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"magnetize" Definitions
  1. [usually passive] (specialist) to make something metal behave like a magnet
  2. magnetize somebody to strongly attract somebody

61 Sentences With "magnetize"

How to use magnetize in a sentence? Find typical usage patterns (collocations)/phrases/context for "magnetize" and check conjugation/comparative form for "magnetize". Mastering all the usages of "magnetize" from sentence examples published by news publications.

Your ability to manifest your dreams and magnetize your wishes is very potent at this time.
Objects, stories, illustrations, faces, ideas and legislation will magnetize you to them, will imprint themselves upon you.
They can also magnetize together and be worn as one necklace in case you're your own Spock to your Kirk.
It will still magnetize to the side of the Pro, but it doesn't stay there very well when it gets tossed into a bag.
In the study, the authors described a new process that they suggested could someday be used to light up or magnetize your T-shirt.
They took him to a copse to magnetize a tree — Mesmer claimed that a patient could be treated by touching one — and then asked the patient to find it.
Yet to truly revitalize the millions it churned with crummy onboarding, and magnetize the masses that feel they already have a friendly audience on other social networks, Twitter may need more drastic change.
Like Nina Simone and peak Madonna before her (Beyoncé lands somewhere between the two as a polemicist), this is a woman who understands her own power, how to harness and magnetize us to it.
The company wants to replace the round support wire in the arms (or "temples") of glasses with a flat one, magnetize it, and then cut away part of the surrounding plastic to expose the metal.
To complete the island, you will use bombs to uncover secret area, magnetize weapons to retrieve them from precarious places, freeze time to turn boulders into projectiles, and freeze water to… well, I won't spoil that.
Mr. O'Connell certainly has the potential to become one — the intensity, the emotional commitment, the ability to magnetize attention when projecting regular-guyness — even if his attempt at an outer-borough Noo Yawk accent grates on the ears.
The concept is an easy (but genius!) one: Take your basic building blocks and magnetize them so constructing houses, cars and even trains that run through the kitchen, around the dog bowl and down the hall are not only easy but they actually stay together.
As soon as Washington fired Romar, who happened to be employing Michael Porter Sr. as an assistant, new Mizzou coach Cuonzo Martin hired Porter Sr. to magnetize the No. 1 AAU prospect in the nation back to Columbia, where he spent most of his teenage years.
Around these coils two permanent horseshoe magnets are arranged to magnetize the iron band as it passes through the glass tube.
The player also has the ability to "Magnetize" which allows the player to stick to surfaces when going upside down or vertically.
In contrast, magnetically anisotropic materials will be easier or harder to magnetize depending on which way the object is rotated. For most magnetically anisotropic materials, there are two easiest directions to magnetize the material, which are a 180° rotation apart. The line parallel to these directions is called the easy axis. In other words, the easy axis is an energetically favorable direction of spontaneous magnetization.
In the end of Central Fiction, Tager and Bullet are now partners once again. Tager uses his Drive, Voltic Battler, to magnetize his opponents for a short period of time.
After the success of the 2016 television drama, the footage was re-edited into a 90-minute feature film, which is set to be released in May 2018 by the distribution company Magnetize.
In physics, a ferromagnetic material is said to have magnetocrystalline anisotropy if it takes more energy to magnetize it in certain directions than in others. These directions are usually related to the principal axes of its crystal lattice. It is a special case of magnetic anisotropy.
An EPM uses only a pulse of current to magnetize one of the magnet in a desired direction (turning on and off the external magnetic field of the latch). After changing the direction of the magnet no current is needed and the field will return to depends on the permanent magnets.
One involves breaking a magnet in two and showing that both parts have a north and south pole. He also dismisses the idea of perpetual motion. The third book has a general description of magnetic directions along with details on how to magnetize a needle. He also introduces his terella, or "little Earth".
