View allAll Photos Tagged polynomials

SIMPLE = T / file does conform to FITS standard

BITPIX = -32 / number of bits per data pixel

NAXIS = 3 / number of data axes

NAXIS1 = 6248 / length of data axis 1

NAXIS2 = 4176 / length of data axis 2

NAXIS3 = 3 / length of data axis 3

EXTEND = T / FITS dataset may contain extensions

COMMENT FITS (Flexible Image Transport System) format is defined in 'Astronomy

COMMENT and Astrophysics', volume 376, page 359; bibcode: 2001A&A...376..359H

BZERO = 0. / Offset data range to that of unsigned short

BSCALE = 1. / Default scaling factor

PROGRAM = 'Siril 1.4.0-beta2' / Software that created this HDU

DATE = '2025-06-20T16:19:09' / UTC date that FITS file was created

DATE-OBS= '2025-06-20T08:27:21.106301' / YYYY-MM-DDThh🇲🇲ss observation start,

IMAGETYP= 'Light ' / Type of image

ROWORDER= 'BOTTOM-UP' / Order of the rows in image array

EXPTIME = 180. / [s] Exposure time duration

TELESCOP= 'EQMod Mount' / Telescope used to acquire this image

FOCALLEN= 249. / [mm] Focal length

XBINNING= 1 / Camera binning mode

YBINNING= 1 / Camera binning mode

XPIXSZ = 3.75999999046326 / [um] Pixel X axis size

YPIXSZ = 3.75999999046326 / [um] Pixel Y axis size

INSTRUME= 'ZWO ASI2600MC Pro' / Instrument name

CCD-TEMP= 0. / [degC] CCD temperature

SET-TEMP= 0. / [degC] CCD temperature setpoint

GAIN = 100 / Sensor gain

OFFSET = 50 / Sensor gain offset

CVF = 0.242862924933434 / [e-/ADU] Electrons per A/D unit

STACKCNT= 136 / Stack frames

LIVETIME= 24480. / [s] Exposure time after deadtime correction

EXPSTART= 2460843.8380686 / [JD] Exposure start time (standard Julian date)

EXPEND = 2460846.85441095 / [JD] Exposure end time (standard Julian date)

OBJECT = 'NGC7000 ' / Name of the object of interest

SITELAT = 34.1986 / [deg] Observation site latitude

SITELONG= -118.919 / [deg] Observation site longitude

OBJCTRA = '20 57 2.307' / [H M S] Image center Right Ascension

OBJCTDEC= '+43 57 31.662' / [D M S] Image center Declination

RA = 314.259613433003 / [deg] Image center Right Ascension

DEC = 43.9587950570444 / [deg] Image center Declination

CTYPE1 = 'RA---TAN-SIP' / TAN (gnomic) projection + SIP distortions

CTYPE2 = 'DEC--TAN-SIP' / TAN (gnomic) projection + SIP distortions

CUNIT1 = 'deg ' / Unit of coordinates

CUNIT2 = 'deg ' / Unit of coordinates

EQUINOX = 9.87654321E+107 / Equatorial equinox

CRPIX1 = 2956.13273112 / Axis1 reference pixel

CRPIX2 = 2315.55782064 / Axis2 reference pixel

CRVAL1 = 314.024832448 / [deg] Axis1 reference value

CRVAL2 = 44.1358299954 / [deg] Axis2 reference value

LONPOLE = 180. / Native longitude of celestial pole

CDELT1 = -0.00086542917605275 / [deg] X pixel size

CDELT2 = 0.000865158789727985 / [deg] Y pixel size

PC1_1 = 0.169311961724374 / Linear transformation matrix (1, 1)

PC1_2 = 0.985562509238782 / Linear transformation matrix (1, 2)

PC2_1 = -0.985596324825061 / Linear transformation matrix (2, 1)

PC2_2 = 0.169115003743997 / Linear transformation matrix (2, 2)

A_ORDER = 2 / SIP polynomial degree, axis 1, pixel-to-sky

A_0_0 = 0.

A_1_0 = 0.

A_0_1 = 0.

A_2_0 = 1.39326404121E-07

A_1_1 = -1.26645692543E-07

A_0_2 = -4.07583389495E-08

B_ORDER = 2 / SIP polynomial degree, axis 2, pixel-to-sky

B_0_0 = 0.

B_1_0 = 0.

B_0_1 = 0.

B_2_0 = -3.54669938264E-08

B_1_1 = 9.4514157273E-08

B_0_2 = -1.7368879975E-07

AP_ORDER= 2 / SIP polynomial degree, axis 1, sky-to-pixel

AP_0_0 = -8.67703989764E-05

AP_1_0 = 2.90751445713E-07

AP_0_1 = -1.61428422671E-07

AP_2_0 = -1.39290503247E-07

AP_1_1 = 1.26616236203E-07

AP_0_2 = 4.07484240312E-08

BP_ORDER= 2 / SIP polynomial degree, axis 2, sky-to-pixel

BP_0_0 = 9.77642188248E-05

BP_1_0 = -1.65834928503E-07

BP_0_1 = 2.94150812971E-07

BP_2_0 = 3.54504873416E-08

BP_1_1 = -9.44731207578E-08

BP_0_2 = 1.73640545059E-07

HISTORY GraXpert AI BGE: subtraction

HISTORY Photometric CC (algorithm: PCC)

HISTORY SCNR (type=average neutral, amount=1.00, preserve=true)

HISTORY Histogram Transf. (mid=0.000, lo=0.000, hi=1.000)

CREATOR = 'ZWO ASIAIR Plus' / Capture software

XORGSUBF= 0 / Subframe X position in binned pixels

YORGSUBF= 0 / Subframe Y position in binned pixels

CCDXBIN = 1 / Camera X Bin

CCDYBIN = 1 / Camera Y Bin

GUIDECAM= 'ZWO ASI120MM Mini' / Guide camera model

IMAGEW = 6248 / Image width, in pixels.

IMAGEH = 4176 / Image height, in pixels.

END

 

The board explains how finite difference method is used to calculate polynomials.

Continuity And Differentiability If the addition of function ‘f’ is Limx⇢p+ f (x) = f (p) and Limx⇢q- f (x) = f (q) then the given function ‘f’ is continuous in the close interval [p, q]. If the function is polynomial then these polynomial function are continuous. Let us have a rational function f (p).

Naomi Corti, Zachary Gonder, Olivia Bell, and KJ Takahashi perform Gianna Riesen's "Dancer Polynomials" in NOW: Premieres at the 2025 Vail Dance Festival. Photo by Christopher Duggan.

Polynomial Diffusion Models for Life Insurance Liabilities. Biagini, Zhang arxiv.org/abs/1602.07910 #q-fin

SIMPLE = T / file does conform to FITS standard

BITPIX = -32 / number of bits per data pixel

NAXIS = 3 / number of data axes

NAXIS1 = 945 / length of data axis 1

NAXIS2 = 1729 / length of data axis 2

NAXIS3 = 3 / length of data axis 3

EXTEND = T / FITS dataset may contain extensions

COMMENT FITS (Flexible Image Transport System) format is defined in 'Astronomy

COMMENT and Astrophysics', volume 376, page 359; bibcode: 2001A&A...376..359H

BZERO = 0. / Offset data range to that of unsigned short

BSCALE = 1. / Default scaling factor

PROGRAM = 'Siril 1.4.0-beta2' / Software that created this HDU

FILENAME= 'Light_M 27_20.0s_LP_20250601-035817.fit'

DATE = '2025-06-03T04:46:47' / UTC date that FITS file was created

DATE-OBS= '2025-06-01T08:57:54.377825' / YYYY-MM-DDThh🇲🇲ss observation start,

IMAGETYP= 'Light ' / Type of image

ROWORDER= 'BOTTOM-UP' / Order of the rows in image array

EXPTIME = 20. / [s] Exposure time duration

TELESCOP= 'S50_f1c10930' / Telescope used to acquire this image

FILTER = 'mixed ' / Active filter name

APERTURE= 5. / Aperture of the instrument

FOCALLEN= 251.859 / [mm] Focal length

XBINNING= 1 / Camera binning mode

YBINNING= 1 / Camera binning mode

XPIXSZ = 2.9 / [um] Pixel X axis size

YPIXSZ = 2.9 / [um] Pixel Y axis size

INSTRUME= 'Seestar S50' / Instrument name

CCD-TEMP= 15.3125 / [degC] CCD temperature

GAIN = 80 / Sensor gain

FOCPOS = 1620 / [step] Focuser position

STACKCNT= 133 / Stack frames

LIVETIME= 2660. / [s] Exposure time after deadtime correction

EXPSTART= 2460827.81081978 / [JD] Exposure start time (standard Julian date)

EXPEND = 2460827.89166513 / [JD] Exposure end time (standard Julian date)

OBJECT = 'M 27 ' / Name of the object of interest

SITELAT = 41.7559 / [deg] Observation site latitude

SITELONG= -88.1817 / [deg] Observation site longitude

OBJCTRA = '19 59 41.273' / [H M S] Image center Right Ascension

OBJCTDEC= '+22 44 22.461' / [D M S] Image center Declination

RA = 299.921969223822 / [deg] Image center Right Ascension

DEC = 22.7395724348345 / [deg] Image center Declination

CTYPE1 = 'RA---TAN-SIP' / TAN (gnomic) projection + SIP distortions

CTYPE2 = 'DEC--TAN-SIP' / TAN (gnomic) projection + SIP distortions

CUNIT1 = 'deg ' / Unit of coordinates

CUNIT2 = 'deg ' / Unit of coordinates

EQUINOX = 2000. / Equatorial equinox

CRPIX1 = 485.5 / Axis1 reference pixel

CRPIX2 = 847.5 / Axis2 reference pixel

CRVAL1 = 299.913820271712 / [deg] Axis1 reference value

CRVAL2 = 22.7275394907915 / [deg] Axis2 reference value

LONPOLE = 180. / Native longitude of celestial pole

CDELT1 = -0.000659747133158036 / [deg] X pixel size

CDELT2 = 0.00065970321238653 / [deg] Y pixel size

PC1_1 = 0.998078149581276 / Linear transformation matrix (1, 1)

PC1_2 = 0.0619677926701853 / Linear transformation matrix (1, 2)

PC2_1 = -0.0619206937298492 / Linear transformation matrix (2, 1)

PC2_2 = 0.998081072703022 / Linear transformation matrix (2, 2)

A_ORDER = 3 / SIP polynomial degree, axis 1, pixel-to-sky

A_0_0 = 0.

