Кометы наблюдаемые в феврале 2017 года после ~13.0m. ..

Актуальная информация для наблюдения комет

Модераторы: Ulmo, Булдаков Сергей

Кометы наблюдаемые в феврале 2017 года после ~13.0m. ..

Непрочитанное сообщение Silvester » 01 фев 2017 12:56

Кометы в феврале 2017 года .:
Приведённый перечень комет, блеск которых превышает уровень в ~13.0m., в той или иной мере доступных для наблюдения в разные телескопы, на разных широтах, в феврале 2017 года ..

30P/Reinmuth 1 2017 02 19.46 Q11
30P/Reinmuth 1 2017 02 15.82 17.3 N 585
30P/Reinmuth 1 2017 02 13.80 17.0 N C23
30P/Reinmuth 1 2017 02 06.80 18.4 N Z78

33P/Daniel 2017 02 18.08 ..C: m1 = 16.0, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x150).
33P/Daniel 2017 02 04.71 18.1 T Q11
33P/Daniel 2017 02 03.11 18.4 N J22
33P/Daniel 2017 02 03.11 ..C: m1 = 15.5, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x150).

43P/Wolf-Harrington 2017 02 19.19 ..C: m1 = 12.7, Dia. = 0.6', DC = .., 0.50-m. L, f3 (x150).
43P/Wolf-Harrington 2017 02 18.78 15.2 T Q11
43P/Wolf-Harrington 2017 02 17.45 16.4 N H47
43P/Wolf-Harrington 2017 02 16.46 16.7 N H47
43P/Wolf-Harrington 2017 02 15.62 16.5 T T05
43P/Wolf-Harrington 2017 02 13.27 16.6 N W96
43P/Wolf-Harrington 2017 02 07.19 16.7 N I45
43P/Wolf-Harrington 2017 02 06.73 14.8 T 349
43P/Wolf-Harrington 2017 02 05.74 ..C: m1 = 14.5, Dia. = 0.6', DC = .., хвост = 13.2', pa = 300°, 0.406-m. L, f3 (x180).
43P/Wolf-Harrington 2017 02 05.31 16.6 N W96
43P/Wolf-Harrington 2017 02 01.28 ..C: m1 = 12.8, Dia. = 0.6', DC = .., 0.50-m. L, f3 (x120).

44P/Reinmuth 2 2017 02 02.38 19.5 T G96

50P/Arend 2017 02 18.96 19.4 N C23
50P/Arend 2017 02 16.10 118

56P/Slaughter-Burnham 2017 02 18.02 17.9 N I72
56P/Slaughter-Burnham 2017 02 17.33 18.2 T T05
56P/Slaughter-Burnham 2017 02 15.58 17.2 T Q11
56P/Slaughter-Burnham 2017 02 14.02 ..C: m1 = 16.3, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x120).
56P/Slaughter-Burnham 2017 02 13.81 18.3 N Z78
56P/Slaughter-Burnham 2017 02 11.84 16.4 N I81
56P/Slaughter-Burnham 2017 02 05.31 17.5 T T05
56P/Slaughter-Burnham 2017 02 01.17 16.9 T 703

65P/Gunn 2017 02 13.31 17.0 N W96
65P/Gunn 2017 02 10.34 16.6 N W97
65P/Gunn 2017 02 06.31 16.8 N W96
65P/Gunn 2017 02 04.27 17.2 N G40
65P/Gunn 2017 02 03.32 17.0 N W97

71P/Clark 2017 02 16.49 16.9 N H47
71P/Clark 2017 02 12.27 17.8 N W96
71P/Clark 2017 02 10.73 ..C: m1 = 16.9, Dia. = 0.2', DC = .., 0.406-m. L, f3 (x300).
71P/Clark 2017 02 06.33 17.4 N W96
71P/Clark 2017 02 03.29 C51