Because the two opposite directions along an easy axis are usually equivalently easy to magnetize along, and the actual direction of magnetization can just as easily settle into either direction, which is an example of spontaneous symmetry breaking. Magnetic anisotropy is a prerequisite for hysteresis in ferromagnets: without it, a ferromagnet is superparamagnetic.
He lost his left arm during the initial meeting with Overhaul and it was replaced with a cybernetic one. ; / : : A villain whose Quirk gives him a lizard-like appearance and abilities. ; / : : A transgender woman whose Quirk allows her to magnetize others within an area around herself. She is later killed by Overhaul.
In the early 20th century, a few investigators found that igneous rocks had a remanence that was much more intense than remanence acquired in the Earth's field without heating; that heating rocks in the Earth's magnetic field could magnetize them in the direction of the field; and that the Earth's field had reversed its direction in the past.
Shrapnel blew it apart, hitting Mrs. Caulder point blank and hospitalizing the heroine. It is also noted that Rhea Jones was not able to magnetize any control over Shrapnel. It was energy blasting Tempest who worked out that Shrapnel is a series of organic cells creating a single consciousness - that feeds on the blood of victims.
This inhomogeneous crystalline structure gives this variety of magnetite sufficient coercivity to remain magnetized and thus be a permanent magnet. The other question is how lodestones get magnetized. The Earth's magnetic field at 0.5 gauss is too weak to magnetize a lodestone by itself. The leading theory is that lodestones are magnetized by the strong magnetic fields surrounding lightning bolts.
Relatively shortly after his breakthrough Ugelstad gave a lecture in the United States. After the lecture some scientists asked if it was possible to magnetize the spheres, so they could be used to separate cells. The inquiry sparked new nights with research problems in John Ugelstad bedrooms and resulted in the development of magnetic monodisperse particles at SINTEF. The solution was designated as ingenious in its simplicity.
Computer simulation of the magnetization of polycrystal sample with ,, (, red curve). The green is the first derivative . While the black ones are the magnetization of the corresponding single crystal with applied along c-axis , and . Since the FOMP transition represents a singular point in the magnetization curve of a single crystal, we analyze how this singularity is transformed when we magnetize a polycrystalline sample.
The following are general steps for inspecting on a wet horizontal machine: #Part is cleaned of oil and other contaminants. #Necessary calculations done to know the amount of current required to magnetize the part. Refer ASTM E1444/E1444M for formulas. #The magnetizing pulse is applied for 0.5 seconds, during which the operator washes the part with the particle, stopping before the magnetic pulse is completed.
The Barnett effect is the magnetization of an uncharged body when spun on its axis. It was discovered by American physicist Samuel Barnett in 1915. An uncharged object rotating with angular velocity ω tends to spontaneously magnetize, with a magnetization given by: :M=\chi \omega / \gamma \ , with γ = gyromagnetic ratio for the material, χ = magnetic susceptibility. The magnetization occurs parallel to the axis of spin.
He can use his magnetic power on rocks that contain iron ore to pull or use them as projectiles. He can also magnetize metal objects so that they become magnets themselves and make them stick to other metal objects. His power cannot affect non-metals, such as organic substances like wood or flesh. His control is such that he can manipulate electronic records or the iron in blood.
Let us apply a very small magnetic field to the system in the critical point. A very small magnetic field is not able to magnetize a large coherent cluster, but with these fractal clusters the picture changes. It affects easily the smallest size clusters, since they have a nearly paramagnetic behaviour. But this change, in its turn, affects the next-scale clusters, and the perturbation climbs the ladder until the whole system changes radically.
Cool Ball later gains the ability to magnetize anything it touches, metal or not. Like Jio, after training with Kirin Ball's reflexes, strength, and awareness were raised greatly. Ball has displayed a natural talent of handling his O-Part and displays amazing cunning and strategy, using his O-Part's magnetism effect to fool his opponents, often coming up with plans in the middle of battle. After helping save his city, he joins Jio and Ruby on their journey.
