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Moment

162 Sentences | 9 Meanings

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The actress had a moment of fame when she won the award.
The moment of a particle can be used to calculate the strength of its interaction with a magnetic field.
The couple shared a romantic moment on the beach.
The speaker paused for a moment before continuing.
The food was so delicious, I had a moment of pure bliss.
The singer held the note for a moment before finishing the song.
The speaker had a moment of doubt before giving the presentation.
I only saw him for a moment in the crowded room.
For a moment, he thought he had lost his wallet, but he found it in his backpack.
The moment of a particle is a fundamental property of quantum mechanics that cannot be directly observed, only inferred from experimental results.
The total moment of a composite system of particles is the sum of the moments of its individual constituents.
The moment of a subatomic particle can only take on discrete values due to quantum mechanics.
The moment of a particle can be expressed in terms of its quantum numbers.
The moment of a particle can be described by its spin and orbital angular momentum.
The spin moment of a subatomic particle can have only discrete values.
The moment of an electron in a magnetic field determines the orientation of its spin.
The moment of a subatomic particle is an important property that affects its behavior in a magnetic field.
The moment operator is a mathematical tool used to describe the angular momentum of subatomic particles.
The moment of a particle is a fundamental property that affects its behavior in quantum mechanics.
The moment of an electron in an atom determines its magnetic properties.
The moment of a particle can be changed by applying an external magnetic field.
The moment of a photon is zero, as it has no rest mass and therefore no intrinsic angular momentum.
The moment of a composite system can be calculated by adding together the moments of its individual parts.
The total moment of a particle is the sum of its spin moment and its orbital moment.
The electron has a moment which determines its intrinsic angular momentum.
The moment of a particle is its angular momentum divided by its mass.
The moment of a torque on a rotating object can be calculated by multiplying the magnitude of the torque by the time for which it acts.
The moment of a distributed load can be calculated by integrating the product of the load and its distance from a reference point.
The bending moment on a beam is proportional to the product of the load and the distance from the point of interest.
The moment of a linear momentum is a vector quantity that describes the tendency of an object to continue moving in a straight line.
The moment of a system of particles is equal to the sum of the moments of the individual particles.
The moment of a weight placed on a lever depends on the distance from the pivot and the weight of the object.
The moment of a lever is the product of the force and the perpendicular distance from the pivot point.
The moment of a couple is twice the magnitude of either of the forces forming the couple.
To determine the center of mass, we need to calculate the moment of each particle about an axis.
The moment of a force is calculated by multiplying the force by the perpendicular distance from the point to the line of action.
The moment of a torque wrench is a measure of its ability to apply a specified torque.
The moment of inertia of the object depends on its mass and distribution of mass around its axis of rotation.
The moment of a magnetic field is a vector quantity that describes the tendency of a magnet to align itself with the field.
The moment of a couple is the same about any axis passing through the couple.
The moment of a couple is the product of one of the forces and the distance between them.
The moment of a torque wrench is the product of the torque applied and the length of the wrench arm.
The moment of a bending force on a beam is proportional to the force and the distance from the neutral axis.
The moment of a rotating wheel is the product of its moment of inertia and its angular velocity.
The moment of force acting on the lever is equal to the force multiplied by the distance from the pivot.
The moment of inertia is an important concept in rotational motion.
The moment of a force about a point can be found by taking the cross product of the force vector and the position vector from the point.
The moment of a force can be calculated by multiplying the force by the perpendicular distance from the pivot.
The moment of inertia is the measure of an object's resistance to rotational motion about a particular axis.
The moment of a force is a vector quantity that describes its twisting effect.
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