A_1_0 = 0.

A_0_1 = 0.

A_2_0 = -3.53747170344176E-07

A_1_1 = -2.5157063787241E-07

A_0_2 = -4.80319305990762E-09

A_3_0 = -1.04696407013158E-10

A_2_1 = -3.68762474410932E-10

A_1_2 = -1.82332944083092E-10

A_0_3 = -1.28205142943169E-10

B_ORDER = 3 / SIP polynomial degree, axis 2, pixel-to-sky

B_0_0 = 0.

B_1_0 = 0.

B_0_1 = 0.

B_2_0 = -1.99185435081301E-07

B_1_1 = 1.15641901235075E-07

B_0_2 = -3.99721223861734E-07

B_3_0 = 4.59013551317123E-10

B_2_1 = 1.57789955694643E-10

B_1_2 = -1.80813630847316E-12

B_0_3 = 5.08181097060919E-11

AP_ORDER= 3 / SIP polynomial degree, axis 1, sky-to-pixel

AP_0_0 = -3.76027099853418E-05

AP_1_0 = -6.14272077648081E-09

AP_0_1 = -8.55321174296654E-09

AP_2_0 = 3.53956116634201E-07

AP_1_1 = 2.51828088827321E-07

AP_0_2 = 5.03793892017271E-09

AP_3_0 = 1.04951160000075E-10

AP_2_1 = 3.6907193905666E-10

AP_1_2 = 1.8261200658298E-10

AP_0_3 = 1.28228656618685E-10

BP_ORDER= 3 / SIP polynomial degree, axis 2, sky-to-pixel

BP_0_0 = 2.39517809413289E-05

BP_1_0 = 1.4484987329225E-08

BP_0_1 = 1.1243771469438E-08

BP_2_0 = 1.98984005629928E-07

BP_1_1 = -1.15718086979604E-07

BP_0_2 = 3.99585300582188E-07

BP_3_0 = -4.58982127773712E-10

BP_2_1 = -1.57806193006496E-10

BP_1_2 = 1.56669462539423E-12

BP_0_3 = -5.05046275658598E-11

HISTORY Saturation enhancement (amount=-0.14)

HISTORY Curves Transformation with 10 points

HISTORY Curves Transformation with 2 points

CREATOR = 'ZWO Seestar S50' / Capture software

PRODUCER= 'ZWO ' / Powered by ZWO

XORGSUBF= 0 / Subframe X position in binned pixels

YORGSUBF= 0 / Subframe Y position in binned pixels

EQMODE = 1 / Equatorial mode

CCDXBIN = 1 / Camera X Bin

CCDYBIN = 1 / Camera Y Bin

TOTALEXP= 20. / Total Exposure Time in seconds

BG-EXTR = 'GraXpert'

CBG-1 = 0.0032965415

CBG-2 = 0.0032965415

CBG-3 = 0.0032965415

INTP-OPT= 'RBF '

HIERARCH SMOOTHING = 0.9

HIERARCH CORR-TYPE = 'Subtraction'

HIERARCH SAMPLE-SIZE = 15

HIERARCH RBF-KERNEL = 'thin_plate'

HIERARCH SPLINE-ORDER = 3

BG-PTS = '[[555, 9, 1], [627, 9, 1], [699, 9, 1], [741, 9, 1], [813, 9, 1], &'

CONTINUE '[411, 111, 1], [555, 111, 1], [627, 111, 1], [699, 111, 1], [771, &'

CONTINUE '111, 1], [813, 111, 1], [885, 111, 1], [339, 183, 1], [381, 183, &'

CONTINUE '1], [453, 183, 1], [525, 183, 1], [597, 183, 1], [699, 183, 1], &'

CONTINUE '[771, 183, 1], [843, 153, 1], [885, 183, 1], [987, 183, 1], [1029, &'

CONTINUE '183, 1], [267, 255, 1], [339, 255, 1], [396, 240, 1], [453, 255, &'

CONTINUE '1], [525, 255, 1], [597, 255, 1], [699, 255, 1], [771, 225, 1], &'

CONTINUE '[828, 240, 1], [885, 255, 1], [987, 255, 1], [1044, 240, 1], [195, &'

CONTINUE '297, 1], [267, 327, 1], [324, 312, 1], [396, 312, 1], [453, 327, &'

CONTINUE '1], [540, 312, 1], [597, 297, 1], [699, 327, 1], [771, 297, 1], &'

CONTINUE '[843, 297, 1], [915, 327, 1], [972, 312, 1], [1029, 327, 1], [195, &'

CONTINUE '399, 1], [237, 399, 1], [309, 369, 1], [381, 399, 1], [453, 399, &'

CONTINUE '1], [555, 369, 1], [597, 399, 1], [699, 369, 1], [756, 384, 1], &'

CONTINUE '[843, 399, 1], [915, 399, 1], [987, 369, 1], [1059, 399, 1], [21, &'

CONTINUE '471, 1], [108, 456, 1], [195, 471, 1], [267, 471, 1], [339, 471, &'

CONTINUE '1], [381, 471, 1], [483, 441, 1], [525, 471, 1], [627, 441, 1], &'

CONTINUE '[699, 471, 1], [771, 471, 1], [813, 441, 1], [915, 471, 1], [987, &'

CONTINUE '441, 1], [1029, 471, 1], [21, 543, 1], [93, 543, 1], [195, 543, &'

CONTINUE '1], [237, 543, 1], [339, 543, 1], [381, 543, 1], [453, 543, 1], &'

CONTINUE '[555, 543, 1], [627, 543, 1], [699, 543, 1], [741, 543, 1], [843, &'

CONTINUE '513, 1], [915, 513, 1], [957, 543, 1], [1059, 543, 1], [51, 615, &'

CONTINUE '1], [123, 615, 1], [165, 585, 1], [237, 585, 1], [324, 600, 1], &'

CONTINUE '[381, 615, 1], [453, 615, 1], [555, 615, 1], [597, 615, 1], [699, &'

CONTINUE '615, 1], [771, 615, 1], [843, 615, 1], [915, 585, 1], [987, 615, &'

CONTINUE '1], [1059, 615, 1], [51, 687, 1], [93, 687, 1], [195, 687, 1], &'

CONTINUE '[267, 687, 1], [309, 657, 1], [396, 672, 1], [453, 657, 1], [525, &'

CONTINUE '687, 1], [597, 657, 1], [699, 687, 1], [771, 657, 1], [843, 687, &'

CONTINUE '1], [779.7394136807818, 704.6254071661238, 1.0], [987, 657, 1], &'

CONTINUE '[1029, 687, 1], [21, 729, 1], [123, 759, 1], [180, 744, 1], [267, &'

CONTINUE '759, 1], [324, 744, 1], [396, 744, 1], [453, 729, 1], [525, 759, &'

CONTINUE '1], [627, 729, 1], [699, 729, 1], [771, 759, 1], [843, 729, 1], &'

CONTINUE '[855.830618892508, 766.1237785016286, 1.0], [972, 744, 1], [1029, &'

CONTINUE '759, 1], [51, 831, 1], [123, 831, 1], [165, 831, 1], [267, 831, &'

CONTINUE '1], [309, 801, 1], [396, 816, 1], [453, 801, 1], [555, 801, 1], &'

CONTINUE '[627, 801, 1], [684, 816, 1], [741, 801, 1], [813, 831, 1], [915, &'

CONTINUE '801, 1], [987, 831, 1], [1059, 801, 1], [51, 873, 1], [123, 873, &'

CONTINUE '1], [195, 873, 1], [267, 873, 1], [309, 873, 1], [381, 873, 1], &'

CONTINUE '[497.2638436482084, 832.8338762214984, 1.0], [580.6514657980456, &'

CONTINUE '849.5114006514658, 1.0], [623.3876221498372, 848.4690553745928, &'

CONTINUE '1.0], [699, 903, 1], [771, 903, 1], [813, 903, 1], [915, 873, 1], &'

CONTINUE '[972, 888, 1], [1059, 903, 1], [51, 945, 1], [123, 945, 1], [165, &'

CONTINUE '945, 1], [252, 960, 1], [309, 945, 1], [381, 945, 1], [453, 945, &'

CONTINUE '1], [699, 975, 1], [771, 945, 1], [843, 975, 1], [885, 975, 1], &'

CONTINUE '[972, 960, 1], [1059, 975, 1], [51, 1047, 1], [123, 1017, 1], &'

CONTINUE '[165, 1017, 1], [237, 1047, 1], [309, 1017, 1], [381, 1047, 1], &'

CONTINUE '[483, 1047, 1], [627, 1047, 1], [699, 1017, 1], [771, 1047, 1], &'

CONTINUE '[813, 1017, 1], [885, 1017, 1], [972, 1032, 1], [1029, 1017, 1], &'

CONTINUE '[51, 1119, 1], [123, 1089, 1], [165, 1119, 1], [252, 1104, 1], &'

CONTINUE '[309, 1089, 1], [396, 1104, 1], [453, 1119, 1], [525, 1089, 1], &'

CONTINUE '[627, 1119, 1], [699, 1119, 1], [741, 1089, 1], [843, 1089, 1], &'

CONTINUE '[885, 1089, 1], [957, 1119, 1], [1029, 1119, 1], [51, 1161, 1], &'

CONTINUE '[123, 1191, 1], [165, 1191, 1], [267, 1191, 1], [309, 1161, 1], &'

CONTINUE '[381, 1191, 1], [453, 1161, 1], [525, 1161, 1], [627, 1191, 1], &'