The field would then be 5 × 108 × 10−2 × (2 × 4π × 10−7) = 10 T. Clearly if the magnetisation fixture is not to occupy more room than the puck itself then a very high activation current would be required and either constraint makes in situ magnetization a very difficult proposition. What is required for in situ magnetisation is a magnetisation method in which a relatively small field of the order of milliteslas repeatedly applied is used to magnetize the superconductor.
As early as the 18th century, it was noticed that compass needles deviated near strongly magnetized outcrops. In 1797, Von Humboldt attributed this magnetization to lightning strikes (and lightning strikes do often magnetize surface rocks). In the 19th century studies of the direction of magnetization in rocks showed that some recent lavas were magnetized parallel to the Earth's magnetic field. Early in the 20th century, work by David, Brunhes and Mercanton showed that many rocks were magnetized antiparallel to the field.
Vicalloy was used because it required much more power to re-magnetize than the permalloy tape, so that the system would never come close to re-setting the permanent magnets while in use in the memory system. The writer system used much larger currents that overcame this resistance. The PMT that was used in the 1ESS system used modules with 128 cards with 2818 magnets (for 64 44-bit words) on each. This produced a module with 8192 words (8 kibiwords).
Compared to outrunner motors, inrunners tend to spin exceptionally fast, often as high as 11000 RPM per volt, far too fast for most aircraft propellers. However, inrunners lack torque. As a result, most inrunners are used in conjunction with a gearbox in both surface and aircraft models to reduce speed and increase torque In many cases the inrunner is "ironless" in that there is no iron stator core to magnetize. The wire is run inside the can and held in place by epoxy or other resin material.
Magnetic flux leakage (TFI or Transverse Field Inspection technology) is a magnetic method of nondestructive testing that is used to detect corrosion and pitting in steel structures, most commonly pipelines and storage tanks. The basic principle is that a powerful magnet is used to magnetize the steel. At areas where there is corrosion or missing metal, the magnetic field "leaks" from the steel. In an MFL (or Magnetic Flux Leakage) tool, a magnetic detector is placed between the poles of the magnet to detect the leakage field.
A coil is wound around one of the magnets in a way that if we inject enough current (in a pulse) in the solenoid the generated magnetic field inside will be higher than the intrinsic coercivity of the magnet ( H_{ci} ). If this is the case the permanent magnet will be magnetized in the direction of the field inside the solenoid. Applying the same pulse of current in the opposite direction will lead to magnetize the magnet in the opposite direction. Therefore, we have the same behavior as when we mechanically rotate the magnet.
Gramme machine The Gramme machine used a ring armature, with a series of armature coils, wound around a revolving ring of soft iron. The coils are connected in series, and the junction between each pair is connected to a commutator on which two brushes run. Permanent magnets magnetize the soft iron ring, producing a magnetic field which rotates around through the coils in order as the armature turns. This induces a voltage in two of the coils on opposite sides of the armature, which is picked off by the brushes.
The film received mixed reviews from critics. Taran Adarsh of Bollywood Hungama gave it 4 out of 5 stars, saying that the film was "designed to magnetize lovers of desi commercial cinema and woo the BO", especially for viewers who like "old-school masaledaar entertainers". Mohar Basu of Koimoi gave it 2.5 out of 5 and stated that "Akshay Kumar single handedly saves the film from being a sore bore and that is reason enough why Boss deserves a definite shot". Times of India stated that the film is average.
An early iteration of the Twistor comprised a twisted ferromagnetic wire threaded through a series of concentric solenoids (see attached photo of a test rig for a single "bit"). The longer solenoid is the SENSE coil, the shorter one the WRITE coil. A single bit was written by pulsing the WRITE coil with a + (1) or - (0) current sufficient to magnetize the helical area beneath the coil in one of two directions. At one end of the stretched wire was the READ solenoid - when pulsed it sent an acoustic wave through the wire.
