Biosatellite 2 Explained
Biosatellite 2 |
Mission Type: | Bioscience |
Operator: | NASAARC |
Cospar Id: | 1967-083B |
Satcat: | 9236[1] |
Mission Duration: | 2 days |
Manufacturer: | General Electric |
Launch Mass: | 955kg (2,105lb) |
Launch Date: | UTC[2] |
Launch Rocket: | Delta G 475/D51 |
Launch Site: | Cape Canaveral LC-17B[3] rp |
Landing Site: | Hawaii, USA |
Orbit Epoch: | 7 September 1967[4] |
Orbit Reference: | Geocentric |
Orbit Regime: | Low Earth |
Orbit Eccentricity: | 0.00202 |
Orbit Periapsis: | 286km (178miles) |
Orbit Apoapsis: | 313km (194miles) |
Orbit Inclination: | 33.5ยบ |
Orbit Period: | 90.8 minutes |
Apsis: | gee |
Biosatellite 2, also known as Biosat 2 or Biosatellite B, was the second mission in NASA's Biosatellite program for biological research. It was launched on September 7, 1967, by a Delta G rocket from Cape Canaveral Air Force Station in Florida.[5]
Biosatellite 2 carried 13 biological experiments involving insects, frog eggs, plants and microorganisms. The mission was ended early because of a tropical storm threat in the recovery area and communication problems between the capsule and ground stations. The main objective of the mission was to determine if the radiation sensitivity of living organisms in space is greater or less than on land, for which disposed of a radiation source in front of the capsule.
The satellite is currently the property of the National Air and Space Museum, reference number A19731629000. It is currently on loan to the Museum of Science and Industry, Chicago.
Experiments
- Effects of Weightlessness on Wheat Seedling Morphogenesis and Histochemistry[6]
- Growth Physiology of the Wheat Seedling in Space[7]
- Biochemical Changes in the Developing Wheat Seedling in a Weightless State[8]
- Effect of Sub-gravity on the Dividing Egg of Rana Pipiens[9]
- Mutational Response of Habrobracon[10]
- Liminal Angle of a Plagiogeotropic Organ[11]
- Effects of Radiation and Weightlessness on Tribolium Pupae[12]
- Effects of Weightlessness on Radiation Induced Somatic Dam. in Drosophila Larvae[13]
- Effects of Space on Radiation-Induced Damage to Reproductive Cells of Drosophila Adults and Pupae[14]
- Genetic and Cytologic Studies of Tradescantia Irradiated During Flight[15]
- Combined Effects of Weightlessness and Radiation on Inact.+ Mutation in Neurospora[16]
- Space Flight Effects + Gamma Radiation Interaction on Growth + Induc.of Bacteria[17]
- Effect of Weightlessness on Amoeba, Pelomyxa Carolinensis[18]
- Effects of Weightlessness on the Nutrition and Growth of Pelomyxa carolinensis[19]
See also
External links
Notes and References
- https://www.lib.cas.cz/space.40/1957/INDEX1.HTM 1967-083A - Bios 2
- Jonathan McDowell Launch Log. Jonathan's Space Page. Retrieved 2018-06-14.
- Mark Wade Biosatellite. Encyclopedia Astronautica. Retrieved 2018-06-14.
- NASA GSFC. Biosatellite 2. NSSDCA. Retrieved 2018-06-14.
- Gunter Dirk Krebs. Biosat 1, 2, 3 (Bios 1, 2, 3). Gunter's Space Page. Retrieved 2016-16-05.
- Web site: LSDA: Experiment - P-1020. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1096. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1138. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1047. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1079. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1017. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1039. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1160. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1159. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1123. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1037. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1135. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1035B. lsda.jsc.nasa.gov. 2019-08-06.
- Web site: LSDA: Experiment - P-1035A. lsda.jsc.nasa.gov. 2019-08-06.