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A point charge of 2.00 μC is placed 10.0 cm from another point charge of -2.00 μC. Calculate the magnitude and direction of the force on each charge.
Consider the malate dehydrogenase reaction from the citric acid cycle. Given the following concentrations, calculate the free energy change for this reaction at 37.0 °C (310 K).
Incandescent white of a fireworks display is caused by the formation of P4O10, which occurs by the combustion of phosphorus, if 1.75 mol P reacts with 2.00 mol O2, how many grams of P4O10 can be produced
6.00 mL of this solution was mixed with 77.00 mL of a solution of potassium nitrate and 68.70 mL of a solution of ammonium chloride. What is the molarity of Nacl in the final solution?
What are concentrations of solutions? What is molarity? How can we determine solutions of known molarity?
Use VSEPR theory to decide which one of the following ions and molecules is likely to be planar. The central atom is always first in the formula. A. BrF3B. H3O+C. PCl3D. SO42-E. SF4
FeCl3 and Mg3(PO4) to give FePO4 and MgCl2 I need to know what are the : Molecular Equation? Ionic Eq? Net Ionic Eq? What is the name of this type of reaction. Which ions are spectator ions
Show the orbital-filling diagram for (nitrogen). Stack the subshells in order of energy, with the lowest-energy subshell at the bottom and the highest-energy subshell at the top.
Problem- When 2.00 mol of O2 (treated as ideal) are heated at a constant pressure of 4.00 atm, its temperature increases from 260 K to 285 K. Knowing that the molar heat capacity of O2 at constant pressure is 29.4 J•K-1•mol-1
For the reaction given below, how many grams of Na2CS3 are produced in the reaction of 65.0 mL of liquid CS2 (d = 1.26 g/mL) and 1.56 mol NaOH
Calculate the freezing point of a lactose solution that contains 21.0 g of lactose (C1222112f HO) per 100.0 g HO (K = 1.86°C /m).
Briefly describe how nuclear fission is different from nuclear fusion and how fusion produces energy.
The level of water in a rectangular swimming pool needs to be lowered 7.00 inches. If the pool is 41.00 feet long and 19.50 feet wide, and the water is siphoned out at a rate of 5.3 gal/min how long will the siphoning take? 1 ft^3 = 7.48 gal
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