interdiffusion (mixing on an atomic scale) between crystalline layers can produce an amorphous phase.

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Crystalline Solids ” Particles are arranged in a repeating pattern. They have a regular and ordered arrangement resulting in a definite shape. Amorphous Solids ” Particles are arranged randomly. They do not have an ordered arrangement resulting in irregular shapes.

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The fundamental difference between crystalline and amorphous compounds is the arrangement of their constituent atoms. A crystalline solid has a long range of ordered molecules and a sharp melting point. In contrast, an amorphous compound has a short range of ordered molecules and an irregular arrangement of its atoms.

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Crystalline solids have particles arranged in a pattern creating crystals and melt at specific temperatures. Amorphous solids do not have their particles arranged in any pattern and don’t melt at a specific temperature.

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An amorphous solid on heating at some temperature may become crystalline. Slow heating and cooling over a long period makes an amorphous solid acquires some crystalline character. Was this answer helpful?

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Amorphous solids are isotropic in nature because it has no long range order and any physical property will be same on all direction ,On all other hand , aniotopic nature is a characteristic teasture of crystalline solid .

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