CONTINUE '[699, 1161, 1], [741, 1161, 1], [813, 1161, 1], [885, 1161, 1], &'

CONTINUE '[972, 1176, 1], [1029, 1191, 1], [51, 1233, 1], [108, 1248, 1], &'

CONTINUE '[195, 1233, 1], [267, 1233, 1], [339, 1233, 1], [396, 1248, 1], &'

CONTINUE '[453, 1233, 1], [525, 1233, 1], [627, 1233, 1], [699, 1233, 1], &'

CONTINUE '[771, 1263, 1], [813, 1233, 1], [915, 1233, 1], [957, 1233, 1], &'

CONTINUE '[1029, 1263, 1], [51, 1335, 1], [108, 1320, 1], [195, 1305, 1], &'

CONTINUE '[237, 1305, 1], [324, 1320, 1], [381, 1335, 1], [483, 1335, 1], &'

CONTINUE '[540, 1320, 1], [627, 1305, 1], [699, 1305, 1], [771, 1335, 1], &'

CONTINUE '[813, 1335, 1], [915, 1335, 1], [957, 1335, 1], [1059, 1335, 1], &'

CONTINUE '[36, 1392, 1], [93, 1377, 1], [165, 1377, 1], [267, 1377, 1], &'

CONTINUE '[309, 1377, 1], [381, 1407, 1], [483, 1407, 1], [555, 1407, 1], &'

CONTINUE '[627, 1407, 1], [699, 1377, 1], [741, 1407, 1], [813, 1407, 1], &'

CONTINUE '[885, 1407, 1], [987, 1407, 1], [1029, 1407, 1], [51, 1449, 1], &'

CONTINUE '[93, 1449, 1], [267, 1449, 1], [309, 1449, 1], [411, 1479, 1], &'

CONTINUE '[483, 1449, 1], [555, 1479, 1], [627, 1479, 1], [699, 1479, 1], &'

CONTINUE '[771, 1479, 1], [843, 1479, 1], [915, 1479, 1], [987, 1479, 1], &'

CONTINUE '[1059, 1449, 1], [36, 1536, 1], [93, 1521, 1], [165, 1551, 1], &'

CONTINUE '[237, 1551, 1], [339, 1521, 1], [381, 1551, 1], [483, 1521, 1], &'

CONTINUE '[555, 1521, 1], [627, 1521, 1], [681.758957654723, &'

CONTINUE '1564.5602605863191, 1.0], [771, 1551, 1], [843, 1551, 1], [885, &'

CONTINUE '1521, 1], [987, 1551, 1], [1029, 1521, 1], [51, 1623, 1], [93, &'

CONTINUE '1593, 1], [195, 1593, 1], [237, 1623, 1], [309, 1623, 1], [411, &'

CONTINUE '1623, 1], [453, 1623, 1], [525, 1623, 1], [627, 1623, 1], [699, &'

CONTINUE '1623, 1], [771, 1623, 1], [843, 1593, 1], [915, 1623, 1], [987, &'

CONTINUE '1623, 1], [1029, 1593, 1], [51, 1695, 1], [123, 1665, 1], [195, &'

CONTINUE '1665, 1], [267, 1665, 1], [339, 1695, 1], [411, 1695, 1], [483, &'

CONTINUE '1695, 1], [555, 1695, 1], [627, 1695, 1], [699, 1665, 1], [771, &'

CONTINUE '1695, 1], [843, 1695, 1], [915, 1695, 1], [987, 1695, 1], [1029, &'

CONTINUE '1695, 1], [21, 1767, 1], [108, 1752, 1], [165, 1767, 1], [267, &'

CONTINUE '1767, 1], [309, 1767, 1], [396, 1752, 1], [483, 1737, 1], [555, &'

CONTINUE '1767, 1], [627, 1767, 1], [699, 1767, 1], [771, 1767, 1], [843, &'

CONTINUE '1767, 1], [915, 1767, 1], [987, 1767, 1], [1029, 1767, 1], [21, &'

CONTINUE '1839, 1], [93, 1839, 1], [165, 1839, 1], [252, 1824, 1], [339, &'

CONTINUE '1809, 1], [411, 1839, 1], [483, 1839, 1], [555, 1839, 1], [627, &'

CONTINUE '1809, 1], [699, 1809, 1], [771, 1839, 1], [843, 1809, 1], [915, &'

CONTINUE '1839, 1], [987, 1839, 1], [1059, 1839, 1], [21, 1911, 1], [93, &'

CONTINUE '1881, 1], [165, 1911, 1], [267, 1881, 1], [309, 1881, 1], [411, &'

CONTINUE '1881, 1], [483, 1881, 1], [555, 1881, 1], [627, 1881, 1], [699, &'

CONTINUE '1911, 1], [771, 1911, 1], [843, 1911, 1], [915, 1911, 1], [987, &'

CONTINUE '1911, 1], [1059, 1911, 1], [32, 322, 1], [51, 339, 1], [123, 309, &'

CONTINUE '1], [36, 396, 1], [123, 411, 1], [123, 267, 1], [53, 93, 1], [93, &'

CONTINUE '51, 1], [180, 36, 1], [51, 93, 1], [108, 108, 1], [195, 123, 1], &'

CONTINUE '[21, 165, 1], [123, 165, 1], [74, 290, 1], [51, 267, 1], [214, &'

CONTINUE '202, 1], [267, 195, 1], [321, 48, 1], [309, 51, 1], [411, 51, 1], &'

CONTINUE '[483, 51, 1], [267, 93, 1], [917, 48, 1], [885, 51, 1], [987, 21, &'

CONTINUE '1], [1044, 36, 1], [1029, 123, 1], [926, 106, 1], [927, 213, 1], &'

CONTINUE '[741, 339, 1], [456, 1570, 1], [339, 1563, 1], [195, 1491, 1], &'

CONTINUE '[237, 1491, 1], [495, 1570, 1], [568, 1559, 1], [635, 208, 1], &'

CONTINUE '[339, 411, 1], [525, 411, 1], [627, 483, 1], [195, 627, 1], [267, &'

CONTINUE '627, 1], [62, 757, 1], [627, 339, 1], [451, 464, 1]]'

END

 

SIMPLE = T / file does conform to FITS standard

BITPIX = -32 / number of bits per data pixel

NAXIS = 3 / number of data axes

NAXIS1 = 2727 / length of data axis 1

NAXIS2 = 2914 / length of data axis 2

NAXIS3 = 3 / length of data axis 3

EXTEND = T / FITS dataset may contain extensions

COMMENT FITS (Flexible Image Transport System) format is defined in 'Astronomy

COMMENT and Astrophysics', volume 376, page 359; bibcode: 2001A&A...376..359H

BZERO = 0. / Offset data range to that of unsigned short

BSCALE = 1. / Default scaling factor

MIPS-HI = 65535 / Lower visualization cutoff

PROGRAM = 'Siril 1.4.0-beta3' / Software that created this HDU

DATE = '2025-09-07T15:54:45' / UTC date that FITS file was created

DATE-OBS= '2025-09-06T21:50:05.809000' / YYYY-MM-DDThh🇲🇲ss observation start,

IMAGETYP= 'Light Frame' / Type of image

ROWORDER= 'BOTTOM-UP' / Order of the rows in image array

EXPTIME = 180. / [s] Exposure time duration

TELESCOP= 'Slywatcher Evolux 62 ED 400@F\6.5' / Telescope used to acquire this i

FOCALLEN= 362.507 / [mm] Focal length

CENTALT = 39.89957 / [deg] Altitude of telescope

CENTAZ = 32.74331 / [deg] Azimuth of telescope

XBINNING= 1 / Camera binning mode

YBINNING= 1 / Camera binning mode

XPIXSZ = 4.8 / [um] Pixel X axis size

YPIXSZ = 4.8 / [um] Pixel Y axis size

INSTRUME= 'QHY CCD QHY168C-f3c2994' / Instrument name

CCD-TEMP= -10. / [degC] CCD temperature

GAIN = 10 / Sensor gain

OFFSET = 50 / Sensor gain offset

STACKCNT= 91 / Stack frames

LIVETIME= 16380. / [s] Exposure time after deadtime correction

EXPSTART= 2460925.38793968 / [JD] Exposure start time (standard Julian date)

EXPEND = 2460925.63782278 / [JD] Exposure end time (standard Julian date)

OBJECT = 'M 31 ' / Name of the object of interest

AIRMASS = 1.557501 / Airmass at frame center (Gueymard 1993)

SITELAT = 47.91667 / [deg] Observation site latitude

SITELONG= 1.933056 / [deg] Observation site longitude

OBJCTRA = '00 42 30.672' / [H M S] Image center Right Ascension

OBJCTDEC= '+41 12 22.659' / [D M S] Image center Declination

RA = 10.6277982528625 / [deg] Image center Right Ascension

DEC = 41.2062942758214 / [deg] Image center Declination

CTYPE1 = 'RA---TAN-SIP' / TAN (gnomic) projection + SIP distortions

CTYPE2 = 'DEC--TAN-SIP' / TAN (gnomic) projection + SIP distortions

CUNIT1 = 'deg ' / Unit of coordinates

CUNIT2 = 'deg ' / Unit of coordinates

EQUINOX = 2000. / Equatorial equinox

CRPIX1 = 1364. / Axis1 reference pixel

CRPIX2 = 1457.5 / Axis2 reference pixel

CRVAL1 = 10.6277982528625 / [deg] Axis1 reference value

CRVAL2 = 41.2062942758214 / [deg] Axis2 reference value

LONPOLE = 180. / Native longitude of celestial pole

CDELT1 = -0.000758721053819356 / [deg] X pixel size

CDELT2 = 0.000758599487695311 / [deg] Y pixel size

PC1_1 = -0.336820836673126 / Linear transformation matrix (1, 1)

PC1_2 = -0.941568756906693 / Linear transformation matrix (1, 2)

PC2_1 = 0.941480486837379 / Linear transformation matrix (2, 1)

PC2_2 = -0.337067490132841 / Linear transformation matrix (2, 2)

A_ORDER = 3 / SIP polynomial degree, axis 1, pixel-to-sky

A_0_0 = 0.

