H2O consists 3 atoms.
6 H2O consists 6*3=18 atoms.
Well, well, well, aren't we feeling scientific today? Let's break it down for you - in 6 molecules of H2O, you've got a total of 18 hydrogen atoms (6 molecules x 2 hydrogens per molecule) and 6 oxygen atoms. So, in total, you've got 24 atoms in 6H2O. Keep that brain of yours hydrated with knowledge!
To determine the number of atoms in 6H2O, we first need to calculate the total number of atoms in one molecule of water (H2O). In one molecule of water, there are 2 hydrogen atoms and 1 oxygen atom. Therefore, in 6 molecules of water (6H2O), there would be a total of 12 hydrogen atoms (6 x 2) and 6 oxygen atoms. So, in 6H2O, there are a total of 18 atoms (12 hydrogen atoms + 6 oxygen atoms).
Avogadro's number of 6.02x10^23 is the quantity of particles in one mole of any given. Similarly for each mole of water, or H20 there are 2 moles of hydrogen atoms. 6 moles of water thus contains 12 moles of hydrogen. Multiplying 12 by Avogadro's number yields the solution of 7.2x10^24 moles of hydrogen.
There are 6 molecules in 6H2O. 6H2O simply states that there are 6 molecules of the substance H20 also known as water.
There are 12 hydrogen atoms in 6 molecules of water (H2O). Each water molecule contains 2 hydrogen atoms, so multiplying by the number of water molecules gives a total of 12 hydrogen atoms.
In the formula of photosynthesis, which is 6CO2 + 6H2O -> C6H12O6 + 6O2, there are 6 atoms of carbon. Each molecule of carbon dioxide (CO2) contributes one carbon atom to the formation of glucose (C6H12O6).
To balance the chemical reaction CO2 + H2O → C6H12O6 + 6O2 + 6H2O, start by balancing the carbon atoms on both sides of the equation. Then balance the hydrogen and oxygen atoms by adjusting the coefficients in front of each compound. Finally, double-check to ensure that all elements are balanced on both sides of the equation.
Glucose and oxygen producing carbon dioxide water and energy C6H12O6 + 6O2 -------> 6CO2 + 6H2O + energy
To balance the equation P4O10 + 6H2O → 4H3PO4, start by balancing the phosphorus atoms. Then balance the oxygen atoms by adjusting the coefficients of water. Finally, ensure the equation is balanced for hydrogen atoms as well. The final balanced equation is P4O10 + 6H2O → 4H3PO4.
There are 12 hydrogen atoms in 6 molecules of water (H2O). Each water molecule contains 2 hydrogen atoms, so multiplying by the number of water molecules gives a total of 12 hydrogen atoms.
In the formula of photosynthesis, which is 6CO2 + 6H2O -> C6H12O6 + 6O2, there are 6 atoms of carbon. Each molecule of carbon dioxide (CO2) contributes one carbon atom to the formation of glucose (C6H12O6).
The empirical formula of magnesium fluoride is MgF2. This is because the ratio of magnesium atoms to fluorine atoms in the compound is 1:2.
your equation is wrong. it should be c6h12o6 + 6 o2 --> 6 co2 + 6h2o The products contain 18 oxygen atoms (so do the reactants)
To balance the chemical reaction CO2 + H2O → C6H12O6 + 6O2 + 6H2O, start by balancing the carbon atoms on both sides of the equation. Then balance the hydrogen and oxygen atoms by adjusting the coefficients in front of each compound. Finally, double-check to ensure that all elements are balanced on both sides of the equation.
Glucose and oxygen producing carbon dioxide water and energy C6H12O6 + 6O2 -------> 6CO2 + 6H2O + energy
To balance the equation P4O10 + 6H2O → 4H3PO4, start by balancing the phosphorus atoms. Then balance the oxygen atoms by adjusting the coefficients of water. Finally, ensure the equation is balanced for hydrogen atoms as well. The final balanced equation is P4O10 + 6H2O → 4H3PO4.
To have Avogadro's number of particles of CoCl2 6H2O, you would need to measure out 1 mole of the compound. This is equivalent to the molar mass of CoCl2 6H2O in grams, which is approximately 237.93 grams.
tHE EQUATION FOR PHOTOSYNTHESIS IS, 6CO2+6H2O+ sunlight+C6H12O6+6O2and the equation for cellular respiration is, C6H12O6+6O2+6H2O+6CO2+ATP.cellular respirationC6H12O6 + 6O2 = 6CO2 + 6H2Ophotosynthesis is the opposite6CO2 + 6H2O = C6H1206 + 6O2
To determine the mass of CoCl2 6H2O to prepare a 0.30M solution in 50.0ml, we first calculate the molar mass of CoCl2 6H2O. The molar mass is 237.93 g/mol, so for a 0.30M solution in 50.0ml, we can use the formula: mass = molarity x volume (L) x molar mass. Therefore, the mass of CoCl2 6H2O needed is 3.57 grams.
Fe(NO3)2* 6H2O THAT IS WRONG! it is Mg(NO3)2 * 6H2O << APLUS
6H2O represents 6 molecules of water. The "6" indicates the number of water molecules present.