subject
Chemistry, 22.10.2020 16:01 timozy95

The mercury level in a capillary tube placed in a dish of mercury is actually below the surface of the mercury in the dish. Please choose the answer that best explains the phenomenon. a. Mercury flows freely and is incapable of clinging to the walls of the capillary tube. b. Mercury has an incredibly high density for a liquid, making it too heavy to climb the capillary tube, c. The cohesive forces of mercury are much stronger than its adhesive forces. The adhesive forces may be repulsive, causing the mercury level in the tube to be lower than the mercury in the dish. d. Mercury is a polar molecule. It creates incredibly high cohesive forces, which prevent the mercury from climbing the capillary tube.

ansver
Answers: 2

Another question on Chemistry

question
Chemistry, 21.06.2019 18:20
Part of molten rock at mid-ocean ridges
Answers: 1
question
Chemistry, 22.06.2019 05:40
Calculate: select the worksheet tab. this tab you calculate the analyte concentration.  fill in the first set of boxes ("moles h2so4" and "moles naoh") based on the coefficients in the balanced equation. (if there is no coefficient, the value is 1.)  record the appropriate volumes in the "ml naoh" and "ml h2so4" boxes.  record the concentration of the titrant in the m naoh box. click calculate. what is the concentration listed
Answers: 2
question
Chemistry, 22.06.2019 11:20
Which fact represents evidence for the big bang theory?
Answers: 2
question
Chemistry, 22.06.2019 14:50
Which of the following is most likely true about water in chemical systems? a) water dissolves nonpolar ionic compounds. b) water dissociates ionic compounds. c) water dissociates covalent molecules. d) water dissolves nonpolar covalent substances.
Answers: 1
You know the right answer?
The mercury level in a capillary tube placed in a dish of mercury is actually below the surface of t...
Questions
question
Mathematics, 18.04.2020 03:06
question
Chemistry, 18.04.2020 03:06
question
Mathematics, 18.04.2020 03:06
Questions on the website: 13722362