A_1_0 = 0.

A_0_1 = 0.

A_2_0 = 3.97578917841809E-07

A_1_1 = -2.44774798826953E-08

A_0_2 = 9.22941238005915E-08

A_3_0 = -1.12035964590002E-09

A_2_1 = 5.12191944642339E-12

A_1_2 = -1.1009892822829E-09

A_0_3 = 3.73598524888844E-13

B_ORDER = 3 / SIP polynomial degree, axis 2, pixel-to-sky

B_0_0 = 0.

B_1_0 = 0.

B_0_1 = 0.

B_2_0 = 1.19579208308998E-07

B_1_1 = 2.91051781005884E-07

B_0_2 = 1.02802639174333E-07

B_3_0 = -1.3611124041332E-11

B_2_1 = -1.07757308897139E-09

B_1_2 = 1.73284258110139E-12

B_0_3 = -1.1172753794729E-09

AP_ORDER= 3 / SIP polynomial degree, axis 1, sky-to-pixel

AP_0_0 = 0.000988225551640077

AP_1_0 = -1.24879495848607E-05

AP_0_1 = 1.15890752822243E-07

AP_2_0 = -4.025349097176E-07

AP_1_1 = 2.41075310703775E-08

AP_0_2 = -9.34493958401128E-08

AP_3_0 = 1.13489542756861E-09

AP_2_1 = -5.25179707652799E-12

AP_1_2 = 1.11750286044444E-09

AP_0_3 = -4.17413704041954E-13

BP_ORDER= 3 / SIP polynomial degree, axis 2, sky-to-pixel

BP_0_0 = 0.000952212066372248

BP_1_0 = 3.76735565828782E-07

BP_0_1 = -1.33797912759137E-05

BP_2_0 = -1.21044688351177E-07

BP_1_1 = -2.9451504048561E-07

BP_0_2 = -1.04667173896164E-07

BP_3_0 = 1.36872185686008E-11

BP_2_1 = 1.09420708095768E-09

BP_1_2 = -1.93156721119263E-12

BP_0_3 = 1.13223326583511E-09

PLTSOLVD= T / Siril internal solver

HISTORY Rotation (-90.0deg, recadrage=TRUE, clamp =TRUE)

HISTORY Rotation (180.0deg, recadrage=TRUE, clamp =TRUE)

HISTORY GraXpert AI BGE: subtraction

HISTORY Extraction du gradient (Correction : Subtraction)

HISTORY R solution astrom trique

HISTORY Photom trie CC (algorithme : PCC)

HISTORY Transformation asinh : (stretch= 4.0, bp=0.00000)

HISTORY Transf. histogramme (mid=0.004, lo=0.018, hi=1.000)

HISTORY D bruitage NL-Bayes (mod=0.800, SOS activ (iters=3, rho=0.200), CC

HISTORY Filtre m dian (filtre=3x3 px)

HISTORY Rehaussement de la saturation (quantit =0.30)

HISTORY Rehaussement de la saturation (quantit =0.30)

FRAME = 'Light ' / Frame Type

APTDIA = 6.200E+01 / Telescope diameter (mm)

SCALE = 2.750667E+00 / arcsecs per pixel

PIERSIDE= 'WEST ' / West, looking East

RADECSYS= 'FK5 ' / RADECSYS

SECPIX1 = 2.7506667760E+00 / SECPIX1

SECPIX2 = 2.7506667760E+00 / SECPIX2

COMMENT Generated by INDI

END

 

SIMPLE = T / file does conform to FITS standard

BITPIX = -32 / number of bits per data pixel

NAXIS = 3 / number of data axes

NAXIS1 = 3840 / length of data axis 1

NAXIS2 = 2160 / length of data axis 2

NAXIS3 = 3 / length of data axis 3

EXTEND = T / FITS dataset may contain extensions

COMMENT FITS (Flexible Image Transport System) format is defined in 'Astronomy

COMMENT and Astrophysics', volume 376, page 359; bibcode: 2001A&A...376..359H

BZERO = 0. / Offset data range to that of unsigned short

BSCALE = 1. / Default scaling factor

PROGRAM = 'Siril 1.4.0-beta4' / Software that created this HDU

FILENAME= 'M33_Light_007.fits'

DATE = '2025-10-07T14:22:12' / UTC date that FITS file was created

DATE-OBS= '2025-09-26T03:18:33.122000' / YYYY-MM-DDThh🇲🇲ss observation start,

IMAGETYP= 'Light Frame' / Type of image

ROWORDER= 'BOTTOM-UP' / Order of the rows in image array

EXPTIME = 120. / [s] Exposure time duration

TELESCOP= 'ALTAIR 60ED 285@F\4.8' / Telescope used to acquire this image

FOCALLEN= 282.427 / [mm] Focal length

CENTALT = 59.27759 / [deg] Altitude of telescope

CENTAZ = 256.0784 / [deg] Azimuth of telescope

XBINNING= 1 / Camera binning mode

YBINNING= 1 / Camera binning mode

XPIXSZ = 2.9 / [um] Pixel X axis size

YPIXSZ = 2.9 / [um] Pixel Y axis size

INSTRUME= 'ZWO CCD ASI585MC Pro' / Instrument name

CCD-TEMP= -4. / [degC] CCD temperature

GAIN = 252 / Sensor gain

OFFSET = 10 / Sensor gain offset

FOCPOS = 4374 / [step] Focuser position

FOCTEMP = 12.39 / [degC] Focuser temperature

STACKCNT= 24 / Stack frames

LIVETIME= 2880. / [s] Exposure time after deadtime correction

EXPSTART= 2460944.63047238 / [JD] Exposure start time (standard Julian date)

EXPEND = 2460944.66653491 / [JD] Exposure end time (standard Julian date)

OBJECT = 'M33 ' / Name of the object of interest

AIRMASS = 1.162987 / Airmass at frame center (Gueymard 1993)

SITELAT = 44.21667 / [deg] Observation site latitude

SITELONG= 3.733333 / [deg] Observation site longitude

OBJCTRA = '01 33 51.346' / [H M S] Image center Right Ascension

OBJCTDEC= '+30 43 54.340' / [D M S] Image center Declination

RA = 23.4639414522693 / [deg] Image center Right Ascension

DEC = 30.7317611951257 / [deg] Image center Declination

CTYPE1 = 'RA---TAN-SIP' / TAN (gnomic) projection + SIP distortions

CTYPE2 = 'DEC--TAN-SIP' / TAN (gnomic) projection + SIP distortions

CUNIT1 = 'deg ' / Unit of coordinates

CUNIT2 = 'deg ' / Unit of coordinates

EQUINOX = 2000. / Equatorial equinox

CRPIX1 = 1920.5 / Axis1 reference pixel

CRPIX2 = 1080.5 / Axis2 reference pixel

CRVAL1 = 23.4639414522693 / [deg] Axis1 reference value

CRVAL2 = 30.7317611951257 / [deg] Axis2 reference value

LONPOLE = 180. / Native longitude of celestial pole

CDELT1 = -0.000588343541611957 / [deg] X pixel size

CDELT2 = 0.000588298038962793 / [deg] Y pixel size

PC1_1 = -0.99980948754387 / Linear transformation matrix (1, 1)

PC1_2 = 0.0195189297161632 / Linear transformation matrix (1, 2)

PC2_1 = -0.0192970232107256 / Linear transformation matrix (2, 1)

PC2_2 = -0.999813795111472 / Linear transformation matrix (2, 2)

A_ORDER = 3 / SIP polynomial degree, axis 1, pixel-to-sky

A_0_0 = 0.

A_1_0 = 0.

A_0_1 = 0.

A_2_0 = 1.07633023399987E-07

A_1_1 = -1.03472319180805E-07

A_0_2 = 1.32930877148794E-08

A_3_0 = -6.57151224594346E-10

A_2_1 = 2.19309594585955E-12

A_1_2 = -6.159783259075E-10

A_0_3 = 7.93413632800894E-11

B_ORDER = 3 / SIP polynomial degree, axis 2, pixel-to-sky

B_0_0 = 0.

B_1_0 = 0.

B_0_1 = 0.

B_2_0 = -2.15550446034261E-08

B_1_1 = 9.83105344833731E-08

B_0_2 = -1.28414967164704E-07

B_3_0 = 6.34817643575336E-12

B_2_1 = -6.34857530992924E-10

B_1_2 = 1.09957798042837E-11

B_0_3 = -7.13488957249123E-10

AP_ORDER= 3 / SIP polynomial degree, axis 1, sky-to-pixel

AP_0_0 = 0.0010251321176434

AP_1_0 = -8.76095863777682E-06

AP_0_1 = -2.24111701317955E-07

AP_2_0 = -1.09126412217438E-07

AP_1_1 = 1.04476756931874E-07

AP_0_2 = -1.44075117066647E-08

AP_3_0 = 6.64463016878538E-10

AP_2_1 = -2.27804775793203E-12

AP_1_2 = 6.24575281634439E-10

AP_0_3 = -7.94670122482519E-11

BP_ORDER= 3 / SIP polynomial degree, axis 2, sky-to-pixel

BP_0_0 = -8.86207801563109E-05

BP_1_0 = -2.42201345358436E-07

BP_0_1 = -5.93827281658577E-06

BP_2_0 = 2.17884611100473E-08

BP_1_1 = -9.93412857448403E-08

BP_0_2 = 1.28982123758204E-07

BP_3_0 = -6.37600494261096E-12

BP_2_1 = 6.41773348315693E-10

BP_1_2 = -1.05777688734352E-11

BP_0_3 = 7.19818562269301E-10

PLTSOLVD= T / Siril internal solver

HISTORY Background extraction (Correction: Subtraction)

HISTORY Plate Solve

HISTORY Photometric CC (algorithm: PCC)

HISTORY Photometric CC (algorithm: PCC)

HISTORY Saturation enhancement (amount=0.45)

HISTORY SCNR (type=average neutral, amount=1.00, preserve=true)

