Neisseria meningitidis

Gram staining Gram-negative bacterium Host Human (only known host) Pathogenic/nonpathogenic Pathogenic Disease Septicemia Site of colonization Nasopharyngeal tract Mode of…

Aluminum potassium sulfate dodecahydrate [AlK(SO4)2.12H2O] Molecular Weight Calculation

Aluminum Potassium Sulfate Dodecahydrate [AlK(SO4)2.12H2O] Molecular Weight Calculation

Aluminum potassium sulfate dodecahydrate [AlK(SO4)2.12H2O] is an inorganic compound of four elements: Aluminum, Potassium, Sulfur, and Oxygen. The molecular weight of Aluminum potassium sulfate dodecahydrate (AlK(SO4)2.12H2O) is 474.3918384 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Potassium, Sulfur and Oxygen and 12 molecules of water.

Isosaccharinic acid (C6H12O6) Molecular Weight Calculation

Isosaccharinic acid (C6H12O6) Molecular Weight Calculation

Isosaccharinic acid (C6H12O6) is an organic compound of three elements: Carbon, Hydrogen, and Oxygen. The molecular weight of Isosaccharinic acid is 180.1566 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of all its elements.

Potassium Antimonyl Tartrate Trihydrate (C8H4K2O12Sb2.3H2O) Molecular Weight Calculation

Potassium Antimonyl Tartrate Trihydrate [C8H4K2O12Sb2.3H2O] Molecular Weight Calculation

Potassium antimonyl tartrate (C8H4K2O12Sb2) is an organic compound of five elements: Carbon, Hydrogen, Potassium, Oxygen and Sulfur, and Antimony. Trihydrate form (C8H4K2O12Sb2) also contains three molecules of water. The molecular weight of Potassium antimonyl tartrate trihydrate is 667.8732 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Carbon, Hydrogen, Potassium, Oxygen and Sulfur, Antimony and three molecules of water.

Acesulfame potassium (C4H4KNO4S) Molecular Weight Calculation

Acesulfame Potassium [C4H4KNO4S] Molecular Weight Calculation

Acesulfame potassium (C4H4KNO4S) is an organic compound of six elements: Carbon, Hydrogen, Potassium, Nitrogen, Oxygen and Sulfur. The molecular weight of Acesulfame potassium (C4H4KNO4S) is 201.24344 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Carbon, Hydrogen, Potassium, Nitrogen, Oxygen and Sulfur.

15-Crown-5 [C10H20O5] Molecular Weight Calculation

15-Crown-5 [C10H20O5] Molecular Weight Calculation

15-Crown-5 [C10H20O5] is an organic compound of three elements: Carbon, Hydrogen, and Oxygen. The molecular weight of 15-Crown-5 [C10H20O5] is 220.264 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Carbon, Hydrogen, Nitrogen and Oxygen.

Clavulanic Acid [C8H9N1O5] Molecular Weight Calculation

Clavulanic Acid [C8H9NO5] Molecular Weight Calculation

Clavulanic acid [C8H9N1O5] is an organic compound of three elements: Carbon, Hydrogen, Nitrogen and Oxygen. The molecular weight of Clavulanic acid [C8H9N1O5] is 199.16134 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Carbon, Hydrogen, Nitrogen and Oxygen.

2-Decenedioic acid [C6H10O4] Molecular Weight Calculation

2-Decenedioic Acid [C10H16O4] Molecular Weight Calculation

2-Decenedioic acid [C10H16O4] is an organic compound of three elements: Carbon, Hydrogen and Oxygen. The molecular weight of 2-Decenedioic acid [C10H16O4] is 200.2326 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Carbon, Hydrogen and Oxygen.

Camphoric Acid [C6H10O4] Molecular Weight Calculation

Camphoric Acid [C10H16O4] Molecular Weight Calculation

Camphoric acid C10H16O4] is an organic compound of three elements: Carbon, Hydrogen and Oxygen. The molecular weight of Camphoric acid [C10H16O4] is 200.2326 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Carbon, Hydrogen and Oxygen.

Glucal [C6H10O4] Molecular Weight Calculation

Glucal [C6H10O4] Molecular Weight Calculation

Glucal [C6H10O4] is an organic compound of three elements: Carbon, Hydrogen and Oxygen. The molecular weight of Glucal [C6H10O4] is 146.1418 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Carbon, Hydrogen and Oxygen.

Ethylidene Diacetate [(CH3CO2)2CHCH3] Molecular Weight Calculation

Ethylidene Diacetate [(CH3CO2)2CHCH3] Molecular Weight Calculation

Ethylidene diacetate [(CH3CO2)2CHCH3] is an organic compound of three elements: Carbon, Hydrogen and Oxygen. The molecular weight of Ethylidene diacetate [(CH3CO2)2CHCH3] is 146.1418 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Carbon, Hydrogen and Oxygen.

Isosorbide [C6H10O4] Molecular Weight Calculation

Isosorbide [C6H10O4] Molecular Weight Calculation

Isosorbide [C6H10O4] is an organic compound of three elements: Carbon, Hydrogen and Oxygen. The molecular weight of Isosorbide [C6H10O4] is 146.1418 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Carbon, Hydrogen and Oxygen.

Dianhydro-D-Glucitol [C6H10O4] Molecular Weight Calculation

Dianhydro-D-Glucitol [C6H10O4] Molecular Weight Calculation

Dianhydro-D-glucitol [C6H10O4] is an organic compound of three elements: Carbon, Hydrogen, and Oxygen. The molecular weight of Dianhydro-D-glucitol [C6H10O4] is 146.1418 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Carbon, Hydrogen, and Oxygen.

Conduritol A [C6H10O4] Molecular Weight Calculation

Conduritol A [C6H10O4] Molecular Weight Calculation

Conduritol A [C6H10O4] is an organic compound of three elements: Carbon, Hydrogen and Oxygen. The molecular weight of Conduritol A [C6H10O4] is 146.1418 which can be calculated by adding up the total weight (atomic weight multiplied by their number) of Carbon, Hydrogen and Oxygen.