74P/Smirnova-Chernykh 2017 02 19.88 17.2 N 958
74P/Smirnova-Chernykh 2017 02 18.95 17.1 N A77
74P/Smirnova-Chernykh 2017 02 17.39 16.9 T T05
74P/Smirnova-Chernykh 2017 02 15.89 ..C: m1 = 16.1, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x120).
74P/Smirnova-Chernykh 2017 02 15.79 15.9 N K73
74P/Smirnova-Chernykh 2017 02 14.74 16.6 N C36
74P/Smirnova-Chernykh 2017 02 14.74 UT: m1 = 16.8, Dia. = 0.33', DC = 8, 0.254-m. L, f4.7 + CCD
74P/Smirnova-Chernykh 2017 02 08.88 16.5 N B74
74P/Smirnova-Chernykh 2017 02 05.37 16.9 T T05
74P/Smirnova-Chernykh 2017 02 03.87 17.0 T J43
74P/Smirnova-Chernykh 2017 02 01.17 ..C: m1 = 15.9, Dia. = 0.33', DC = .., 0.25-m. L, f3 (x300).

81P/Wild 2 2017 02 06.38 16.8 N W96

94P/Russell 4 2017 02 06.25 18.7 N G40

117P/Helin-Roman-Alu 1 2017 02 12.87 17.8 N C23

118P/Shoemaker-Levy 4 2017 02 05.15 18.5 T 215

128P/Shoemaker-Holt 1 2017 02 15.85 ..C: m1 = 18.0, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x200).
128P/Shoemaker-Holt 1 2017 02 08.70 18.8 N C97
128P/Shoemaker-Holt 1 2017 02 01.10 18.0 T 703

143P/Kowal-Mrkos 2017 02 18.89 20.6 N A77

144P/Kushida 2017 02 20.21 17.4 N A77
144P/Kushida 2017 02 17.49 15.8 N H47
144P/Kushida 2017 02 06.75 17.5 T Q11
144P/Kushida 2017 02 05.74 ..C: m1 = 14.3, Dia. = 1.7', DC = .., 0.406-m. L, f3 (x180).
144P/Kushida 2017 02 02.63 19.6 T F51

158P/Kowal-LINEAR 2017 02 16.58 20.6 T F51
158P/Kowal-LINEAR 2017 02 05.14 19.8 T J43

174P/Echeclus 2017 02 20.81 18.4 N A77
174P/Echeclus 2017 02 16.85 ..C: m1 = 17.7, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x150).
174P/Echeclus 2017 02 15.81 18.3 N C10
174P/Echeclus 2017 02 13.87 ..C: m1 = 18.0, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x150).
174P/Echeclus 2017 02 07.82 18.6 N A77

183P/Korlevic-Juric 2017 02 17.01 ..C: m1 = 19.7, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x150).
183P/Korlevic-Juric 2017 02 06.01 19.4 N I81
183P/Korlevic-Juric 2017 02 01.45 20.8 T F51

186P/Garradd 2017 02 03.59 21.0 T F51

188P/LINEAR-Mueller 2017 02 13.79 17.2 N C23

190P/Mueller 2017 02 02.29 20.2 T G96

202P/Scotti 2017 02 04.40 21.1 T G96

226P/Pigott-LINEAR-Kowalski 2017 02 16.94 I72
226P/Pigott-LINEAR-Kowalski 2017 02 15.88 ..C: m1 = 17.3, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x120).
226P/Pigott-LINEAR-Kowalski 2017 02 04.28 20.3 T F51

234P/LINEAR 2017 02 16.51 20.0 T F51
234P/LINEAR 2017 02 07.20 20.1 T G40
234P/LINEAR 2017 02 04.35 19.9 T G96

314P/Montani 2017 02 18.01 ..C: m1 = 16.0, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x150).
314P/Montani 2017 02 16.17 18.5 T H15
314P/Montani 2017 02 13.91 18.0 N C23
314P/Montani 2017 02 13.69 18.8 T D29
314P/Montani 2017 02 04.55 18.1 T T05