HISTORY GHS pivot: 0.000, amount: 1.54, local: 0.00 [0.00 1.00]

HISTORY GHS pivot: 0.000, amount: 2.88, local: 0.00 [0.00 1.00]

HISTORY GHS pivot: 0.000, amount: 1.76, local: 3.26 [0.00 1.00]

HISTORY GHS LINEAR BP: 0.04

HISTORY GHS pivot: 0.195, amount: 1.82, local: 0.00 [0.00 1.00]

HISTORY GHS LINEAR BP: 0.01

HISTORY GHS pivot: 0.000, amount: 1.65, local: 0.00 [0.00 0.73]

HISTORY GHS LINEAR BP: 0.01

HISTORY GHS SAT pivot: 0.233, amount: 3.70, local: 0.00 [0.00 1.00]

HISTORY GHS LINEAR BP: 0.01

HISTORY Background neutralization

FRAME = 'Light ' / Frame Type

APTDIA = 6.000E+01 / Telescope diameter (mm)

SCALE = 2.099193E+00 / arcsecs per pixel

RADECSYS= 'FK5 ' / RADECSYS

SECPIX1 = 2.0991930515E+00 / SECPIX1

SECPIX2 = 2.0991930515E+00 / SECPIX2

COMMENT Generated by INDI

WB_R = 5.500E+01 / White Balance - Red

WB_B = 7.500E+01 / White Balance - Blue

END

"Limits of Optimal Polynomial Approximants"

Binomial Probability Formula is deals with the polynomial that has two terms is known as a binomial e.g.5x + 3y, 2x2 – 5xy.Probability is the arithmetical quantify of the possibility of an event to occur. If in an examine there are n feasible ways completely and mutually exclusive and out of them in m ways in the event A occur, it is given by (m / n) if in a random sequence of n trails of an events, M are favor to the event, then ratio is (M / n).by studying in both combined as binomial probability as P(A) = m / n.The possibility of an event can be conveyed as a binomial probability if its conclusions can be wrecked down into two probability of p and q, where p and q are balancing (i.e. p + q = 1).

"Zeros of real random polynomials spanned by OPUC"

Polynomial Term Structure Models. Cheng, Tehranchi arxiv.org/abs/1404.6190 #q-fin

"A class of irreducible polynomials"

Algebra 2 students work on a collaborative graphing polynomials investigation

"A fascinating polynomial sequence arising from an electrostatics problem on the sphere"

Graphing rational functions Rational function can be defined as Ratio of two Polynomials. In Rational Function numerator and denominator values are present, denominator value of rational function cannot be zero. In other words rational function can be defined as ratio of two polynomials. For example: p2 + 5 / p + 2, as it is the ratio of two polynomials. Now we will see Graphing rational function.

Naomi Corti, Zachary Gonder, and Olivia Bell perform Gianna Riesen's "Dancer Polynomials" in NOW: Premieres at the 2025 Vail Dance Festival. Photo by Christopher Duggan.

SIMPLE = T / file does conform to FITS standard

BITPIX = -32 / number of bits per data pixel

NAXIS = 3 / number of data axes

NAXIS1 = 3691 / length of data axis 1

NAXIS2 = 1965 / length of data axis 2

NAXIS3 = 3 / length of data axis 3

EXTEND = T / FITS dataset may contain extensions

COMMENT FITS (Flexible Image Transport System) format is defined in 'Astronomy

COMMENT and Astrophysics', volume 376, page 359; bibcode: 2001A&A...376..359H

BZERO = 0. / Offset data range to that of unsigned short

BSCALE = 1. / Default scaling factor

PROGRAM = 'Siril 1.4.0-beta4' / Software that created this HDU

FILENAME= 'NGC_7635_Bubble_Light (54).fits'

DATE = '2025-10-14T18:35:45' / UTC date that FITS file was created

DATE-OBS= '2025-09-22T22:23:26.767000' / YYYY-MM-DDThh🇲🇲ss observation start,

IMAGETYP= 'Light Frame' / Type of image

ROWORDER= 'BOTTOM-UP' / Order of the rows in image array

EXPTIME = 120. / [s] Exposure time duration

TELESCOP= 'ALTAIR 60ED 285@F\4.8' / Telescope used to acquire this image

FOCALLEN= 282.461 / [mm] Focal length

CENTALT = 72.11842 / [deg] Altitude of telescope

CENTAZ = 12.91167 / [deg] Azimuth of telescope

XBINNING= 1 / Camera binning mode

YBINNING= 1 / Camera binning mode

XPIXSZ = 2.9 / [um] Pixel X axis size

YPIXSZ = 2.9 / [um] Pixel Y axis size

INSTRUME= 'ZWO CCD ASI585MC Pro' / Instrument name

CCD-TEMP= -1. / [degC] CCD temperature

GAIN = 252 / Sensor gain

OFFSET = 10 / Sensor gain offset

FOCPOS = 4509 / [step] Focuser position

FOCTEMP = 15.48 / [degC] Focuser temperature

STACKCNT= 58 / Stack frames

LIVETIME= 6960. / [s] Exposure time after deadtime correction

EXPSTART= 2460941.3897226 / [JD] Exposure start time (standard Julian date)

EXPEND = 2460944.60884277 / [JD] Exposure end time (standard Julian date)

OBJECT = 'Sh2 162 ' / Name of the object of interest

AIRMASS = 1.050686 / Airmass at frame center (Gueymard 1993)

SITELAT = 44.21667 / [deg] Observation site latitude

SITELONG= 3.733333 / [deg] Observation site longitude

OBJCTRA = '23 20 52.195' / [H M S] Image center Right Ascension

OBJCTDEC= '+61 12 28.703' / [D M S] Image center Declination

RA = 350.217477463557 / [deg] Image center Right Ascension

DEC = 61.2079730644871 / [deg] Image center Declination

CTYPE1 = 'RA---TAN-SIP' / TAN (gnomic) projection + SIP distortions

CTYPE2 = 'DEC--TAN-SIP' / TAN (gnomic) projection + SIP distortions

CUNIT1 = 'deg ' / Unit of coordinates

CUNIT2 = 'deg ' / Unit of coordinates

EQUINOX = 2000. / Equatorial equinox

CRPIX1 = 1837.5 / Axis1 reference pixel

CRPIX2 = 974.5 / Axis2 reference pixel

CRVAL1 = 350.207775036384 / [deg] Axis1 reference value

CRVAL2 = 61.2132801128552 / [deg] Axis2 reference value

LONPOLE = 180. / Native longitude of celestial pole

CDELT1 = -0.00058830773425128 / [deg] X pixel size

CDELT2 = 0.000588192338233164 / [deg] Y pixel size

PC1_1 = -0.997981989925106 / Linear transformation matrix (1, 1)

PC1_2 = 0.0634976203107346 / Linear transformation matrix (1, 2)

PC2_1 = -0.0634318661598284 / Linear transformation matrix (2, 1)

PC2_2 = -0.997986171424976 / Linear transformation matrix (2, 2)

A_ORDER = 3 / SIP polynomial degree, axis 1, pixel-to-sky

A_0_0 = 0.

A_1_0 = 0.

A_0_1 = 0.

A_2_0 = 9.41523703598515E-08

A_1_1 = -9.88207826651466E-08

A_0_2 = 2.12578539771632E-09

A_3_0 = -6.53696426575744E-10

A_2_1 = 2.1363639298717E-11

A_1_2 = -6.29268911002666E-10

A_0_3 = 3.00103557623282E-11

B_ORDER = 3 / SIP polynomial degree, axis 2, pixel-to-sky

B_0_0 = 0.

B_1_0 = 0.

B_0_1 = 0.

B_2_0 = -4.80083420188451E-09

B_1_1 = 1.02012585149506E-07

B_0_2 = -1.0931161052628E-07

B_3_0 = 1.00216505530888E-11

B_2_1 = -6.25071803267454E-10

B_1_2 = -1.03489842464797E-11

B_0_3 = -6.31199203030735E-10

AP_ORDER= 3 / SIP polynomial degree, axis 1, sky-to-pixel

AP_0_0 = 0.000926054911037176

AP_1_0 = -8.77364601015174E-06

AP_0_1 = -3.12467402361949E-07

AP_2_0 = -9.54533503297082E-08

AP_1_1 = 9.97376571236109E-08

AP_0_2 = -3.14299616055984E-09

AP_3_0 = 6.60961195922107E-10

AP_2_1 = -2.1627445732551E-11

AP_1_2 = 6.37909588719738E-10

AP_0_3 = -2.97406849747559E-11

BP_ORDER= 3 / SIP polynomial degree, axis 2, sky-to-pixel

BP_0_0 = 2.79011869830962E-05

BP_1_0 = -2.01416905107562E-07

BP_0_1 = -5.52870273384798E-06

BP_2_0 = 4.87402209434737E-09

BP_1_1 = -1.0302374653656E-07

BP_0_2 = 1.09637648175338E-07

BP_3_0 = -1.00916078458001E-11

BP_2_1 = 6.31701026778199E-10

BP_1_2 = 1.0908443807636E-11

BP_0_3 = 6.36747832531706E-10

PLTSOLVD= T / Siril internal solver

HISTORY Plate Solve

HISTORY Synthetic stars: desaturate clipped stars

HISTORY Crop (x=83, y=89, w=3691, h=1965)

HISTORY Photometric CC (algorithm: PCC)

HISTORY Cosmetic Correction

HISTORY Deconvolution

HISTORY Saturation enhancement (amount=0.39)

HISTORY GHS pivot: 0.000, amount: 4.33, local: 0.00 [0.00 1.00]

HISTORY GHS pivot: 0.000, amount: 3.50, local: 0.00 [0.00 1.00]

HISTORY GHS pivot: 0.000, amount: 2.49, local: 0.00 [0.00 1.00]

HISTORY GHS pivot: 0.000, amount: 0.66, local: 0.00 [0.00 1.00]

HISTORY GHS LINEAR BP: 0.05

HISTORY GHS pivot: 0.024, amount: 1.82, local: 0.00 [0.00 1.00]

HISTORY GHS pivot: 0.101, amount: 0.73, local: 0.00 [0.00 1.00]

HISTORY GHS LINEAR BP: 0.04

HISTORY GHS SAT pivot: 0.047, amount: 0.70, local: 2.03 [0.00 1.00]

HISTORY GHS pivot: 0.131, amount: 0.50, local: -3.22 [0.00 1.00]

FRAME = 'Light ' / Frame Type

APTDIA = 6.000E+01 / Telescope diameter (mm)

SCALE = 2.099193E+00 / arcsecs per pixel

PIERSIDE= 'WEST ' / West, looking East

RADECSYS= 'FK5 ' / RADECSYS

SECPIX1 = 2.0991930515E+00 / SECPIX1

SECPIX2 = 2.0991930515E+00 / SECPIX2

COMMENT Generated by INDI

WB_R = 5.500E+01 / White Balance - Red

WB_B = 7.500E+01 / White Balance - Blue

END

Common Core Algebra Homework I: in this course, students will explore a variety of topics within algebra including linear, exponential, quadratic, and polynomial equations and functions. Students will achieve fluency in solving linear and quadratic equations and be able to manipulate polynomials using addition, subtraction, multiplication, and factoring.