His gloves now have the ability to magnetize and propel objects making him much more useful in a fight. In the episode "Kentucky Kaiju", he briefly invented a suit that granted him super strength called Nano-Dex, but he got rid of it when it became a hassle to use. In the same episode, Hiro is shown to possibly suffer from a variation of little man's syndrome as he hates constantly having to be saved by his older and more capable teammates. In season two, it is revealed that Hiro somewhat envies other kids who grew up with normal childhoods.
Also this could be a serious health risk if working with machines that have magnets in or attached to them The stronger magnetic fields can be hazardous to mechanical and electronic devices, as they can erase magnetic media such as floppy disks and credit cards, and magnetize watches and the shadow masks of CRT type monitors at a greater distance than other types of magnet. In some cases, chipped magnets can act as a fire hazard as they come together, sending sparks flying as if it were a lighter flint, because some neodymium magnets contain ferrocerium.
The device works by hysteresis of the magnetization in the iron wires. The permanent magnets are arranged to create two opposite magnetic fields each directed toward (or away) from the center of the coils in opposite directions along the wire. This functions to magnetize the iron band along its axis, first in one direction as it approaches the center of the coils, then reverse its magnetism to the opposite direction as it leaves from the other side of the coil. Due to the hysteresis (coercivity) of the iron, a certain threshold magnetic field (the coercive field, Hc) is required to reverse the magnetization.
Members of The Bridge to Freedom believe that on July 4, 1954 Sanat Kumara stated through Geraldine Innocente: :" . . . Thus We took Our abode upon the sweet Earth. Through the same power of centripetal and centrifugal force of which I spoke (cohesion and expansion of the magnetic power of Divine Love), We then began to magnetize the Flame in the hearts of some of the Guardian Spirits who were not sleeping so soundly and who were not too enthusiastically engaged in using primal life for the satisfaction of the personal self. :"In this way, the Great White Brotherhood began.
The vast majority of the rotor currents will flow through the bars rather than the higher-resistance and usually varnished laminates. Very low voltages at very high currents are typical in the bars and end rings; high efficiency motors will often use cast copper to reduce the resistance in the rotor. In operation, the squirrel-cage motor may be viewed as a transformer with a rotating secondary. When the rotor is not rotating in sync with the magnetic field, large rotor currents are induced; the large rotor currents magnetize the rotor and interact with the stator's magnetic fields to bring the rotor almost into synchronization with the stator's field.
When the element is completely contracted or completely elongated, it is formed by only one variant and it is said to be in a single variant state. The magnetization of the MSM element along a fixed direction differs if the element is in the contraction or in the elongation single variant state. The magnetic anisotropy is the difference between the energy required to magnetize the element in contraction single variant state and in elongation single variant state. The value of the anisotropy is related to the maximum work-output of the MSM alloy, and thus to the available strain and force that can be used for applications.
This means a crystal of the material preferentially magnetizes along a specific crystal axis but is very difficult to magnetize in other directions. Like other magnets, the neodymium magnet alloy is composed of microcrystalline grains which are aligned in a powerful magnetic field during manufacture so their magnetic axes all point in the same direction. The resistance of the crystal lattice to turning its direction of magnetization gives the compound a very high coercivity, or resistance to being demagnetized. The neodymium atom can have a large magnetic dipole moment because it has 4 unpaired electrons in its electron structure as opposed to (on average) 3 in iron.
The term "classic hits" is believed to have its birth at WZLX in Boston, when the station converted from adult contemporary to a format composed of the hipper tracks from the oldies format and album tracks from popular classic rock albums. The goal was to attract and magnetize people who experienced adolescence in either the 1960s and 1970s and enjoyed the music of those eras, but did not favor the then-current heavy metal or top 40 music of the 1980s. These were people whose mindset was aging beyond album-oriented rock and top 40, yet were still either too young for or uninterested in oldies.