315P/LONEOS 2017 02 19.59 16.2 T T08
315P/LONEOS 2017 02 19.14 16.5 N A77
315P/LONEOS 2017 02 18.01 16.8 N 958
315P/LONEOS 2017 02 17.24 ..C: m1 = 14.2, Dia. = 0.6', DC = .., хвост = 1.8', pa = 275°, 0.25-m. L, f3 (x300).
315P/LONEOS 2017 02 15.61 16.3 T T08
315P/LONEOS 2017 02 09.52 16.4 T T05
315P/LONEOS 2017 02 06.27 16.4 N W96
315P/LONEOS 2017 02 02.11 16.3 N C23

330P/Catalina 2017 02 15.09 18.9 T W88
330P/Catalina 2017 02 03.68 18.6 T Q11

334P/NEAT 2017 02 18.77 18.4 T D29
334P/NEAT 2017 02 17.58 19.3 T F51
334P/NEAT 2017 02 01.64 19.9 T F51

346P/Catalina 2017 02 15.77 18.6 N 130

C/2006 S3 (LONEOS) 2017 02 03.66 18.8 T Q11

P/2010 EY90 (Lemmon) 2017 02 05.14 215

C/2010 U3 (Boattini) 2017 02 20.08 18.3 T H45
C/2010 U3 (Boattini) 2017 02 16.94 I72
C/2010 U3 (Boattini) 2017 02 08.70 18.9 N C97

C/2011 KP36 (Spacewatch) 2017 02 16.09 ..C: m1 = 14.8, Dia. = 0.9', DC = .., 0.431-m. L, f4 (x180).
C/2011 KP36 (Spacewatch) 2017 02 14.77 17.4 N 160
C/2011 KP36 (Spacewatch) 2017 02 13.78 16.0 N C23

C/2013 US10 (Catalina) 2017 02 20.05 18.5 T H45
C/2013 US10 (Catalina) 2017 02 18.08 18.5 N W25
C/2013 US10 (Catalina) 2017 02 16.06 18.4 N H45
C/2013 US10 (Catalina) 2017 02 14.28 17.9 T T05
C/2013 US10 (Catalina) 2017 02 14.01 ..C: m1 = 14.8, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x150).
C/2013 US10 (Catalina) 2017 02 01.81 C43

C/2013 V4 (Catalina) 2017 02 16.98 ..C: m1 = 14.5, Dia. = 0.4', DC = .., 0.50-m. L, f3 (x150).
C/2013 V4 (Catalina) 2017 02 06.04 17.3 N I81
C/2013 V4 (Catalina) 2017 02 04.10 17.4 N J22
C/2013 V4 (Catalina) 2017 02 04.10 ..C: m1 = 15.3, Dia. = 0.4', DC = .., 0.50-m. L, f3 (x150).

C/2013 X1 (PANSTARRS) 2017 02 09.65 17.9 T F5
C/2013 X1 (PANSTARRS) 2017 02 08.73 ..C: m1 = 16.9, Dia. = 0.2', DC = .., 0.406-m. L, f3 (x180).

C/2014 B1 (Schwartz) 2017 02 19.00 17.2 N A77
C/2014 B1 (Schwartz) 2017 02 17.89 17.0 N C27
C/2014 B1 (Schwartz) 2017 02 16.14 15.7 T H15
C/2014 B1 (Schwartz) 2017 02 15.00 17.4 N 958
C/2014 B1 (Schwartz) 2017 02 06.65 15.4 T 349
C/2014 B1 (Schwartz) 2017 02 06.64 349
C/2014 B1 (Schwartz) 2017 02 04.62 Q11