Polynomial Math Problem

 

Naomi Corti, Zachary Gonder, Olivia Bell, and KJ Takahashi perform Gianna Riesen's "Dancer Polynomials" in NOW: Premieres at the 2025 Vail Dance Festival. Photo by Christopher Duggan.

"The q^Volume Lozenge Tiling Model via Non–Hermitian Orthogonal Polynomials"

SIMPLE = T / file does conform to FITS standard

BITPIX = -32 / number of bits per data pixel

NAXIS = 3 / number of data axes

NAXIS1 = 975 / length of data axis 1

NAXIS2 = 1825 / length of data axis 2

NAXIS3 = 3 / length of data axis 3

EXTEND = T / FITS dataset may contain extensions

COMMENT FITS (Flexible Image Transport System) format is defined in 'Astronomy

COMMENT and Astrophysics', volume 376, page 359; bibcode: 2001A&A...376..359H

BZERO = 0. / Offset data range to that of unsigned short

BSCALE = 1. / Default scaling factor

MIPS-HI = 65535 / Lower visualization cutoff

MIPS-LO = 2747 / Upper visualization cutoff

PROGRAM = 'Siril 1.4.0-beta2' / Software that created this HDU

FILENAME= 'Light_NGC 6946_20.0s_IRCUT_20250623-030200.fit'

DATE = '2025-06-23T15:48:37' / UTC date that FITS file was created

DATE-OBS= '2025-06-23T08:01:35.079100' / YYYY-MM-DDThh🇲🇲ss observation start,

IMAGETYP= 'Light ' / Type of image

ROWORDER= 'BOTTOM-UP' / Order of the rows in image array

EXPTIME = 20. / [s] Exposure time duration

TELESCOP= 'S50_f1c10930' / Telescope used to acquire this image

FILTER = 'mixed ' / Active filter name

APERTURE= 5. / Aperture of the instrument

FOCALLEN= 252.101 / [mm] Focal length

XBINNING= 1 / Camera binning mode

YBINNING= 1 / Camera binning mode

XPIXSZ = 2.90000009536743 / [um] Pixel X axis size

YPIXSZ = 2.90000009536743 / [um] Pixel Y axis size

INSTRUME= 'Seestar S50' / Instrument name

CCD-TEMP= 31.375 / [degC] CCD temperature

GAIN = 80 / Sensor gain

FOCPOS = 1633 / [step] Focuser position

STACKCNT= 333 / Stack frames

LIVETIME= 6660. / [s] Exposure time after deadtime correction

EXPSTART= 2460833.75754444 / [JD] Exposure start time (standard Julian date)

EXPEND = 2460849.90136814 / [JD] Exposure end time (standard Julian date)

OBJECT = 'NGC 6946' / Name of the object of interest

SITELAT = 41.7559 / [deg] Observation site latitude

SITELONG= -88.1817 / [deg] Observation site longitude

OBJCTRA = '20 34 53.186' / [H M S] Image center Right Ascension

OBJCTDEC= '+60 11 31.597' / [D M S] Image center Declination

RA = 308.721609960154 / [deg] Image center Right Ascension

DEC = 60.1921103943879 / [deg] Image center Declination

CTYPE1 = 'RA---TAN-SIP' / TAN (gnomic) projection + SIP distortions

CTYPE2 = 'DEC--TAN-SIP' / TAN (gnomic) projection + SIP distortions

CUNIT1 = 'deg ' / Unit of coordinates

CUNIT2 = 'deg ' / Unit of coordinates

EQUINOX = 2000. / Equatorial equinox

CRPIX1 = 506.5 / Axis1 reference pixel

CRPIX2 = 908.5 / Axis2 reference pixel

CRVAL1 = 308.69708711313 / [deg] Axis1 reference value

CRVAL2 = 60.1891381950432 / [deg] Axis2 reference value

LONPOLE = 180. / Native longitude of celestial pole

CDELT1 = -0.000659039553291392 / [deg] X pixel size

CDELT2 = 0.000659143311470692 / [deg] Y pixel size

PC1_1 = 0.999999741019281 / Linear transformation matrix (1, 1)

PC1_2 = 0.000719695331693637 / Linear transformation matrix (1, 2)

PC2_1 = -0.000680607201343081 / Linear transformation matrix (2, 1)

PC2_2 = 0.999999768386892 / Linear transformation matrix (2, 2)

A_ORDER = 3 / SIP polynomial degree, axis 1, pixel-to-sky

A_0_0 = 0.

A_1_0 = 0.

A_0_1 = 0.

A_2_0 = -2.20078026115192E-07

A_1_1 = 4.20751503305443E-08

A_0_2 = -3.96459320087834E-09

A_3_0 = 6.260726853644E-11

A_2_1 = -3.90914146445322E-11

A_1_2 = 3.08551201489698E-12

A_0_3 = -1.42495994627889E-11

B_ORDER = 3 / SIP polynomial degree, axis 2, pixel-to-sky

B_0_0 = 0.

B_1_0 = 0.

B_0_1 = 0.

B_2_0 = 4.81996436323872E-08

B_1_1 = -1.65057072774823E-07

B_0_2 = -6.46182450175391E-08

B_3_0 = -2.10414610637832E-11

B_2_1 = 9.37267437397584E-11

B_1_2 = 1.64821647874306E-11

B_0_3 = -1.045817750584E-12

AP_ORDER= 3 / SIP polynomial degree, axis 1, sky-to-pixel

AP_0_0 = 6.80246104302232E-07

AP_1_0 = -1.04316185991778E-09

AP_0_1 = -3.63681749183452E-10

AP_2_0 = 2.20053318535652E-07

AP_1_1 = -4.20560967492093E-08

AP_0_2 = 3.96617483280592E-09

AP_3_0 = -6.25008803785334E-11

AP_2_1 = 3.9050876517162E-11

AP_1_2 = -3.08059525082208E-12

AP_0_3 = 1.42503066843247E-11

BP_ORDER= 3 / SIP polynomial degree, axis 2, sky-to-pixel

BP_0_0 = -6.62723544342944E-08

BP_1_0 = 1.55792551061233E-09

BP_0_1 = 1.19364648467908E-09

BP_2_0 = -4.81944168611691E-08

BP_1_1 = 1.65037375301776E-07

BP_0_2 = 6.46192511920244E-08

BP_3_0 = 2.10059817148951E-11

BP_2_1 = -9.36635627956074E-11

BP_1_2 = -1.64631554052525E-11

BP_0_3 = 1.0531069493955E-12

CREATOR = 'ZWO Seestar S50' / Capture software

PRODUCER= 'ZWO ' / Powered by ZWO

XORGSUBF= 0 / Subframe X position in binned pixels

YORGSUBF= 0 / Subframe Y position in binned pixels

EQMODE = 1 / Equatorial mode

CCDXBIN = 1 / Camera X Bin

CCDYBIN = 1 / Camera Y Bin

TOTALEXP= 20. / Total Exposure Time in seconds

BG-EXTR = 'GraXpert'

CBG-1 = 0.0017025918

CBG-2 = 0.0017025918

CBG-3 = 0.0017025918

INTP-OPT= 'RBF '

HIERARCH SMOOTHING = 0.5

HIERARCH CORR-TYPE = 'Subtraction'

HIERARCH SAMPLE-SIZE = 15

HIERARCH RBF-KERNEL = 'thin_plate'

HIERARCH SPLINE-ORDER = 3

BG-PTS = '[[32, 2, 1], [82, 17, 1], [147, 17, 1], [212, 17, 1], [277, 17, &'

CONTINUE '1], [357, 2, 1], [407, 17, 1], [472, 17, 1], [537, 17, 1], [632, &'

CONTINUE '17, 1], [682, 2, 1], [747, 2, 1], [797, 17, 1], [862, 17, 1], &'

CONTINUE '[942, 2, 1], [17, 82, 1], [82, 82, 1], [147, 82, 1], [212, 52, 1], &'

CONTINUE '[277, 52, 1], [342, 82, 1], [407, 52, 1], [472, 52, 1], [537, 82, &'

CONTINUE '1], [617, 67, 1], [697, 82, 1], [732, 82, 1], [797, 82, 1], [892, &'

CONTINUE '82, 1], [927, 82, 1], [47, 147, 1], [82, 147, 1], [147, 117, 1], &'

CONTINUE '[212, 147, 1], [277, 147, 1], [342, 147, 1], [407, 147, 1], [472, &'

CONTINUE '147, 1], [537, 147, 1], [617, 132, 1], [697, 147, 1], [747, 132, &'

CONTINUE '1], [827, 117, 1], [877, 132, 1], [942, 132, 1], [17, 212, 1], &'

CONTINUE '[82, 182, 1], [147, 182, 1], [242, 212, 1], [277, 212, 1], [342, &'

CONTINUE '212, 1], [407, 182, 1], [472, 212, 1], [567, 212, 1], [632, 212, &'

