There are various kind of elements that are present in periodic table. Some elements are harmful, some are halogens, some are radioactive. Option B is correct option.
Periodic table is a table in which we find elements with properties like metals, non metals, metalloids and radioactive element arranges in increasing atomic number.
Periodic table help a scientist to know what are the different types of elements are present in periodic table so that they can discover the new elements that are not being discovered yet.
Group 7A elements includes halogens elements like Fluorine, Chlorine, Bromine and iodine, whose electronegativity is very high in whole periodic table. These element gain electron very easily.
Therefore, the correct option is option B.
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B. phosphorous (P)
C. sulfur (S)
D. oxygen (O)
Answer: Phosphorous
Explanation: Nitrogen(N): 7:
Phosphorus(P): 15:
Oxygen(O): 8:
Sulphur(S): 16:
As nitrogen contains half filled configuration, it is stable and does not react. Phosphorous lies below nitrogen and reactivity decreases down a group for non metals as they tend to gain electrons as the valence shell move away from the nucleus.
Oxygen has 4 valence electrons, thus it need to gain two electrons to attain stable configuration. Thus is reactive.
Sulphur lies below oxygen and also need to gain two electrons. Reactivity decreases down a group for non metals as they tend to gain electrons as the valence shell move away from the nucleus.
The quantity of nitrogen the cylinder contains is 4477.8 g
Pressure is a force exerted in a perpendicular direction in any item.
By ideal gas law
PV = nRT
w = mass
Volume is 20.0 l
Pressure is
The molar mass of nitrogen is 28 g/mol
R is gas constant = 0.0821
Temperature is 28 converted into kelvin that is 301 k
Putting the values
Thus, the mass of nitrogen is 4477.8 g.
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Answer : The mass of gas is, 4477.8 g
Solution :
using ideal gas equation,
where,
n = number of moles of gas
w = mass of gas
P = pressure of the gas =
conversion :
T = temperature of the gas =
M = molar mass of gas = 28 g/mole
R = gas constant = 0.0821 Latm/moleK
V = volume of gas = 20 L
Now put all the given values in the above equation, we get the mass of gas.
Therefore, the mass of gas is, 4477.8 g
C. Ketones and Oxygen.
D. Aldehydes and Alcohol
Soil
Plants
Temperature
Answer:
The correct answer is ' plants'.
Explanation:
Abiotic factors : These are the non living physical and chemical parts of the environment that effects living organism and the ecosystem.For example: miner;as, soil, temperature, pressure etc.
Biotic factors: These are the living organisms which effects the functioning of the ecosystem and other living beings. For example: plants , animals, microorganism etc.
In an ecosystem, plants are not considered an abiotic factor, but a biotic factor since they are living organisms. Abiotic factors are non-living components such as minerals, soil, and temperature.
In an ecosystem, factors are broken down into two components: abiotic and biotic. Abiotic factors are the non-living components of an ecosystem, which include sunlight, temperature, wind patterns, soil, and minerals. On the other hand, biotic factors are the living components that interact with both the abiotic factors and other biotic factors. Examples of these include plants, animals, fungi, and bacteria.
In your given options, minerals, soil, and temperature are all examples of abiotic factors as they are all non-living components. However, plants are considered biotic factors as they are living organisms that directly interact with both the abiotic and biotic components of the ecosystem. Thus, the answer is plants.
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b. there is no net change in the amount of substrates or products.
c. the reaction has stopped.
d. there are equivalent amounts of substrates and products.
Answer: b. there is no net change in the amount of substrates or products.
Explanation:
The reactions which do not go on completion and in which the reactant forms product and the products goes back to the reactants simultaneously are known as equilibrium reactions.
Equilibrium state is the state when reactants and products are present but the concentrations does not change with time.
For a chemical equilibrium reaction, equilibrium state is achieved when the rate of forward reaction becomes equals to rate of the backward reaction.