spring g constant 弹簧常数 ; 弹簧常量
grating g constant 光栅常量
fermi g constant 弗米g常数
fusing g constant 熔化系数
Rydberg g constant 里德伯常数
damping g constant 衰减常数
gravitational constant g 万有引力常数g ; 万有引力常数
constant-g turn 等转弯
G-time constant 加速度时间常数
G The gravitational constant G - is an extremely low number-- - 6.67 times 10 to the minus 11-- in our... as our units, which is newtons, gram-meters per kilogram or something like that.
万有引力常数,是一个非常小的数字-,=6。67乘10的-11次方-,每公斤克米,或者类似的,它是个极端小的数字。
That is, if we take the derivative G of delta G of mixing the partial derivative with respect to pressure, at constant temperature, of course, there's no explicit pressure dependence.
就是说,如果我们对,混合物的△,对压强求导,温度不变,当然,不是对压强的显函数。
One area where the conflict between quantum theory and relativity comes to the fore is in the gravitational constant, g, the quantity that describes the strength of gravity.
凸显量子理论和相对论冲突的地方之一是引力常数g,这个量描述引力的强度。
The force, as this weight drops is constant, mgh and so the work is just going to be m g h, h where this is h.
当重物掉落时候的力是恒定的,因此做功就是,这段长度是。
pV Also A plus pV and G is minimized at equilibrium with constant temperature and pressure.
同时等于亥姆赫兹自由能A加上,同时在恒定的温度和压强下。
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