CONTINUE '1], [697, 212, 1], [762, 182, 1], [797, 212, 1], [862, 182, 1], &'

CONTINUE '[957, 182, 1], [17, 277, 1], [82, 277, 1], [147, 247, 1], [212, &'

CONTINUE '277, 1], [277, 277, 1], [342, 277, 1], [407, 277, 1], [502, 247, &'

CONTINUE '1], [537, 277, 1], [632, 277, 1], [667, 277, 1], [762, 277, 1], &'

CONTINUE '[827, 277, 1], [862, 277, 1], [957, 277, 1], [17, 342, 1], [82, &'

CONTINUE '342, 1], [147, 342, 1], [212, 342, 1], [277, 342, 1], [372, 342, &'

CONTINUE '1], [407, 342, 1], [472, 342, 1], [537, 342, 1], [632, 342, 1], &'

CONTINUE '[697, 342, 1], [762, 342, 1], [827, 342, 1], [862, 342, 1], [957, &'

CONTINUE '342, 1], [17, 407, 1], [82, 407, 1], [147, 407, 1], [212, 407, 1], &'

CONTINUE '[277, 407, 1], [342, 407, 1], [407, 407, 1], [472, 407, 1], [537, &'

CONTINUE '377, 1], [617, 392, 1], [697, 377, 1], [762, 407, 1], [827, 407, &'

CONTINUE '1], [877, 392, 1], [927, 377, 1], [17, 472, 1], [82, 442, 1], &'

CONTINUE '[147, 442, 1], [212, 472, 1], [277, 442, 1], [342, 442, 1], [407, &'

CONTINUE '472, 1], [472, 472, 1], [567, 442, 1], [617, 457, 1], [697, 442, &'

CONTINUE '1], [762, 442, 1], [827, 442, 1], [862, 442, 1], [927, 442, 1], &'

CONTINUE '[17, 537, 1], [82, 537, 1], [147, 507, 1], [212, 507, 1], [292, &'

CONTINUE '522, 1], [342, 537, 1], [407, 537, 1], [472, 537, 1], [537, 537, &'

CONTINUE '1], [602, 537, 1], [697, 537, 1], [762, 507, 1], [827, 507, 1], &'

CONTINUE '[877, 522, 1], [942, 522, 1], [17, 572, 1], [82, 572, 1], [147, &'

CONTINUE '572, 1], [212, 572, 1], [277, 572, 1], [342, 572, 1], [407, 602, &'

CONTINUE '1], [472, 572, 1], [567, 602, 1], [602, 602, 1], [697, 572, 1], &'

CONTINUE '[762, 602, 1], [827, 572, 1], [892, 572, 1], [927, 602, 1], [17, &'

CONTINUE '637, 1], [82, 667, 1], [147, 667, 1], [212, 667, 1], [277, 637, &'

CONTINUE '1], [342, 667, 1], [407, 637, 1], [472, 637, 1], [537, 637, 1], &'

CONTINUE '[602, 667, 1], [697, 637, 1], [762, 667, 1], [797, 667, 1], [892, &'

CONTINUE '637, 1], [957, 637, 1], [17, 702, 1], [82, 702, 1], [147, 702, 1], &'

CONTINUE '[212, 732, 1], [277, 702, 1], [342, 702, 1], [407, 732, 1], [472, &'

CONTINUE '732, 1], [537, 702, 1], [632, 732, 1], [667, 702, 1], [747, 717, &'

CONTINUE '1], [797, 702, 1], [862, 702, 1], [927, 702, 1], [17, 767, 1], &'

CONTINUE '[82, 767, 1], [147, 767, 1], [212, 767, 1], [307, 767, 1], [342, &'

CONTINUE '767, 1], [407, 767, 1], [472, 767, 1], [567, 797, 1], [632, 767, &'

CONTINUE '1], [697, 797, 1], [762, 767, 1], [827, 797, 1], [862, 797, 1], &'

CONTINUE '[927, 767, 1], [17, 832, 1], [82, 832, 1], [147, 862, 1], [227, &'

CONTINUE '847, 1], [277, 832, 1], [342, 832, 1], [407, 832, 1], [567, 832, &'

CONTINUE '1], [632, 832, 1], [682, 847, 1], [762, 862, 1], [812, 847, 1], &'

CONTINUE '[862, 832, 1], [927, 832, 1], [17, 927, 1], [82, 897, 1], [147, &'

CONTINUE '897, 1], [212, 927, 1], [277, 897, 1], [342, 897, 1], [407, 927, &'

CONTINUE '1], [472, 927, 1], [567, 927, 1], [632, 897, 1], [667, 897, 1], &'

CONTINUE '[732, 897, 1], [797, 897, 1], [892, 897, 1], [927, 897, 1], [17, &'

CONTINUE '962, 1], [82, 962, 1], [147, 992, 1], [212, 962, 1], [277, 992, &'

CONTINUE '1], [342, 992, 1], [407, 962, 1], [502, 962, 1], [537, 962, 1], &'

CONTINUE '[617, 977, 1], [667, 962, 1], [732, 992, 1], [812, 977, 1], [892, &'

CONTINUE '962, 1], [957, 962, 1], [17, 1027, 1], [112, 1027, 1], [177, 1027, &'

CONTINUE '1], [212, 1027, 1], [277, 1057, 1], [342, 1027, 1], [407, 1057, &'

CONTINUE '1], [487, 1042, 1], [567, 1027, 1], [602, 1057, 1], [697, 1027, &'

CONTINUE '1], [762, 1027, 1], [812, 1042, 1], [877, 1042, 1], [957, 1027, &'

CONTINUE '1], [17, 1092, 1], [82, 1092, 1], [147, 1092, 1], [212, 1122, 1], &'

CONTINUE '[277, 1092, 1], [342, 1122, 1], [407, 1092, 1], [502, 1092, 1], &'

CONTINUE '[537, 1092, 1], [602, 1122, 1], [697, 1092, 1], [732, 1092, 1], &'

CONTINUE '[797, 1092, 1], [892, 1122, 1], [927, 1092, 1], [17, 1157, 1], &'

CONTINUE '[82, 1187, 1], [147, 1157, 1], [212, 1157, 1], [277, 1157, 1], &'

CONTINUE '[342, 1187, 1], [407, 1187, 1], [472, 1187, 1], [537, 1157, 1], &'

CONTINUE '[632, 1157, 1], [697, 1157, 1], [732, 1157, 1], [827, 1157, 1], &'

CONTINUE '[892, 1157, 1], [957, 1157, 1], [47, 1222, 1], [82, 1222, 1], &'

CONTINUE '[147, 1222, 1], [212, 1252, 1], [277, 1252, 1], [342, 1222, 1], &'

CONTINUE '[407, 1222, 1], [472, 1222, 1], [567, 1222, 1], [617, 1237, 1], &'

CONTINUE '[697, 1222, 1], [732, 1222, 1], [797, 1222, 1], [862, 1222, 1], &'

CONTINUE '[927, 1222, 1], [17, 1317, 1], [82, 1287, 1], [147, 1287, 1], &'

CONTINUE '[227, 1302, 1], [277, 1287, 1], [342, 1287, 1], [422, 1302, 1], &'

CONTINUE '[487, 1302, 1], [567, 1287, 1], [617, 1302, 1], [697, 1287, 1], &'

CONTINUE '[747, 1302, 1], [827, 1317, 1], [892, 1287, 1], [927, 1317, 1], &'

CONTINUE '[17, 1352, 1], [82, 1352, 1], [147, 1352, 1], [212, 1352, 1], &'

CONTINUE '[277, 1352, 1], [342, 1352, 1], [407, 1382, 1], [472, 1382, 1], &'

CONTINUE '[697, 1352, 1], [732, 1352, 1], [827, 1352, 1], [892, 1352, 1], &'

CONTINUE '[927, 1352, 1], [17, 1447, 1], [82, 1447, 1], [147, 1417, 1], &'

CONTINUE '[212, 1417, 1], [292, 1432, 1], [342, 1447, 1], [407, 1447, 1], &'

CONTINUE '[682, 1432, 1], [762, 1447, 1], [812, 1432, 1], [892, 1447, 1], &'

CONTINUE '[927, 1417, 1], [17, 1512, 1], [82, 1512, 1], [147, 1512, 1], &'

CONTINUE '[212, 1482, 1], [277, 1482, 1], [342, 1512, 1], [407, 1512, 1], &'

CONTINUE '[762, 1512, 1], [827, 1482, 1], [892, 1512, 1], [927, 1482, 1], &'

CONTINUE '[17, 1577, 1], [82, 1577, 1], [147, 1547, 1], [212, 1547, 1], &'

CONTINUE '[277, 1547, 1], [342, 1547, 1], [407, 1577, 1], [667, 1577, 1], &'

CONTINUE '[732, 1577, 1], [827, 1547, 1], [892, 1577, 1], [927, 1547, 1], &'

CONTINUE '[47, 1642, 1], [82, 1642, 1], [147, 1642, 1], [212, 1642, 1], &'

CONTINUE '[277, 1612, 1], [342, 1642, 1], [407, 1642, 1], [472, 1642, 1], &'

CONTINUE '[552, 1627, 1], [602, 1642, 1], [697, 1642, 1], [762, 1642, 1], &'

CONTINUE '[797, 1642, 1], [877, 1627, 1], [927, 1642, 1], [32, 1692, 1], &'

CONTINUE '[82, 1707, 1], [147, 1677, 1], [212, 1707, 1], [277, 1707, 1], &'

CONTINUE '[342, 1707, 1], [407, 1707, 1], [472, 1707, 1], [537, 1707, 1], &'

CONTINUE '[632, 1707, 1], [667, 1707, 1], [747, 1692, 1], [827, 1707, 1], &'

CONTINUE '[862, 1707, 1], [927, 1707, 1], [32, 1757, 1], [82, 1742, 1], &'

CONTINUE '[147, 1742, 1], [212, 1772, 1], [277, 1772, 1], [342, 1772, 1], &'