For ferromagnetic core inductors, there are additional constraints. There is a minimum magnetization current required to magnetize the core of an inductor, so the current in the inductor branches of the circuit must exceed the minimum, but must not be so great as to saturate the core of either inductor. The additional complexity of using a Maxwell-Wien bridge over simpler bridge types is warranted in circumstances where either the mutual inductance between the load and the known bridge entities, or stray electromagnetic interference, distorts the measurement results. The capacitive reactance in the bridge will exactly oppose the inductive reactance of the load when the bridge is balanced, allowing the load's resistance and reactance to be reliably determined.
After a failed attempt by the United States to destroy the Moon with nuclear weapons, the three scientists plan an international mission to the Moon, where astronauts must construct a device to magnetize the Moon's core, causing it to disgorge the embedded brown dwarf fragment, eliminating the magnetic effects and restoring the Moon to a stable orbit. Because of their unique expertise, Alex and Roland must join an American astronaut and a Russian cosmonaut on the mission, which is expected to be a one-way trip. Roland's pregnant fiancée, Martine Altmann, was travelling across Germany on a train that levitated and derailed. She and an American, Bob Pierce, are able to lead the survivors to a military convoy, and Bob convinces the soldiers to allow Martine to ride to Roland's location.
Internally, ferromagnetic materials have a structure that is divided into domains, each of which is a region of uniform magnetic polarization. When a magnetic field is applied, the boundaries between the domains shift and the domains rotate; both of these effects cause a change in the material's dimensions. The reason that a change in the magnetic domains of a material results in a change in the materials dimensions is a consequence of magnetocrystalline anisotropy, that it takes more energy to magnetize a crystalline material in one direction than another. If a magnetic field is applied to the material at an angle to an easy axis of magnetization, the material will tend to rearrange its structure so that an easy axis is aligned with the field to minimize the free energy of the system.
Prophets, according to the Ahmadiyya Community, inspire humans to such an extent that faith (eiman) translates into practical application of the faith (a'maal). The prophets 'magnetize' and draw humans towards them and as a result of this, true faith – that is, eiman with a'maal (practical application) – is established amongst their followers. It is written, however, that the 'magnetism' which draws forth people that a prophet displays is for a limited time because, within a somewhat long time period after they die, the magnetism that the prophet brought becomes less and less until it is absolutely non- existent. Thus, either God immediately appoints a Successor to the prophet (who may be a prophet himself) that has died or, after hundreds of years, when the magnetism is virtually non-existent, God sends forth another new messenger to display that magnetism once more.
Accessed August 4, 2008. PopMatters' Mark Anthony Neal called it "the most danceable hip-hop recording" of 1986.Neal, Mark Anthony (November 19, 2003). "...And Bless the Mic for the Gods: Rakim Allah". PopMatters. Accessed August 4, 2008. According to Touré of The New York Times, "It is Rakim's verbal dexterity as well as his calm, deep voice and dark tone that has made this song a rap classic: 'I came in the door/ I said it before/ I'll never let the mic magnetize me no more/ But it's bitin' me/ Fightin' me/ Invitin' me to rhyme/ I can't hold it back/ I'm looking for the line/ Takin' off my coat/ Clearin' my throat/ The rhyme will be kickin' it/ Til I hit my last note.'"Touré (August 14, 1994). "Pop View; Only One Star in the Two Schools of Rap".
Attempts to magnetize smaller areas would fail. With orthoferrite, if the patch was written and then a magnetic field was applied to the entire material, the patch would shrink down into a tiny circle, which he called a bubble. These bubbles were much smaller than the domains of normal media like tape, which suggested that very high area densities were possible. Five significant discoveries took place at Bell Labs: # The controlled two-dimensional motion of single wall domains in permalloy films # The application of orthoferrites # The discovery of the stable cylindrical domain # The invention of the field access mode of operation # The discovery of growth-induced uniaxial anisotropy in the garnet system and the realization that garnets would be a practical material The bubble system cannot be described by any single invention, but in terms of the above discoveries.
