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object and experiences
Raymond Williams argues that there is no unique and or individual aesthetic object which can be extrapolated from the art world, but that there is a continuum of cultural forms and experience of which ordinary speech and experiences may signal as art.
A calculation for Earth at the equator ( seconds, meters ) shows that an object experiences a centrifugal force equal to approximately 1 / 289 of standard gravity.
His psychological theories pertain to education as they focus on the development of object teaching, that is, he felt that individuals best learned through experiences and through a direct manipulation and experience of objects.
According to an extreme empiricist theory known as Phenomenalism, anticipated by the arguments of both Hume and George Berkeley, a physical object is a kind of construction out of our experiences.
A stand-alone educational animation is an example of a learning object that can be re-used as the basis for different learning experiences.
An object moving through a gas or liquid experiences a force in direction opposite to its motion.
In philosophy, a subject is a being that has subjective experiences, subjective consciousness or a relationship with another entity ( or " object ").
Through involvement in the world – being-in-the-world – the perceiver tacitly experiences all the perspectives upon that object coming from all the surrounding things of its environment, as well as the potential perspectives that that object has upon the beings around it.
Particularly at each periapsis, the object experiences atmospheric drag, losing energy.
A more modern response to this criticism of concepts without sense-perception is the claim that the universality of its qualities is an unavoidable given because one only experiences an object by means of general concepts.
The evil demon problem originally motivated skepticism, but can be resuited to object to reliabilist accounts as follows: If our experiences are controlled by an evil demon, it may be the case that we believe ourselves to be doing things that we are not doing.
The wind that a boat experiences is the combination of the true wind ( i. e. the wind relative to a stationary object ) and the wind that occurs due to the forward motion of the boat.
According to Newton's 3rd Law, the Earth itself experiences a force equal in magnitude and opposite in direction to that which it exerts on a falling object.
# First law: If an object experiences no net force, then its velocity is constant: the object is either at rest ( if its velocity is zero ), or it moves in a straight line with constant speed ( if its velocity is nonzero ).
Its object of study includes personnel training and management as well as the experiences of those on the other side of the fence — the unwilling subjects of the correctional process.
All events, associations, stimuli, and experiences return thoughts to the limerent object with unnerving consistency, while conversely the constant thoughts about the limerent object define all other experiences.
Although the direction of feeling, i. e. happy versus unhappy, shifts rapidly, with ' dramatic surges of buoyancy and despair ', the intensity of intrusive and involuntary thinking alters less rapidly, and only in response to an accumulation of experiences with the particular limerent object.
The three key criteria used include: 1 ) mental experiences that have a strongly motivating subjective quality like pleasure or pain ; 2 ) mental experiences that are in response to some event or object that is either real or imagined ; 3 ) mental experiences that motivate particular kinds of behaviour.

