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Combining this with the vertical g-force in the stationary case using the Pythagorean theorem yields a g-force of 5.4 g. The g-force or gravitational force equivalent is a mass-specific force (force per unit mass), expressed in units of standard gravity (symbol g or g 0, not to be confused with "g", the symbol for grams).
0 g: The gyro rotors in Gravity Probe B and the free-floating proof masses in the TRIAD I navigation satellite [1] inertial ≈ 0 m/s 2: ≈ 0 g: Weightless parabola in a reduced-gravity aircraft: 10 −14: 10 fm/s 2: lab: 5 × 10 −14 m/s 2: 5 × 10 −15 g: Smallest acceleration in a scientific experiment [2] 10 −3: 1 mm/s 2: Solar system ...
The gravitational force is a fictitious force. There is no gravitational acceleration, in that the proper acceleration and hence four-acceleration of objects in free fall are zero. Rather than undergoing an acceleration, objects in free fall travel along straight lines ( geodesics ) on the curved spacetime.
An equivalent definition of the dyne is "that force which, acting for one second, will produce a change of velocity of one centimetre per second in a mass of one gram". [3] One dyne is equal to 10 micronewtons, 10 −5 N or to 10 nsn (nanosthenes) in the old metre–tonne–second system of units. 1 dyn = 1 g⋅cm/s 2 = 10 −5 kg⋅m/s 2 = 10 ...
Shock describes matter subject to extreme rates of force with respect to time. Shock is a vector that has units of an acceleration (rate of change of velocity). The unit g (or g ) represents multiples of the standard acceleration of gravity and is conventionally used.
10 −22: 170 yN Force measured in a 2010 experiment by perturbing 60 beryllium-9 ions [4] [5] 10 −18 attonewton (aN) 10 −17: 30 aN Smallest force of gravity measured [6] [7] 10 −15 femtonewton (fN) 10 −14 ~10 fN Brownian motion force on an E. coli bacterium averaged over 1 second [8] ~10 fN Weight of an E. coli bacterium [9] [10] 10 ...
5 G: Suggested exposure limit for cardiac pacemakers by American Conference of Governmental Industrial Hygienists (ACGIH) 10 −3 T millitesla 1 mT: 10 G: Refrigerator magnets (10 G [8] to 100 G [9]) 10 −2 T centitesla 10 mT: 100 G: 30 mT: 300 G: Penny-sized ferrite magnet: 10 −1 T: decitesla: 100 mT: 1 kG: Penny-sized neodymium magnet: 150 ...
= 10 −5 N: ≡ 1 g⋅cm/s 2: ... The value of g n (9.806 65 m/s 2) as used in the official definition of the kilogram-force is used here for all gravitational units.
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