CONTINUE '[407, 1772, 1], [472, 1772, 1], [552, 1757, 1], [632, 1742, 1], &'

CONTINUE '[697, 1772, 1], [747, 1757, 1], [827, 1772, 1], [892, 1742, 1], &'

CONTINUE '[957, 1772, 1], [32, 1822, 1], [97, 1822, 1], [162, 1822, 1], &'

CONTINUE '[227, 1822, 1], [292, 1822, 1], [357, 1822, 1], [422, 1822, 1], &'

CONTINUE '[487, 1822, 1], [552, 1822, 1], [632, 1807, 1], [682, 1822, 1], &'

CONTINUE '[732, 1807, 1], [812, 1822, 1], [862, 1807, 1], [927, 1807, 1], &'

CONTINUE '[468, 1428, 1], [567, 1382, 1], [632, 1382, 1], [472, 1447, 1], &'

CONTINUE '[537, 1447, 1], [632, 1447, 1], [472, 1512, 1], [567, 1512, 1], &'

CONTINUE '[602, 1542, 1], [697, 1542, 1], [472, 1607, 1], [617, 1592, 1], &'

CONTINUE '[827, 1607, 1], [927, 1607, 1], [537, 1672, 1], [797, 1282, 1], &'

CONTINUE '[942, 1267, 1]]'

END

 

SIMPLE = T / file does conform to FITS standard

BITPIX = -32 / number of bits per data pixel

NAXIS = 3 / number of data axes

NAXIS1 = 4069 / length of data axis 1

NAXIS2 = 2855 / length of data axis 2

NAXIS3 = 3 / length of data axis 3

EXTEND = T / FITS dataset may contain extensions

COMMENT FITS (Flexible Image Transport System) format is defined in 'Astronomy

COMMENT and Astrophysics', volume 376, page 359; bibcode: 2001A&A...376..359H

BZERO = 0. / Offset data range to that of unsigned short

BSCALE = 1. / Default scaling factor

MIPS-HI = 65535 / Lower visualization cutoff

PROGRAM = 'Siril 1.4.0-beta2' / Software that created this HDU

DATE = '2025-06-22T14:23:30' / UTC date that FITS file was created

DATE-OBS= '2025-06-21T23:10:57.924000' / YYYY-MM-DDThh🇲🇲ss observation start,

IMAGETYP= 'Light Frame' / Type of image

ROWORDER= 'BOTTOM-UP' / Order of the rows in image array

EXPTIME = 120. / [s] Exposure time duration

TELESCOP= 'Slywatcher Evolux 62 ED 400@F\6.5' / Telescope used to acquire this i

OBSERVER= 'stef leblond' / Observer name

FOCALLEN= 362.795 / [mm] Focal length

CENTALT = 41.03215 / [deg] Altitude of telescope

CENTAZ = 298.8218 / [deg] Azimuth of telescope

XBINNING= 1 / Camera binning mode

YBINNING= 1 / Camera binning mode

XPIXSZ = 4.8 / [um] Pixel X axis size

YPIXSZ = 4.8 / [um] Pixel Y axis size

INSTRUME= 'QHY CCD QHY168C-f3c2994' / Instrument name

CCD-TEMP= -10.1 / [degC] CCD temperature

GAIN = 10 / Sensor gain

OFFSET = 0 / Sensor gain offset

STACKCNT= 41 / Stack frames

LIVETIME= 4920. / [s] Exposure time after deadtime correction

EXPSTART= 2460848.42475546 / [JD] Exposure start time (standard Julian date)

EXPEND = 2460848.49433571 / [JD] Exposure end time (standard Julian date)

OBJECT = 'M 106 ' / Name of the object of interest

AIRMASS = 1.521933 / Airmass at frame center (Gueymard 1993)

SITELAT = 47.84508 / [deg] Observation site latitude

SITELONG= 2.037494 / [deg] Observation site longitude

OBJCTRA = '12 18 20.804' / [H M S] Image center Right Ascension

OBJCTDEC= '+47 13 39.860' / [D M S] Image center Declination

RA = 184.586684271842 / [deg] Image center Right Ascension

DEC = 47.227738929512 / [deg] Image center Declination

CTYPE1 = 'RA---TAN-SIP' / TAN (gnomic) projection + SIP distortions

CTYPE2 = 'DEC--TAN-SIP' / TAN (gnomic) projection + SIP distortions

CUNIT1 = 'deg ' / Unit of coordinates

CUNIT2 = 'deg ' / Unit of coordinates

EQUINOX = 2000. / Equatorial equinox

CRPIX1 = 2035. / Axis1 reference pixel

CRPIX2 = 1428. / Axis2 reference pixel

CRVAL1 = 184.586684271842 / [deg] Axis1 reference value

CRVAL2 = 47.227738929512 / [deg] Axis2 reference value

LONPOLE = 180. / Native longitude of celestial pole

CDELT1 = -0.00075814283878641 / [deg] X pixel size

CDELT2 = 0.000757973375110565 / [deg] Y pixel size

PC1_1 = 0.688416122428528 / Linear transformation matrix (1, 1)

PC1_2 = 0.725315960378972 / Linear transformation matrix (1, 2)

PC2_1 = -0.725462871484203 / Linear transformation matrix (2, 1)

PC2_2 = 0.68826130364702 / Linear transformation matrix (2, 2)

A_ORDER = 3 / SIP polynomial degree, axis 1, pixel-to-sky

A_0_0 = 0.

A_1_0 = 0.

A_0_1 = 0.

A_2_0 = -1.80513063581717E-07

A_1_1 = 3.90606640477013E-08

A_0_2 = -1.41072940002844E-08

A_3_0 = -1.00512868356684E-09

A_2_1 = -7.36969071094355E-12

A_1_2 = -9.74715416043885E-10

A_0_3 = -9.96342817458394E-12

B_ORDER = 3 / SIP polynomial degree, axis 2, pixel-to-sky

B_0_0 = 0.

B_1_0 = 0.

B_0_1 = 0.

B_2_0 = 3.15770583762196E-08

B_1_1 = -1.65776458042252E-07

B_0_2 = 2.99296221804749E-08

B_3_0 = -9.63346375584129E-12

B_2_1 = -9.9345264030188E-10

B_1_2 = -4.09074369028238E-12

B_0_3 = -1.00491747044766E-09

AP_ORDER= 3 / SIP polynomial degree, axis 1, sky-to-pixel

AP_0_0 = 0.000342976989602593

AP_1_0 = -3.03915529656917E-05

AP_0_1 = -6.97487508860984E-07

AP_2_0 = 1.83873453860281E-07

AP_1_1 = -4.00438158597948E-08

AP_0_2 = 1.28197669475383E-08

AP_3_0 = 1.02599532079971E-09

AP_2_1 = 7.86349727245297E-12

AP_1_2 = 9.96797443181319E-10

AP_0_3 = 1.03509168586489E-11

BP_ORDER= 3 / SIP polynomial degree, axis 2, sky-to-pixel

BP_0_0 = 0.000654397691429978

BP_1_0 = -6.73749877839602E-07

BP_0_1 = -2.19430751297045E-05

BP_2_0 = -3.22016771939506E-08

BP_1_1 = 1.67258924527494E-07

BP_0_2 = -3.07273365198915E-08

BP_3_0 = 9.95028939250149E-12

BP_2_1 = 1.01415110283027E-09

BP_1_2 = 4.59172483735182E-12

BP_0_3 = 1.02126171384081E-09

PLTSOLVD= T / Siril internal solver

HISTORY Recadrage (x=633, y=207, w=4069, h=2855)

HISTORY Extraction gradient GraXpert, lissage 0.500

HISTORY Extraction du gradient (Correction : Subtraction)

HISTORY R solution astrom trique

HISTORY Photom trie CC (algorithme : PCC)

HISTORY Transformation asinh : (stretch= 88.2, bp=0.00200)

HISTORY Transf. histogramme (mid=0.083, lo=0.016, hi=1.000)

HISTORY SCNR (type=neutre moyen, qt =1.00, pr serve=true)

HISTORY D bruitage NL-Bayes (mod=0.800, SOS activ (iters=3, rho=0.200), CC

HISTORY Filtre m dian (filtre=3x3 px)

FRAME = 'Light ' / Frame Type

APTDIA = 6.200E+01 / Telescope diameter (mm)

SCALE = 2.750667E+00 / arcsecs per pixel

PIERSIDE= 'EAST ' / East, looking West

RADECSYS= 'FK5 ' / RADECSYS

SECPIX1 = 2.7506667760E+00 / SECPIX1

SECPIX2 = 2.7506667760E+00 / SECPIX2

COMMENT Generated by INDI

END

 

"Rational and polynomial density on compact real manifolds"

"The q^Volume Lozenge Tiling Model via Non–Hermitian Orthogonal Polynomials"

Use 3 points to fit a 1st order polynomial for instant georef in opticks

Algebra feels that many college students fall in love with love. Are you suffering with algebraic chapters together with matrices, polynomials and secondary factors of view? As a cease end result, are you stagnant your thoughts via the use of strain on studying? If you do now not, you're genuinely within the right place. Take my online algebra homework

sites.google.com/view/take-myonline-algebra-homework/home

Generally educators joke with their Students that in case you need your heads to have a thrilling ride go tackle Algebra mathematical. The perhaps reason they say as much is since, in such a case that you are lost in any troublesome you can't get yourself out if you don't get fitting Algebra Help. Variable based numerical homework help takes after a guide to the Students who can't manage the subject in isolation and face a lot of issues with it. School polynomial math is once in a while a great deal to manage and Online Algebra tutor gives the understudies second and convincing help.

studenteducare4u.blogspot.com/2021/08/online-algebra-tuto...

"Polynomial maps of C2 with small topological degree"

Accounting and the Business Environment

In this discussion, you are assigned two rational expressions with which you will then do a variety of math work. Remember that each polynomial must be fully factored and that you can only cancel factors; you cannot cancel terms. Read the following...

 

www.uopguide.com/download/mat-222-week-1-dqs/

1 2 ••• 27 28 30 32 33 ••• 38 39