`
`AMENDMENTS TO THE SPECIFICATION
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`Please amend paragraph [0084] as follows:
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`[0084] Specifically, as illustrated in FIGS. 18 to 21, the compression chamber C may include a
`
`first compression chamber C1 positioned at a centrifugal side in a radial direction ofthe scroll
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`accommodation space S2 and havingthe refrigerant at a pressure inafirst pressure range, a
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`second compression chamber C2 positioned to be closer to a centripetal side in the radial
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`direction of the scroll accommodation space S2 than the first compression chamber C1 to the
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`centripetal side and having the refrigerant at a pressure in a second pressure range higher than the
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`first pressure range, and a third compression chamber C3 positioned to be closer to the
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`centripetal side in the radial direction of the scroll accommodation space S2 than the second
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`compression chamber C2 to the centripetal side and having the refrigerant at a pressure in a third
`
`
`
`pressure range higher than the second pressure range.Fhetwe-firstchambers-Cl-compression
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`
`
`
`
`
`
`Please amend paragraph [0087] as follows:
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`
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`Ser. No.: 17/757,863
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`Page 2
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`
`
`Attorney Docket: H-IP19110003US1 (266673)
`
`Please amend paragraph [0088] as follows:
`
`[0088] In this case, the discharge openings 512 mayinclude a main discharge opening 512a
`
`
`
`formed adjacent to a center of the fixed end plate 510 to discharge the refrigerant inthethird
`
`the third
`i
`tFeH
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`compression chamberC3, a first sub-discharge opening 512b formedoutside the main discharge
`
`opening 512a in a radial direction of the fixed end plate 510 to discharge the refrigerant in the
`
`second outer compression chamber C21, and a second sub-discharge opening 512c formed
`
`outside the main discharge opening 512ain the radial direction of the fixed end plate 510 and
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`disposed opposite to the first sub-discharge opening 512b based on the main discharge opening
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`512a to discharge the refrigerant in the second inner compression chamber C22.
`
`Please amend paragraph [0089] as follows:
`
`[0089] In addition, the injection port 514 may be provided in plural to supply the refrigerant,
`
`discharged from the injection valve assembly 700, to both the pair of seeendfirst compression
`
`chambers[[C2]]C1. That is, the injection ports 514 may includea first injection port 514a that
`
`may communicate with the secerdfirst outer compression chamber[[C21]]C11, and a second
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`injection port 514b that may communicate with the seeerdfirst inner compression chamber
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`[[C22]]C12.
`
`Thefirst injection port 514a and the secondinjection port 514b may be formed
`
`opposite to each other based on an imaginary line that connects the first sub-discharge opening
`
`512b and the second sub-discharge opening 512c. However, the present disclosure is not
`
`limited thereto, and the injection port 514 may be providedin plural, and the plurality of
`
`injection ports 514 may be formed at the sameside based on an imaginary line that connects the
`
`first sub-discharge opening 512b and the second sub-discharge opening 512c.
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`Ser. No.: 17/757,863
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`Page 3
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`
`
`Attorney Docket: H-IP19110003US1 (266673)
`
`Please amend paragraph [0091] as follows:
`
`[0091] In this case, the injection ports 514 may simultaneously communicate with the
`
`secondfirst outer compression chamber[[C21]]C11 and the seeendfirst inner compression
`
`chamber[[C22]]C12 so that pressure imbalance does not occur between the secordfirst outer
`
`compression chamber[[C21]]C11 and the seeenrdfirst inner compression chamber[[C22]]C12.
`
`Thatis, as illustrated in FIG. 22, when the communication between the first injection port 514a
`
`and the seeendfirst outer compression chamber[[C21]]C11 is initiated, the communication
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`between the second injection port 514b and the secerdfirst inner compression chamber
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`[[C22]]C12 may be initiated.
`
`Please amend paragraph [0092] as follows:
`
`[0092] In addition, particularly, the injection ports 514 may be blocked simultaneously together
`
`with the seeendfirst outer compression chamber[[C21]]C11 and the seeendfirst inner
`
`compression chamber[[C22]]€42. Thatis, as illustrated in FIG. 22, when the communication
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`betweenthe first injection port 514a and the seeendfirst outer compression chamber[[C21]]C11
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`is blocked, the communication between the second injection port 514b and the seeendfirst inner
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`compression chamber[[C22]]C12 may be blocked.
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`Ser. No.: 17/757,863
`
`Page 4
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`
`
`Attorney Docket: H-IP19110003US1 (266673)
`
`Please amend paragraph [0099] as follows:
`
`
`
`
`
`third-outercompression[0099] In this case, when the pressure in thechamber-C31andthe
`
`
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`pressure+nthethirdchamberC32reachthird compression chamber C3compressioninner
`
`
`
`
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`reaches a level of a discharge pressure, the main opening/closing part 610 opens the main
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`discharge opening 512a.
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`In this case, when the pressure in the second outer compression
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`chamber C21 is higher than the second pressure range, the first sub-opening/closing part 630
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`opensthe first sub-discharge opening 512b to decrease the pressure in the second outer
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`compression chamber C21 to a level included in the second pressure range. When the pressure
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`in the second inner compression chamber C22 higher than the secondpressure range, the second
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`sub-opening/closing part 650 opensthe second sub-discharge opening 512c to decrease the
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`pressure in the second inner compression chamber C22 to a level included in the second pressure
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`range. As aresult, itis possible to prevent the pressure of the refrigerant discharged from the
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`main discharge opening 512a from becoming excessively higher than the discharge pressure.
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`That is, the excessive compression may be prevented.
`
`Please amend paragraph [00109] as follows:
`
`[00109] The first and second leg portions 724a and 724b are formedin parallel with each other.
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`A connected portion 727betweenthefirst leg portion 724a and the connection portion 726 and a
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`connected portion 727between the second leg portion 724b and the connection portion 726 may
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`be formed at the opposite sides to implement the compact structure. Thatis, the first leg portion
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`724a and the second leg portion 724b are respectively connected to two opposite ends of the
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`connection portion 726.
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`Ser. No.: 17/757,863
`
`Page 5
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`
`
`Attorney Docket: H-IP19110003US1 (266673)
`
`Please amend paragraph [00164] as follows:
`
`[00164] Specifically, an injection valve assembly 1700 according to another embodiment will
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`be described with reference to FIG. 16, a cover plate 1710 has two inflow ports 1712, and an
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`injection valve 1720 has two head portions 1722 and twoleg portions 1724. However, unlike
`
`the above-mentioned description, the first inflow port 1712a and the second inflow port 1712b
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`are formedside by side at one side of the cover plate 1710. Therefore, the first head portion
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`1722a andthefirst leg portion 1724a for opening or closing the first inflow port 1712a and the
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`second head portion 1722b and the second leg portion 1724b for opening or closing the second
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`inflow port 1712b may be formedside by side in the same direction without being formed in a
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`staggered manner.
`
`In the present embodiment, a connection portion 1726 configured to connect
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`the first leg portion 1724a and the secondleg portion 1724b hasa straight shape. However, the
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`present disclosure is not limited thereto. That is, a connected portion 1727betweenthe first leg
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`portion 1724a and the connection portion 1726 and a connected portion 1727between the second
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`leg portion 1724b and the connection portion 1726 are formedat the sameside.
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`Ser. No.: 17/757,863
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`Page 6
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`

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