What's the difference between ingot and trapezoidal?

Ingot


Definition:

  • (n.) That in which metal is cast; a mold.
  • (n.) A bar or wedge of steel, gold, or other malleable metal, cast in a mold; a mass of unwrought cast metal.

Example Sentences:

  • (1) Samples of alloy were cut from each group, and together with a piece from an original ingot, were mounted, polished, etched, and examined under a metallurgical microscope.
  • (2) The best processing schedule is casting small ingots while avoiding oxidation, followed by swaging, drawing, and homogenization.
  • (3) What do you take me for?’” Nanni must have been quite pissed off to spend hours carving this in clay, and I can only hope he got his ingot upgrade.
  • (4) The smoking adjusted odds ratios in relation to length of exposure showed that the risk was significantly higher among the workers exposed for over 10 years compared to those who worked for less than 10 years in the grinding, soldering and brass ingot making operations.
  • (5) Under near-equilibrium conditions, an alloy ingot containing approximately 64% Ag, 26% Sn, and 10% Au was found by X-ray diffraction to consist of large grains demonstrating the gamma (Ag-Sn) structure.
  • (6) Following results were obtained: 1) Ingot specimen of these alloys showed cytotoxicity, Silver-tin-zinc alloy, silver-tin-zinc-cadmium alloy and silver-copper alloy containing 10% or less of copper showed intense cytotoxicity initially, with diminishing cytotoxic action with time.
  • (7) They were not ones to build monuments; instead, they took weighing scales with them and ingot moulds to melt down spare ecclesiastical treasures.
  • (8) Samples of alloy were cut from each group and, together with a piece from an original ingot, were mounted, polished, etched, and examined under a metallurgical microscope in order to determine the nature and extent of the metallographic changes resulting from fusion and casting of the alloy.
  • (9) The most continuous results were achieved with a Ni-Cr-alloy whose melting temperature can be recognized since the ingots flow together when this point is reached.
  • (10) Melted ingots were lathe-comminuted to a particle size distribution of 1-45 microns.
  • (11) 2) Cast specimen of these alloys showed increasing cytotoxicity with time campared to their ingot specimen.
  • (12) Ingots of approximately 1.5 cm in diameter were sectioned to 0.2 cm in thickness and polished through standard metallographic polishing procedures.
  • (13) For the first series an average weight metal ingot was used and cast at the temperature determined by the sensing head of the casting machine.
  • (14) Evans said lower value goods had been recovered but many loose precious stones were still missing, as were “gold, platinum and other precious metal bars, ingots and coins”.
  • (15) It was written in cuneiform script in 1750BC by a bloke called Nanni who is unhappy with some copper ingots he ordered.
  • (16) He wrote: “You put ingots which were not good before my messenger and said ‘If you want to take them, take them, if you do not want to take them, go away.
  • (17) For example, Sharps Pixley sells a 1g Degussa gold bar for £40.60, or a 100g ingot for £3,290.
  • (18) Subsequently, a method was perfected for incorporating nickel or tungsten powder into the Ag3 Sn ingot.
  • (19) For the second series a larger ingot was used, whilst for the third an elevated casting temperature was employed.
  • (20) Using these efficiencies, amounts of U in some Al and Fe ingots were determined.

Trapezoidal


Definition:

  • (a.) Having the form of a trapezoid; trapezoid.
  • (a.) Trapezohedral.

Example Sentences:

