A state of matter that will not change shape or volume when moved to a different container is a solid. Particles in a solid are tightly packed and have a fixed shape and volume, making them retain their form even when transferred to another container.
Water from one container to another.
The volume of water pushed out of the way by an object is called the displaced volume or the volume of water displaced. This is the volume of water that is moved aside when an object is immersed in a fluid.
The net change in displacement of the potato samples is measuring the overall movement or shift in position of the potatoes. It indicates the total distance and direction that the potatoes have moved from their initial position to their final position.
Displacement is used in physics to measure how far and in what direction an object has moved from its original position. It is calculated as the difference between the final position of an object and its initial position. Displacement can help determine an object's change in location, regardless of the path it took to get there.
The visible field may not change as the mechanical stage is moved if the sample or object being observed is larger than the field of view of the microscope. In this case, as the stage moves, different sections of the sample come into view while the overall visible field remains relatively constant.
A state of matter that will not change shape or volume when moved to a different container is a solid. Solids have a fixed shape and volume because their particles are tightly packed and have very little freedom of movement.
No, the volume of wood would not change when moved to a larger container. Volume is a measure of the amount of space occupied by an object, and it remains constant regardless of the size of the container in which the object is placed. The amount of wood remains the same, only the space it occupies may vary.
It does not because change only occurs when temperature is involved.
Some will and some won't.
The volume of the solid remains the same.
I have no idea
The value will not change because no temperatures have been applied.
This problem can be solved with the ideal gas law. The original pressure and volume of the container are proportional the final pressure and volume of the container. The original pressure was 1 atmosphere and the original volume was 1 liter. If the final volume is 1.8 liters, then the final pressure is 0.55 atmospheres.
The liquid has a definite volume because its molecules are packed closely together, but it takes the shape of the container due to its ability to flow and conform to its surroundings. This characteristic allows liquids to be poured and moved easily.
If the temperature of the gas is kept constant, according to Boyle's Law, the pressure and volume of the gas are inversely proportional. As the piston moves to the 1.20 mark, reducing the volume, the pressure inside the container will increase to maintain equilibrium.
It depends on the echo system. If you moved them to The North Pole, they would probably go extinct.
The plastic ball will remain in the container unless moved or acted upon by an external force. It will not change its state unless there is an external influence such as another object pressing against it or a change in temperature or pressure causing it to expand or contract.