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Since volume and volume are calculated in the same way, many students think that volume is volume. Actually, volume and volume are two different concepts, and they are different:
First, the meaning is different. Volume refers to the size of the space occupied by an object, while volume refers to the volume of an object that can be accommodated by wooden boxes, oil drums, etc. An object has volume, but it doesn't necessarily have volume.
Second, the measurement method is different. To find the volume of an object, you must measure its length, width, and height from the outside of the object, while to find the volume of an object, you must measure its length, width, and height from the inside and then calculate. Therefore, for the same object, in general, its volume is smaller than its volume.
3. The names of the units are not identical. Volume units are generally used: cubic meters, cubic decimeters, cubic centimeters. The volume unit of solids and gases is the same as the volume unit, while the volume unit of liquid is generally liters and milliliters.
As you can see from the above, if you only look at the quantity, the answer is yes, but if you want to look at the unit, it is not.
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The size of the object contains the number of units in the cube is the volume.
Volume is volume, volume is volume; The difference between volume and volume is the difference between object and space. Where did the volume of the object come from?
Matter and matter aggregate and combine to form an object; The size of an object surrounded by space is called the volume.
The combination of immaterial and immaterial aggregates to form space; The size of a space surrounded by objects, and the number of cubic meters contained in it is called volume.
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n, True: False.
The volume of an object is not the volume of the object, the volume is the size of the space occupied by the object itself, and the volume refers to the volume that the object can hold. The volume of the same object is greater than its volume.
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Volume refers to the volume that can hold something, and volume is often counted as volume.
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Wrong. The difference between the two concepts is that in the subject, volume refers to the space it occupies; Volume refers to the volume that holds other objects.
Since volume and volume are calculated in the same way, many students think that volume is volume, but in fact, volume and volume are two different concepts, and they are different.
1. The meaning is different. For example, the volume of an iron bucket refers to the size of the part of the space it occupies, while the volume of the bucket refers to the amount of objects it holds. An object has volume, but it does not necessarily have volume.
2. The measurement method is different. Before calculating the volume or volume of an object, it is generally necessary to measure the length, width, and height, and the volume of an object is measured from the outside of the object, while the volume is measured from the inside of the object. An object that has both volume and volume, its volume must be greater than its volume.
3. The name of the unit is not exactly the same. Volume units are generally used: cubic meters, cubic decimeters, cubic centimeters. The volume unit of solids and gases is the same as the volume unit, while the volume unit of liquid is generally liters and milliliters.
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No. Volume is generally said to be the size capacity that a solid has.
Volume is the amount of capacity that a liquid can hold.
If you're in secondary school, you know it's not
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Volume: refers to the volume of objects that can be accommodated in boxes, oil drums, warehouses, etc.
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Object volume refers to the physical quantity of the space occupied by the object. Commonly used volume units are: cubic meters (m), cubic decimeters (dm), cubic centimeters (cm), cubic millimeters (mm).
Volume conversion: 1m = 1000dm, 1dm = 1000cm, 1cm = 1000mm.
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Incorrect! Volume is the volume of an object that can be accommodated, and the volume of an object is its own volume. For example, if the volume of a cup is 500ml, it can hold 500ml of water. The volume of the cup is related to the thickness, height and size of the cup.
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First of all, to correct: an object has no volume, only volume; Space has no volume, only volume. This is the most obvious difference between the volume of an object and the volume of space.
So it should be asked: the volume of an object in a container is equal to the volume of the object that carries it, and it is correct that the size of an object surrounded by space contains the number of units of cubic is called volume.
The size of a space surrounded by objects, and the number of cubic meters contained in it is called volume.
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Summary. Hello <>
All objects have volume and volume. Volume refers to the amount of three-dimensional space occupied by an object, which can be calculated using the formula v=l w h (length, width and height). Volume refers to the volume that an object can hold, which can be calculated using the formula v= r 2h (base area height).
Whether it is a solid, a liquid or a gas, there is a concept of volume and volume.
Do all objects have volume and volume.
Hello <>
All objects have volume and volume. Volume refers to the size of the three-dimensional space occupied by an object, which can be calculated using the formula v=l w h (length, width, height). Volume refers to the volume of an object that can hold slag and dismantle Zheng Na, which can be calculated by the formula v= r 2h (base area height).
Whether it is a solid, a liquid or a gas, there is a concept of volume and volume.
Each object occupies a certain amount of space, and both macroscopic objects and microscopic particles have their own definite volume and volume. For solid objects, due to the attraction between their molecules, a certain stability is formed, and the volume is often reflected in the mega-permeable geometry for such objects. For liquid objects, although they also occupy a certain space, due to the lack of stable structure between their molecules, the shape of the container formed has no obvious effect on their morphology. The volume is reflected in the quality or volume it can hold.
In the case of gaseous objects, since the interaction between the gas molecules is very weak, its morphology can be changed at will, as long as the shape of the container conforms to the laws of the movement of its molecules. Volume can also be reflected in gaseous objects as collisions between molecules, which affects the pressure and volume of the gas. Therefore, volume and volume are not only applicable to macroscopic objects, but also to microscopic particles.
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The volume of an object is indeed equal to the volume of that object, and volume and volume are the same physical quantities that indicate the size of the space occupied by the object.
Volume refers to the amount of space occupied by an object and is usually expressed in cubic units such as cubic meters. The volume refers to the size of the empty base that the object can accommodate, and it is also expressed in cubic units. Therefore, the volume of an object is equal to the amount of space it can hold.
In general use, the terms volume and volume are often used to describe the size and space occupied by an object.
Whether it is a liquid, solid, or gas, it can be measured in terms of volume or volume. For a regularly shaped object, it can be sidelined to calculate its volume using a mathematical formula (e.g., the volume formula for a box is length, width, height).
For irregularly shaped objects, measurement methods can be used (e.g. the volume of liquid in a water container can be poured into a standard container. The volume or volume of the liquid in the container is then measured to determine or numerical simulation methods (e.g., volume calculation after a 3D scan) are used to determine its volume or volume.
The methods for calculating the volume and volume of a cuboid or cube, cylinder, sphere, cone, torus object are:
1. Cuboid or cube: volume: volume = length, width and height, volume: volume = length, width and height.
2. Cylinder: volume: volume = bottom area high, volume: volume = bottom area high.
3. Sphere: volume: volume = 4 3) radius, volume: volume = 4 3) radius.
4. Cone: volume: volume = 1 3) The bottom area is high. Volume: Volume = 1 3) Base area High.
5. Ring: (the inner radius is r1, the outer radius is r2) volume: there is no fixed formula, it can be calculated by treating the ring as a combination of cylinder and cone, volume:
There is no fixed formula, and it can be calculated by treating the ring as a combination of a cylinder and a cone.
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Correctly it should be:
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Regular objects can be found directly by measuring the length of the edges (some can be found by equivalently dividing them into several simple geometries). Density can be utilized. Or drainage. Then it is to find the amount of his substance, using the molar volume to find it. The key is that are there any restrictions?