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tori    音标拼音: [t'ɔri]
torus的复数形式

torus的复数形式

Torus \To"rus\ (t[=o]"r[u^]s), n.; pl. {Tori} (t[=o]"r[imac]).
[L., a round, swelling, or bulging place, an elevation. Cf.
3d {Tore}.]
[1913 Webster]
1. (Arch.) A large molding used in the bases of columns. Its
profile is semicircular. See Illust. of {Molding.}
--Brande & C.
[1913 Webster]

2. (Zool.) One of the ventral parapodia of tubicolous
annelids. It usually has the form of an oblong thickening
or elevation of the integument with rows of uncini or
hooks along the center. See Illust. under {Tubicolae}.
[1913 Webster]

3. (Bot.) The receptacle, or part of the flower on which the
carpels stand.
[1913 Webster]

4. (Geom.)
(a) The surface described by the circumference of a circle
revolving about a straight line in its own plane.
(b) The solid inclosed by such a surface; -- sometimes
called an {anchor ring}.

Syn: Syn. --3d Tore[2].
[1913 Webster]


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  • 4 Ways to Find Initial Velocity - wikiHow
    What formulas are used to find initial velocity? If you have values for the final velocity, acceleration, and time involved, use V i = V f - (a * t) If you know values for the distance, time, and acceleration, use V i = (d t) - [(a * t) 2]
  • How to Calculate Acceleration: The 3 Formulas You Need
    What Is the Acceleration Formula? You can use the acceleration equation to calculate acceleration Here is the most common acceleration formula: $$a = {Δv} {Δt}$$ where $Δv$ is the change in velocity and $Δt$ is the change in time You can also write the acceleration equation like this: $$a = {v(f) - v(i)} {t(f) - t(i)}$$
  • Initial Velocity Formula - GeeksforGeeks
    Now we are having a good base on initial velocity, we can finally move to the "Initial velocity formula " Question 6: A motorbike covers 1 5km in 12 seconds and has an acceleration of 20 ms-2 Find the initial velocity of the motorbike Solution: Given: s = 1 5km = 1 5 × 1000 = 1500m, t = 12s, a = 20ms-2 Thus, the initial velocity is:
  • Velocity Calculator
    To find the initial velocity: Work out which of the displacement (s), final velocity (v), acceleration (a), and time (t) you have to solve for initial velocity (u) If you have v, a, and t, use: u = v − at If you have s, v, and t, use: u = 2(s t) — v If you have s, v, and a, use: u = √(v² − 2as) If you have s, a, and t, use: u = (s t
  • Acceleration Calculator
    Acceleration formula The formula for acceleration expressed in terms of the initial velocity (speed), final velocity and the acceleration duration (time) is: where a is the acceleration, v 0 is the starting velocity, v 1 is the final velocity, and t is the time (acceleration duration or t 1 - t 0)
  • Initial Velocity Formula, Definition, Solved Example - Physics Wallah
    Initial Velocity Formula: The initial velocity formula is u=v−at, where v is the final velocity, a is the acceleration, and t is the time
  • How do you find velocity from acceleration? - CK-12 Foundation
    To find velocity from acceleration, you can use the following relationship: Velocity = Initial Velocity + (Acceleration × Time) Here's a step-by-step guide: Identify the initial velocity (@$\begin{align*}v_0\end{align*}@$): This is the velocity at the start of the time period you're considering
  • Acceleration Formula with Velocity and Time - PhysicsGoEasy
    A bus decreases its speed from \(80\,\,m\,s^{-1}\) to \(60\,\,m\,s^{-1}\) in 5 seconds Find the acceleration of the bus Solution Here it is given that initial velocity, \(v_i=80ms^{-1}\)and final velocity,\(v_f=60ms^{-1}\) Time \(t=5\,s\) We have to calculate the acceleration from this data
  • Initial Velocity Formula - Different Forms, Derivation, and FAQs - Vedantu
    Let us suppose the initial velocity is denoted by ‘u’, the final velocity is denoted by ‘v’, the time taken to increase the velocity from ‘u’ to ‘v’ is‘t’, then the acceleration ‘a’ is: a = (v-u) t If we rearrange it, we will find the formula for the first equation of motion It is: v = u + at





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