releasing CO2 that dissolves and forms acid in the oceans
b.
releasing pollutants that lead to smog
c.
releasing CO that dissolves and forms acid in the oceans
d.
releasing pollutants that lead to acid rain
Answer: Option (a) is the correct answer.
Explanation:
When is released from driving cars, some of which is absorbed by the plants but the rest of reacts with the sea or ocean water.
It reacts with water molecules and changes the chemistry of ocean water by lowering its pH. As it is known that when pH becomes lower then the substance becomes acidic in nature.
Thus, we can conclude that driving cars lowers the pH of the oceans by releasing that dissolves and forms acid in the oceans.
A. lithium, beryllium, and boron
B. nitrogen, arsenic, and antimony
C. potassium, calcium, and gallium
D. cesium, platinum, and radon
Answer: The correct answer is option B.
Explanation:
Elements which lie in the same group most likely have similar chemical properties.
From the given options:
Option 1: Lithium, beryllium and boron.
Lithium lies in Group 1, Beryllium in group 2 and boron in Group 13. As, these elements do not lie in the same group and hence, the properties of these elements will not be the same.
Option 2: Nitrogen, arsenic and antimony
All these elements lie in Group 15 of the periodic table and hence will have the same properties.
Option 3: Potassium, calcium and Gallium
Potassium lies in Group 1, Calcium in group 2 and Gallium in Group 13. As, these elements do not lie in the same group and hence, the properties of these elements will not be the same.
Option 4: Cesium, Platinum and Radon.
Cesium lies in Group 1, Platinum in group 10 and Radon in Group 18. As, these elements do not lie in the same group and hence, the properties of these elements will not be the same.
Therefore, the correct option is Option B.
B.gold
C.lead
D.iron
Answer: The correct option is Option C.
Explanation:
To identify the sample, we will determine the density of the unknown sample and match it with the specific densities. The equation used to calculate the density of a sample is given by:
We are given:
Mass of the sample = 8.97 g
Volume of the sample =
Putting values in above equation, we get:
This value of density matches the specific density of lead.
Hence, the correct option is Option C.
The emission spectrum of hydrogen shows discrete, bright, colored lines. The characteristic that the Bohr model supported with observation is that electrons cannot exist in location other than in specific orbits.
According to characteristics of Bohr's atomic model;
Which statement describes the process represented by this equation?
(1) A bond is formed as energy is absorbed.
(2) A bond is formed and energy is released.
(3) A bond is broken as energy is absorbed.
(4) A bond is broken and energy is released.