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Page "Momentum" ¶ 36
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Suppose and particle
Suppose that one particle is in the state n < sub > 1 </ sub >, and another is in the state n < sub > 2 </ sub >.
Suppose a particle starts at point A, and there is a force F acting on it.
Suppose that a particle of charge experiences an acceleration which is collinear with its velocity ( this is the relevant case for linear accelerators ).
Suppose that a particle moves along the curve with unit speed.
Suppose now that instead of one particle in this box we have N particles in the box and that these particles are fermions with spin 1 / 2.
Suppose some particle has a mass m which is 3. 4 times the mass of electron.
Suppose we have an electron with energy above the Fermi surface, and suppose it scatters with a particle in the Fermi sea with energy.
Suppose a wavefunction is a solution of the wave equation, giving a description of the particle ( position, for time ).
Suppose a particle moves at a uniform rate along a line from A to B ( Figure 2 ) in a given time ( say, one second ), while in the same time, the line AB moves uniformly from its position at AB to a position at DC, remaining parallel to its original orientation throughout.
Suppose two forces act on a particle at the origin ( the " tails " of the vectors ) of Figure 1.
Suppose each set of quantum numbers specify states where is the number of internal degrees of freedom of the particle that can be altered by collision.
Suppose we wish to measure the position of a particle to within an accuracy Δx.
Suppose that the trajectory of the particle, which moves with the velocity, intersects at the point at time.
Suppose that there are two reference frames S and S < nowiki > '</ nowiki >, where S < nowiki > '</ nowiki > is moving relative to S. The origin of S < nowiki > '</ nowiki > moves along some curve in S, which can be traced out by some vector C which is a function of t. The Einstein force is the apparent force acting on a particle of mass m in the S < nowiki > '</ nowiki > frame, and is defined by

Suppose and has
Suppose, says Dr. Lyttleton, the proton has a slightly greater charge than the electron ( so slight it is presently immeasurable ).
Suppose that has an inverse function.
Suppose a definition of a capacitor has an associated attribute called " Capacitance ", corresponding to the physical property of the same name, with a default value of " 100 pF " ( 100 picofarads ).
Suppose Alice has a qubit in some arbitrary quantum state.
Suppose Alice has a qubit that she wants to teleport to Bob.
Suppose both ISPs have trans-Atlantic links connecting their two networks, but A < nowiki >' s </ nowiki > link has latency 100 ms and B's has latency 120 ms.
Suppose that a certain slot machine costs $ 1 per spin and has a return to player ( RTP ) of 95 %.
Suppose the typewriter has 50 keys, and the word to be typed is banana.
Suppose this fuzzy system has the following rule base:
Suppose a lossless antenna has a radiation pattern given by:
Suppose a partially ordered set P has the property that every chain ( i. e. totally ordered subset ) has an upper bound in P. Then the set P contains at least one maximal element.
Suppose a non-empty partially ordered set P has the property that every non-empty chain has an upper bound in P. Then the set P contains at least one maximal element.
:" Moses said to God, ' Suppose I go to the Israelites and say to them, " The God of your fathers has sent me to you ," and they ask me, ‘ What is his name ?’ Then what shall I tell them ?” God said to Moses, “ I AM WHO I AM " — Exodus 3: 13-14 ( New International Version ) ( see Tetragrammaton ).
Suppose a computer has three CD drives and three processes.
Suppose, for example, that A is a 3 × 3 rotation matrix which has been computed as the composition of numerous twists and turns.
Suppose that a taxi firm has three taxis ( the agents ) available, and three customers ( the tasks ) wishing to be picked up as soon as possible.
Suppose V is a subset of R < sup > n </ sup > ( in the case of n = 3, V represents a volume in 3D space ) which is compact and has a piecewise smooth boundary S. If F is a continuously differentiable vector field defined on a neighborhood of V, then we have
INTERVIEWER: Suppose someone called you and said there was a kid, nineteen or twenty years old, who has been a very good boy, but all of a sudden this week he started walking around the neighborhood carrying a large cross.
Suppose Eve has intercepted the cryptogram below, and it is known to be encrypted using a simple substitution cipher:
Suppose that one has a table listing the population of some country in 1970, 1980, 1990 and 2000, and that one wanted to estimate the population in 1994.
Suppose the table has r rows and c columns ; the row sums are and the column sums are.

Suppose and position
Suppose, he says, that the tables were turned, and we were in the Soviets' position: `` There would be more than 2,000 modern Soviet fighters, all better than ours, stationed at 250 bases in Mexico and the Caribbean.
Suppose one measures the position: this act destroys any information about its momentum.
) Suppose everything in the universe undergoes an improper rotation described by the rotation matrix R, so that a position vector x is transformed to x ′
Suppose S ' is in relative uniform motion to S with velocity v. Consider a point object whose position is given by r
Suppose a node n is searched for, where n is the position of the found node among the nodes of level 1 or higher.
Suppose at time t some number of particles all have position r within element d < sup > 3 </ sup > r and momentum p within d < sup > 3 </ sup > p.

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