object and constant
M. von Rohr showed that for systems fulfilling neither the Airy nor the Bow-Sutton condition, the ratio a ' cos w '/ a tan w will be constant for one distance of the object.
# The object moves with constant angular velocity around the circle.
In chemistry, biochemistry, and pharmacology, a dissociation constant is a specific type of equilibrium constant that measures the propensity of a larger object to separate ( dissociate ) reversibly into smaller components, as when a complex falls apart into its component molecules, or when a salt splits up into its component ions.
Diagonal functor: The diagonal functor is defined as the functor from D to the functor category D < sup > C </ sup > which sends each object in D to the constant functor at that object.
Hence, with respect to an inertial frame, an object or body accelerates only when a physical force is applied, and ( following Newton's first law of motion ), in the absence of a net force, a body at rest will remain at rest and a body in motion will continue to move uniformly — that is, in a straight line and at constant speed.
He claimed that a constant stream of appearances and references without any direct consequences to viewers or readers could eventually render the division between appearance and object indiscernible, resulting, ironically, in the " disappearance " of mankind in what is, in effect, a virtual or holographic state, composed only of appearances.
For a relationist there can be no real difference between inertial motion, in which the object travels with constant velocity, and non-inertial motion, in which the velocity changes with time, since all spatial measurements are relative to other objects and their motions.
It resonates at a specific constant pitch when set vibrating by striking it against a surface or with an object, and emits a pure musical tone after waiting a moment to allow some high overtones to die out.
is the functor that maps each object N in C to the constant functor Δ ( N ): J → C to N ( i. e. Δ ( N )( X )
On the surface of the Earth, the acceleration due to gravity ( the " strength of gravity ") is approximately constant ; this means that the ratio of the weight force of a motionless object on the surface of the Earth to its mass is almost independent of its location, so that an object's weight force can stand as a proxy for its mass, and vice versa.
Weight was split into a " still weight " or pondus, which remained constant, and the actual gravity or gravitas, which changed as the object fell.
Contact juggling is manipulating the object in constant contact with the body.
A special case of a product is when the diagram F is a constant functor to an object X of C. The limit of this diagram is called the J < sup > th </ sup > power of X and denoted X < sup > J </ sup >.
is the functor that maps each object N in C to the constant functor Δ ( N ): J → C to N. That is, Δ ( N )( X )
" X-dimension of recorded spot " implies that the facsimile equipment response to a constant density in the object ( original ) is a succession of discrete recorded spots.
Wien's displacement law implies that the hotter an object is, the shorter the wavelength at which it will emit most of its radiation, and also that the wavelength for maximal or peak radiation power is found by dividing Wien's constant by the temperature in kelvins.
A star ( or any object with fixed equatorial coordinates ) has constant altitude, and therefore never rises or sets when viewed from either pole.
Its object had originally been to keep the emperor in close touch with all the branches of the administration and to bring to his notice any abuses and irregularities, and for this purpose its chief was in constant personal intercourse with the sovereign.
This category is called the category of presheaves on X with values in C. If has an initial object, then the constant functor which sends every open set to is an initial object in the category of presheaves.

object and acceleration
Descartes recognized that there would be a real difference, however, between a situation in which a body with movable parts and originally at rest with respect to a surrounding ring was itself accelerated to a certain angular velocity with respect to the ring, and another situation in which the surrounding ring was given a contrary acceleration with respect to the central object.
In a rotating frame of reference, the time derivatives of the position vector, such as velocity and acceleration vectors, of an object will differ from the time derivatives in the stationary frame according to the frame's rotation.
These terms in the apparent acceleration are independent of mass ; so it appears that each of these fictitious forces, like gravity, pulls on an object in proportion to its mass.
These equations express mathematically that, in the case of an object that moves along a circular path with a changing speed, the acceleration of the body may be decomposed into a perpendicular component that changes the direction of motion ( the centripetal acceleration ), and a parallel, or tangential component, that changes the speed.
If acceleration can be felt by a body as the force ( hence pressure ) exerted by the object bringing about the acceleration on the body, jerk can be felt as the change in this pressure.
The inertial mass of an object determines its acceleration in the presence of an applied force.
It is determined by applying a force to an object and measuring the acceleration that results from that force.
Gravitational field can be measured by allowing a small ‘ test object ’ to freely fall and measuring its free-fall acceleration.
Passive gravitational mass is determined by dividing an objects weight by its free-fall acceleration.
Two objects within the same gravitational field will experience the same acceleration ; however, the object with a smaller passive gravitational mass will experience a smaller force ( less weight ) than the object with a larger passive gravitational mass.
Vectors play an important role in physics: velocity and acceleration of a moving object and forces acting on it are all described by vectors.
Its magnitude ( a scalar quantity ), often denoted by an italic letter W, is the product of the mass m of the object and the magnitude of the local gravitational acceleration g ; thus:.
If an object with comparable mass to that of the Earth were to fall towards it, then the corresponding acceleration of the Earth really would be observable.
If the object doesn't bounce after it has collided with the Earth, each of them then exerts a repulsive contact force on the other which effectively balances the attractive force of gravity and prevents further acceleration.
The acceleration due to gravity is equal to this g. An initially stationary object which is allowed to fall freely under gravity drops a distance which is proportional to the square of the elapsed time.
By Newton's second law of motion, we can replace the forces F with the mass m of the object multiplied by the acceleration felt by the object due to that force:
The term is a scientific analogy, and is not directly related to the mass-and-velocity term used in mechanics, where inertia is that which limits the acceleration of an object.
If the charged object has a positive charge, the force and acceleration will be in the direction of the field.
When an object rotates about its axis, the motion cannot simply be analyzed as a particle, since in circular motion it undergoes a changing velocity and acceleration at any time ( t ).
For all constant values of the torque,, of an object, the angular acceleration will also be constant.

0.654 seconds.