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7000 Newtons.
Kilogram-force. Newton is a unit of force and kilogram is a unit of mass and cannot be converted.
Kilogram-force is kilogram-force, which is a common unit of force, and the international unit of force is Newton. 1 kg force refers to the gravitational force exerted on a 1 kg object (ie. So 1 kgf = Newton.
The symbols for kilogram force are: kgf, kg, kp.
In the system of engineering units, it is expressed that an object of one kilogram is at sea level at 45 degrees north latitude.
The gravitational force on the is determined by g = mg, the average g = N kg at sea level at 45 degrees north latitude, so 1 kgf = Newton, i.e. 1kgf = .
Kilogram force and kilogram are not the same concept, kilogram force is a unit of force and kilogram is a unit of mass.
Kilogram, symbol kg. It is the International System of Units.
The basic unit of measurement of mass in medium.
The kilogram is also one of the most commonly used basic units in everyday life. One kilogram is defined as the mass of the international kilogram prototype, which is almost the same weight as one liter of water. The kilogram is the only base unit with an SI prefix, and the only SI unit that still uses artifacts as its definition (all other units are defined by basic physical properties to facilitate replication in different laboratories).
International Kilogram Prototype French Revolution.
It was later formulated by the French Academy of Sciences. Originally, it was planned to produce the newly promulgated standard of the main unit of mass, the gram, but due to the limitations of the process and measurement technology at the time, a standard with a mass of 1,000 times that of the gram, that is, the kilogram standard prototype, was made - which is why the unit of mass in the International System of Units is the kilogram instead of the gram. Initial definition and length units.
Relate; In 1791, it was stipulated that the mass of pure water in 1 cubic decimeter at 4 o'clock, and the original instrument made of platinum-iridium alloy was preserved in Paris, and later called the international kilogram prototype. The 3rd International Conference on Weights and Measures in 1901 stipulated:
The kilogram is a unit of mass (not weight) and is equal to the mass of the international prototype kilogram. The kilogram is represented by the symbol kg. Kilogram force is a unit of force commonly used in engineering technology, which is specified as the gravitational force of the international kilogram prototype at sea level at latitude 45°.
The symbol is kgf. The word "force" is often omitted in engineering and technology books, so it is easy to be confused with the unit of mass, so in the last century, China has stipulated the use of gravity and weight, and the unit is kilogram force.
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Newton is a unit of force and ton is a unit of mass and cannot be converted.
It can be passed by Newton's second law.
conversion: f=ma; Specifically:
Take a 1kg object as an example: the gravitational force on a 1kg object g=mg=1 Newton.
1 kgf = Newton.
1 Newton = kilogram-force.
Usually near the surface of the ground canopy, g-value.
Approximately, the gravitational force experienced by an object with a mass of 1 kg is an average.
At the equator, g is the smallest, g=; At the poles g is maximum, g = . n is the unit of force, the letter is represented as n, and 1n is about the force to pick up two eggs.
The commonly used force measurement methods are roughly as follows:
1) Balance the measured force with a known gravitational or electromagnetic force, so that the measured force can be measured directly.
2) By measuring the acceleration of an object of known mass under the force being measured.
to indirectly measure the force being measured.
3) The measured force is measured by measuring the fluid pressure generated by the measured force.
4) When the measured force tensions a vibrating string, the natural frequency of the string.
It will change according to the size of the force being measured. The measured force is measured by measuring the change in this frequency.
5) The measured force is measured by measuring the deformation or strain of an elastic element under the action of the measured force.
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NewtonIt can not be equal to the same as the kilometer, which can be converted to about 122 kilograms.
g = mg, g is gravity, m is mass, g is constant, is about, m = 1200, so 1200 newtons is converted to about 122 kg. Bureau uproar.
Newton, symbolized by n, is a unit of measurement of the magnitude of force, named after the scientist Newton, which can cause an object with a mass of one kilogram to gain an acceleration of 1m s.
The magnitude of the force required is defined as 1 Newton.
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NewtonEqual to tons.
1 ton = 9810 Newtons.
120,000 Newtons = 120,000 Newtons = 120,000 9,810 = tons.
So 120,000 newtons is equal to tons.
Tons are the unit of weight.
Newton is a unit of mechanics.
The conversion method is posture pants:
1 Newton = kilogram-force, since 1 ton = 1000 kg, so 1 ton of first mass = 9810 Newtons.
Unit Conversion. 1,000 nanograms (ng of oranges) = 1 microgram (ug).
1,000 micrograms (ug) = 1 milligram (mg).
1,000 milligrams (mg) = 1 gram (g).
1,000 grams (g) = 1 kilogram (kg).
1,000 kilograms (kg) = 1 ton (t).
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Approximately equal to kilograms.
Newton is a unit of mechanics, and the kilogram is a unit of mass, which cannot be called equal, that is to say, 1 newton is not equal to any kilogram, but the relationship between Newton and the kilogram can be converted. According to the formula g=mg (g is taken as Layu to change Newton, kg is kilogram or kilogram, g is the gravitational force on the object, m is the mass, g is the ratio of gravity g to the mass wheel judgment m, here take the approximate number 98n kg), 9
8n is approximately equal to 1kg, so 1800 Newton is approximately equal to kilograms.
Newton (a unit of physics) is defined as 1 Newton in n by the amount of force required to discredit an object with an acceleration of 1 m s for an object with a mass of one kilogram.
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The kilogram is a unit of mass and the newton is a unit of force. There is no carry relationship between the two. An object of 1 kilogram on Earth can produce a force of about Newton.
The kilogram is the basic unit of measurement of mass in the International System of Units, and the kilogram is also one of the most commonly used basic units in daily life. The weight of the substance is completely dependent on the strength of the local gravitational force, while the mass remains the same, and the definition of one kilogram is the mass of the international kilogram prototype, which is almost equal to the weight of one liter of water.
Newton, referred to as cow. The force required to produce an acceleration of 1 meter for an object with a mass of 1 kilogram is 1 Newton. The name of the unit was given in honor of the British scientist Isaac Newton.
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According to m=g g=2000 10=200kg, m is mass, g is gravity, g is gravitational force, g's gravitational force is generally calculated with 10n kg, and the accurate is hengzen g =, if you tell the dust to calculate it is m = g g g = 2000
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One newton (n) is equal to (1, approximately equal to grams. 90,000 Newtons is equal to 9 kilograms. The magnitude of the force required to accelerate an object with a mass of one kilogram to an acceleration of 1 m s is defined as 1 Newton.
Newton's laws of motion show a progressive relationship in the study of the pair of foci. Clause.
1. The second law only studies a single object and solves the problem of its motion after it is not subjected to force or many forces; The third law expands the object of study, at least the study of the interaction between two objects that restricts or affects the motion of the object of study or other objects other than the object of study. Clause.
The organic combination of the second and third laws can solve all the complex dynamic problems, and the dynamic rolling mechanics of the particle point can be used to solve the mechanical problems of the particle system, rigid body, fluid, vibration, fluctuation, etc.
g = mg g: gravity.
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