Translation for "is null" to finnish
Is null
Translation examples
That is null, then another.
Se on nolla, sitten toinen.
That way, the possibility of rejection is null.
Siten, mahdollisuus hylkääminen on nolla.
addition Din rails are attached to the shield enclosure terminal blocks (different distribution tires).Their role is null connection conductors.If the apartment or house of the old model and the system is made only phase (phase 3) and working zero (blue wire runs), only one terminal block.If the system is implemented by the rules and there is an additional green-yellow conductor (protective zero or ground), you need to put another bus.At this point in time are commercially available tires, the design of which allows you to mount them on a DIN-rail, as well as machines.
lisäksi Din kiskot kiinnitetään heijastimen koteloon liittimien (eri jakelu renkaat).Niiden tehtävänä on nolla yhteys johtimet.Jos asunnon tai talon vanhan mallin ja järjestelmä on tehty vain (vaihe 3) ja työ- nolla (sininen johto juoksee), vain yksi riviliitin.Jos järjestelmä on toteutettu sääntöjen ja on lisäksi vihreä-keltainen johdin (suojaava nolla tai maahan), sinun täytyy laittaa toinen bussi.Tässä vaiheessa on kaupallisesti saatavilla renkaita, joiden suunnittelu voit asentaa ne DIN-kiskoon, sekä koneet.
For the Schwarzschild solution, we take k a {\displaystyle k^{a}} to be the time translation Killing vector k a ∂ a = ∂ ∂ t {\displaystyle k^{a}\partial _{a}={\frac {\partial }{\partial t}}} , and more generally for the Kerr–Newman solution we take k a ∂ a = ∂ ∂ t + Ω ∂ ∂ φ {\displaystyle k^{a}\partial _{a}={\frac {\partial }{\partial t}}+\Omega {\frac {\partial }{\partial \varphi }}} , the linear combination of the time translation and axisymmetry Killing vectors which is null at the horizon, where Ω {\displaystyle \Omega } is the angular velocity.
Schwarzschildin ratkaisulla valitaan k a {\displaystyle k^{a}} aikasiirtymän Killingin vektoriksi k a ∂ a = ∂ ∂ t {\displaystyle k^{a}\partial _{a}={\frac {\partial }{\partial t}}} , ja yleisemmin Kerr-Newmanin ratkaisussa vastaavasti k a ∂ a = ∂ ∂ t + Ω ∂ ∂ ϕ {\displaystyle k^{a}\partial _{a}={\frac {\partial }{\partial t}}+\Omega {\frac {\partial }{\partial \phi }}} , jolloin aikasiirtymän ja aksiaalisesti symmetristen Killingin vektorien lineaarikombinaatio on nolla horisontilla, jossa kulmanopeus on Ω {\displaystyle \Omega } .
How many English words do you know?
Test your English vocabulary size, and measure how many words you know.
Online Test