  • (1) Proenkephalin A-related immunoreactive neuronal perikarya were detected in the central gray, reticular formation, nucleus raphes, trapezoid body, nucleus parabrachialis lateralis and medialis, nucleus spinalis nervi trigemini, nucleus dorsalis nervi vagi, and in the nucleus tractus solitarii.
  • (2) From the tissue distribution of 800 microCi MAb E48, the absorbed cumulative radiation doses of tumour and various organs were calculated using the trapezoid integration method for the area under the curve.
  • (3) The responses of afferents were further studied using sinusoidal and trapezoidal stimuli aligned as closely as possible with the orientation of their response vector.
  • (4) The trapezoidal shape of the vertebrae and scarring of the soft tissues within the concavity made correction difficult.
  • (5) From plasma drug concentration-time data, best estimates for the bioavailability parameters of peak plasma phenobarbital concentration (Cmax) and time to peak concentration (tmax) were obtained by curve fitting and area under the plasma drug concentration-time curve (AUC) computed with the trapezoid rule.
  • (6) At low pH, it is theorized that the trapezoidal profile of the dimer is shifted to a more rectangular configuration such that flat ribbons are formed by the lateral association of dimers.
  • (7) DYN B cell bodies were present in nonpyramidal cells of neo- and allocortices, medium-sized cells of the caudate-putamen, nucleus accumbens, lateral part of the central nucleus of the amygdala, bed nucleus of the stria terminalis, preoptic area, and in sectors of nearly every hypothalamic nucleus and area, medial pretectal area, and nucleus of the optic tract, periaqueductal gray, raphe nuclei, cuneiform nucleus, sagulum, retrorubral nucleus, peripeduncular nucleus, lateral terminal nucleus, pedunculopontine nucleus, mesencephalic trigeminal nucleus, parabigeminal nucleus, dorsal nucleus of the lateral lemniscus, lateral superior olivary nucleus, superior paraolivary nucleus, medial superior olivary nucleus, ventral nucleus of the trapezoid body, lateral dorsal tegmental nucleus, accessory trigeminal nucleus, solitary nucleus, nucleus ambiguus, paratrigeminal nucleus, area postrema, lateral reticular nucleus, and ventrolateral region of the reticular formation.
  • (8) Degenerative changes in the scapho-trapezial-trapezoidal (ST) joint may occur as an isolated process or more frequently as a dominant part of pantrapezial degenerative joint affections.
  • (9) The majority of units were recorded in the ventral component of the trapezoid body.
  • (10) They can be summarized as: mesial shifting of the maxilla, dimensional increase of the mandibular body, ovoidal upper arch with a deeper palatal vault, tapering or trapezoidal lower arch.
  • (11) The AUC-integrated concentration was significantly higher than the AUC-trapezoid.
  • (12) Principal cells in the medial nucleus of the trapezoid body (MNTB) are believed to be critical components in the circuit subserving sound localization.
  • (13) The lowest threshold values for current strength, energy and charge were observed when defibrillating the heart by means of rectangular impulses and especially by trapezoidal impulses with ascending slope.
  • (14) That means that rectangular or trapezoidal impulses with an ascending slope may be most conveniently used for cardiac defibrillation.
  • (15) Two femoral neck fractures ten years following Trapezoidal-28 THA have recently been referred to our clinic.
  • (16) Therefore, the velocity profile is "trapezoidal" rather than parabolic at all times during the pulsation period.
  • (17) Trapezoidal and triangular gradient lobe shapes are analyzed.
  • (18) The authors report a case of posterior dislocation of the trapezoid bone together with the second metacarpal.
  • (19) The wrist motion remaining after simulated arthrodeses was as follows: capitate-hamate: flexion (Flx) 98%, extension (Ext) 92%, ulnar deviation (UD) 96%, radial deviation (RD) 90%; scaphoid-lunate: Flx 97%, Ext 91%, UD 90%, RD 91%; scaphoid-trapezium-trapezoid: Flx 86%, Ext 88%, UD 67%, RD 69%; scaphoid-lunate-triquetrum: Flx 91%, Ext 82%, UD 86%, RD 70%; capitate-lunate: Flx 70%, Ext 59%, UD 89%, RD 79%; capitate-hamate-triquetrum: Flx 88%, Ext 79%, UD 88%, RD 81%; hamate-triquetrum: Flx 90%, Ext 85%, UD 89%, RD 94%; scaphoid-trapezium-trapezoid-capitate: Flx 85%, Ext 77%, UD 64%, RD 57%.
  • (20) The trapezoid compression frame is recommended as an alternative to conventional methods of treating unstable fractures and dislocations of the pelvic girdle.

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