Gases have the maximum intermolecular space among the three states of matter (solid, liquid, gas). This is because gas particles are far apart and have weak forces of attraction between them, allowing them to move freely and occupy a larger volume.
Solid matter typically has the maximum intermolecular forces compared to liquids and gases. This is because the particles in a solid are closely packed together, allowing for stronger attractions between them such as van der Waals forces, hydrogen bonding, and dipole-dipole interactions.
The solid state of matter possesses the maximum rigidity. In solids, particles are packed closely together in fixed positions, resulting in strong intermolecular forces that hold the particles in place. This fixed arrangement gives solids their definite shape and volume, thus providing rigidity.
The molecules gain energy so they break up the solid structure and move more freely, however, they still have some attraction. More energy is required to weaken this attraction This molecule to molecule attraction is weakest in gaseous state of matter
The liquid phase of matter is a state in which particles have enough energy to move and flow past each other but are still close enough to maintain attraction. Liquids have a definite volume but take the shape of their container.
Gases have the maximum intermolecular space among the three states of matter (solid, liquid, gas). This is because gas particles are far apart and have weak forces of attraction between them, allowing them to move freely and occupy a larger volume.
This is a solid.
it depends on the force of attraction between is atoms. if they are compact, i.e.; the atoms are are very much close & their force of attraction is very high the substance belongs to solid state.
gas state of matter has less energy be cause of low intermolecular attraction.
Volume and Shape determine the state of matter. so that means that volume is the same as shape and that is the matter that detirmins its state the book you are using is new york sience gleonce book right???? Correction:The motion of the particles and the strength of attraction between the particles determine a material's state of matter.
The bonds between particles are strongest in the solid state of matter. In solids, particles are tightly packed together, leading to strong forces of attraction between them which hold the structure in place.
In solid state force of attraction are greatest
Solid matter typically has the maximum intermolecular forces compared to liquids and gases. This is because the particles in a solid are closely packed together, allowing for stronger attractions between them such as van der Waals forces, hydrogen bonding, and dipole-dipole interactions.
The solid state of matter possesses the maximum rigidity. In solids, particles are packed closely together in fixed positions, resulting in strong intermolecular forces that hold the particles in place. This fixed arrangement gives solids their definite shape and volume, thus providing rigidity.
The molecules gain energy so they break up the solid structure and move more freely, however, they still have some attraction. More energy is required to weaken this attraction This molecule to molecule attraction is weakest in gaseous state of matter
Sentencing in every state is communicated in the same way, first a minimum then a maximum. The minimum is a matter of established state sentencing guidelines. The maximum is a matter of state statute. Say the minimum is 3.5 years, provided there is not a possibility for good time credit, you will serve 3 1/2 years before you will be eligible for parole.
The state of matter in an object is determined by the balance between the intermolecular forces of attraction and the thermal energy of the particles within the object. When thermal energy overcomes the intermolecular forces, the object transitions from solid to liquid to gas. The state of matter can also be influenced by factors like pressure and temperature.