C/2014 OE4 (PANSTARRS) 2017 02 06.81 16.0 T Q11
C/2014 OE4 (PANSTARRS) 2017 02 05.20 16.0 T 215

C/2014 R3 (PANSTARRS) 2017 02 10.79 17.2 T D29
C/2014 R3 (PANSTARRS) 2017 02 02.61 17.6 T T05

C/2014 S2 (PANSTARRS) 2017 02 04.64 20.0 N Q68

C/2014 W2 (PANSTARRS) 2017 02 15.80 Q11

P/2014 W4 (PANSTARRS) 2017 02 18.38 20.7 T F51

C/2015 D3 (PANSTARRS) 2017 02 16.05 19.7 N 585
C/2015 D3 (PANSTARRS) 2017 02 06.43 18.8 T G96

C/2015 LC2 (PANSTARRS) 2017 02 01.52 17.3 T 703

P/2015 TP200 (LINEAR) 2017 02 18.70 Q11
P/2015 TP200 (LINEAR) 2017 02 14.78 17.1 N C36
P/2015 TP200 (LINEAR) 2017 02 14.75 UT: m1 = 17.0, Dia. = 0.59', DC = 8, 0.254-m. L, f4.7 + CCD
P/2015 TP200 (LINEAR) 2017 02 13.90 ..C: m1 = 16.0, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x120).
P/2015 TP200 (LINEAR) 2017 02 02.89 17.0 N J22
P/2015 TP200 (LINEAR) 2017 02 02.89 ..C: m1 = 16.0, Dia. = 0.3', DC = .., 0.50-m. L, f3 (x120).

C/2015 V1 (PANSTARRS) 2017 02 19.03 17.0 T H45
C/2015 V1 (PANSTARRS) 2017 02 16.95 16.8 N I72
C/2015 V1 (PANSTARRS) 2017 02 16.04 16.9 T H45
C/2015 V1 (PANSTARRS) 2017 02 15.98 ..C: m1 = 15.8, Dia. = 0.3', DC = .., 0.50-m. L, f3 (x120).
C/2015 V1 (PANSTARRS) 2017 02 14.24 16.8 T T05
C/2015 V1 (PANSTARRS) 2017 02 10.26 16.9 T T05
C/2015 V1 (PANSTARRS) 2017 02 06.24 17.0 T T05
C/2015 V1 (PANSTARRS) 2017 02 04.03 17.1 T H45
C/2015 V1 (PANSTARRS) 2017 02 01.03 17.0 T H45

C/2015 VL62 (Lemmon-Yeung-PANSTARRS) 2017 02 15.76 16.3 N 585
C/2015 VL62 (Lemmon-Yeung-PANSTARRS) 2017 02 13.77 16.1 N C23
C/2015 VL62 (Lemmon-Yeung-PANSTARRS) 2017 02 11.83 16.3 N I81

C/2015 XY1 (Lemmon) 2017 02 17.40 18.2 T T05
C/2015 XY1 (Lemmon) 2017 02 13.88 18.1 N C23
C/2015 XY1 (Lemmon) 2017 02 05.39 18.2 T T05

C/2015 X5 (PANSTARRS) 2017 02 01.24 19.6 T 703

C/2015 X7 (ATLAS) 2017 02 18.97 17.9 N C23
C/2015 X7 (ATLAS) 2017 02 18.51 18.0 T T05
C/2015 X7 (ATLAS) 2017 02 17.61 19.2 T F51
C/2015 X7 (ATLAS) 2017 02 17.07 18.2 N A77
C/2015 X7 (ATLAS) 2017 02 05.95 17.5 N I81
C/2015 X7 (ATLAS) 2017 02 02.12 17.5 N C23
C/2015 X7 (ATLAS) 2017 02 01.36 703

C/2016 A1 (PANSTARRS) 2017 02 19.93 16.8 N A77
C/2016 A1 (PANSTARRS) 2017 02 16.99 ..C: m1 = 15.4, Dia. = 0.4', DC = .., 0.50-m. L, f3 (x150).
C/2016 A1 (PANSTARRS) 2017 02 16.52 16.8 T T05
C/2016 A1 (PANSTARRS) 2017 02 08.52 16.6 T T08
C/2016 A1 (PANSTARRS) 2017 02 04.60 Q11
C/2016 A1 (PANSTARRS) 2017 02 04.55 16.8 T T05
C/2016 A1 (PANSTARRS) 2017 02 03.10 ..C: m1 = 15.9, Dia. = 0.3', DC = .., 0.50-m. L, f3 (x150).
C/2016 A1 (PANSTARRS) 2017 02 02.20 16.6 N W97