The final method, however, offers significant advantages since it achieves the final required field by repeated applications of a small field and can utilise a permanent magnet. If we wish to pulse a field using, say, a 10 T magnet to magnetize a 30 mm × 10 mm sample then we can work out how big the solenoid needs to be. If it were possible to wind an appropriate coil using YBCO tape then, assuming an Ic of 70 A and a thickness of 100 μm, we would have 100 turns and 7 000 A turns. This would produce a B field of approximately 7 000/(20 × 10−3) × 4π × 10−7 = 0.4 T. To produce 10 T would require pulsing to 1 400 A! An alternative calculation would be to assume a Jc of say 5 × 108Am−1 and a coil 1 cm2 in cross section.
CrO2 cassette tape The crystal's magnetic properties, derived from its ideal shape such as anisotropy which imparted high coercivity and remanent magnetization intensities, resulted in exceptional stability and efficiency for short wavelengths, and it almost immediately appeared in high performance audio tape used in audio cassette for which treble response and hiss were always problems. Unlike the imperfectly formed ferric oxide coating commonly used, the chromium dioxide crystals were perfectly formed and could be evenly and densely dispersed in a magnetic coating leading to higher signal/noise ratios in audio recordings. Chrome tapes did, however, require audio cassette recorders to be equipped with a higher bias current capability (roughly 50% greater) than that used by ferric oxide to properly magnetize the tape particles. Also introduced was a new equalization (70 μs) that traded some of the extended high-frequency response for lower noise resulting in a 5–6 dB improvement in signal-to-noise ratio over ferric-oxide audio tapes.
De Lamballe as well as her sister-in-law became inducted in the Freemasonic women's Adoption Lodge of St. Jean de la Candeur in 1777, and was made Grand Mistress of the Scottish Lodge, the head of all the Lodges of Adoption, in January 1781: though Marie Antoinette did not become a formal member, she was interested in Freemasonry and often asked Lamballe of the Adoption Lodge. During the famous Affair of the Diamond Necklace, Lamballe was seen in an unsuccessful attempt to visit the imprisoned Jeanne de la Motte at La Salpetriere; the purpose of this visit is unknown, but it created widespread rumors at the time. De Lamballe had long suffered from a weak health, which deteriorated so much during the mid 1780s that she was often unable to perform the duties of her office; at one occasion, she even engaged Deslon, a pupil of Mesmer, to magnetize her. She spent the summer of 1787 in England, advised by doctors to take the English waters in Bath to cure her health.
However, such limitations can be corrected through equalization in the recording and playback amplification sections, and narrower gaps were quite common, particularly in more expensive cassette machines. For example, the RP-2 series combined record/playback head (used in many Nakamichi cassette decks from the 1980s and 1990s) had a 1.2 µm gap, which allows for a playback frequency range of up to 20 kHz. A narrower gap width makes it harder to magnetize the tape, but is less important to the frequency range during recording than during playback, so a two-head solution can be applied: a dedicated recording head with a wide gap allowing effective magnetization of the tape and a dedicated playback head with a specific width narrow gap, possibly facilitating very high playback frequency ranges well above 20 kHz. Separate record and playback heads were already a standard feature of more expensive reel-to-reel tape machines when cassettes were introduced, but their application to cassette recorders had to wait until demand developed for higher quality reproduction, and for sufficiently small heads to be produced.
1735 39, 74-75, published 1 January 1735 The account stated: > A tradesman at Wakefield in Yorkshire, having put up a great number of > knives and forks in a large box ... and having placed the box in the corner > of a large room, there happened a sudden storm of thunder, lightning, &c.; > ... The owner emptying the box on a counter where some nails lay, the > persons who took up the knives, that lay on the nails, observed that the > knives took up the nails. On this the whole number was tried, and found to > do the same, and that, to such a degree as to take up large nails, packing > needles, and other iron things of considerable weight ... E. T. Whittaker suggested in 1910 that this particular event was responsible for lightning to be "credited with the power of magnetizing steel; and it was doubtless this which led Franklin in 1751 to attempt to magnetize a sewing- needle by means of the discharge of Leyden jars." Whittaker, E.T. (1910).

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