C/2016 B1 (NEOWISE) 2017 02 06.35 17.5 N W96

C/2016 M1 (PANSTARRS) 2017 02 07.82 Q11
C/2016 M1 (PANSTARRS) 2017 02 06.10 17.0 N I81

C/2016 N4 (MASTER) 2017 02 04.39 15.5 T 349
C/2016 N4 (MASTER) 2017 02 04.39 349

C/2016 N6 (PANSTARRS) 2017 02 06.83 Q11
C/2016 N6 (PANSTARRS) 2017 02 06.12 17.9 N I81
C/2016 N6 (PANSTARRS) 2017 02 05.19 18.0 T 215

C/2016 R2 (PANSTARRS) 2017 02 19.25 17.3 T T05
C/2016 R2 (PANSTARRS) 2017 02 16.86 ..C: m1 = 13.8, Dia. = 0.5', DC = .., 0.50-m. L, f3 (x150).
C/2016 R2 (PANSTARRS) 2017 02 08.48 17.1 N Q62
C/2016 R2 (PANSTARRS) 2017 02 02.11 ..C: m1 = 14.9, Dia. = 0.6', DC = .., 0.25-m. L, f3 (x300).

C/2016 T2 (Matheny) 2017 02 06.79 17.5 T Q11
C/2016 T2 (Matheny) 2017 02 06.08 18.1 N I81
C/2016 T2 (Matheny) 2017 02 05.18 18.4 T 215
C/2016 T2 (Matheny) 2017 02 03.76 17.1 T 349

C/2016 T3 (PANSTARRS) 2017 02 20.05 18.7 T H45
C/2016 T3 (PANSTARRS) 2017 02 15.50 17.8 T Q11
C/2016 T3 (PANSTARRS) 2017 02 04.86 18.9 T J43
C/2016 T3 (PANSTARRS) 2017 02 04.04 18.5 T H45

C/2016 VZ18 (PANSTARRS) 2017 02 20.05 18.0 N H45
C/2016 VZ18 (PANSTARRS) 2017 02 18.82 15.8 T A77
C/2016 VZ18 (PANSTARRS) 2017 02 18.81 18.8 N A77
C/2016 VZ18 (PANSTARRS) 2017 02 17.85 18.5 N G40
C/2016 VZ18 (PANSTARRS) 2017 02 16.07 17.6 N H45

C/2017 A1 (PANSTARRS) 2017 02 16.38 18.3 T T05
C/2017 A1 (PANSTARRS) 2017 02 14.44 Q62
C/2017 A1 (PANSTARRS) 2017 02 13.88 ..C: m1 = 17.3, Dia. = 0.2', DC = .., 0.50-m. L, f3 (x200).

C/2017 A3 (Elenin) 2017 02 17.26 19.2 T F51
C/2017 A3 (Elenin) 2017 02 15.11 18.5 N W88
C/2017 A3 (Elenin) 2017 02 08.48 17.6 N Q62
C/2017 A3 (Elenin) 2017 02 02.64 17.4 N Q62
C/2017 A3 (Elenin) 2017 02 02.18 17.4 N W97

C/2017 B3 (LINEAR) 2017 02 19.23 18.5 T W88
C/2017 B3 (LINEAR) 2017 02 05.67 18.5 N Q62
C/2017 B3 (LINEAR) 2017 02 05.13 18.7 T 215
C/2017 B3 (LINEAR) 2017 02 02.74 18.4 T Q62

P/2017 B4 (PANSTARRS) 2017 02 05.11 215
P/2017 B4 (PANSTARRS) 2017 02 03.25 291

C/2017 C1 (NEOWISE) 2017 02 11.43 21.2 T 695

C/2017 C2 (PANSTARRS) 2017 02 18.87 19.6 T Z80
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