Answer:
A) Fission reactors release harmful gases into the atmosphere — mainly CO₂.
Explanation:
Fission reactors release no CO₂ into the atmosphere.
B, C, and D are correct.
Which biome receives too little water to support the growth of trees?
o
deciduous forest
grassland
O
taiga
O
rain forest
Answer:
:Grassland
Explanation:
Explanation: Grasslands have too little water to support trees as it does not rain very often in more temperate Grasslands
Grasslands are the biome that receives insufficient water for tree growth, making them dominated by grasses instead of trees. Boreal forests, or taigas, are inaccurately described by the statement claiming they are dominated by deciduous trees, as they are in fact dominated by coniferous trees.
Explanation:Which Biome Receives Too Little Water to Support the Growth of Trees?The grassland biome is characterized by receiving too little water to support the growth of large trees. In a grassland, the dominant vegetation consists of grasses which are adapted to environments with less precipitation. Unlike deciduous forests, which have moderate rainfall and temperatures to support tree growth, and taigas (boreal forests) and rainforests, which have significant precipitation that fosters dense tree growth, grasslands are more suited for grasses and herbaceous plants.
It's noteworthy that one of the statements about biomes might be false. Specifically, statement c. Boreal forests are dominated by deciduous trees is incorrect because boreal forests, also known as taiga, are actually dominated by coniferous trees, not deciduous trees.
How does changing the mass of an object affect the density and the object if the volume is kept constant
Explanation:
mass of an object affect the density and object if the the volume is keep constant.
here we can explain by using the example.
if the mass of an object is 30kg. and volume is 2m3
then density pf given substance is become 15kg/m3
again,
if the mass of the is 40kg/m3 and volume is same
then density is become 20kg/m3 (formula=kg/m3)
here above density and below density is becime different by changing the mass of an object and affect the density and objecy although volume is kept constant or same
Answer: An increase in mass will increase the density
A decrease in mass will decrease the density
Explanation: So any changes in the mass of the object will affect its density even with constant volume. Mass is directly proportional to density. So when mass is increased density will increase as well and vice versa.
How many grams are in 1.3 x 1024 atoms of hydrogen?
Answer: 4.32g
Explanation:
MM of H2 = 1 x 2 = 2g/mol
2g of H2 contains 6.02x10^23 atoms.
Therefore Xg of H2 will contain 1.3 x 1024 atoms i.e
Xg of H2 = (2 x 1.3 x 1024) / 6.02x10^23 = 4.32g
What is the definition of thermal equilibrium
Answer:
Two physical systems are in thermal equilibrium if there is no net flow of heat between them.
Explanation:
Two Physical systems are said to be in thermal equilibrium if there is no net flow of heat energy between them when they are connected and both of the system is at the same temperature.
Thermal equilibrium is of two varieties i.e Two thermally connected bodies and Internal thermal equilibrium.
If two bodies are thermally connected to each other then there will only transfer of the heat to maintain equilibrium but no transfer of the matter and mass.
Also, a internal thermal equilibrium is maintained in a isolated body where there is no transfer of the heat from the body outside or inside of it.
Thermal equilibrium follows zeroth law of thermodynamics which says that Two bodies are in thermal equilibrium with each other if they individually are in thermal equilibrium with a third body.
What is one example of a response?
the angle of the sun changing during the day
outside temperature dropping at night
ivy growing around the pole of a fence
water lost from the lungs during breathing
Answer:
ivy growing around the pole of a fence
Explanation:
I need help on 4, this is theoretical yeild and writing the equation
Answer:
2.26 g
Explanation:
Data given:
mass of Sulfuric acid = 3.24 g
mass of Aluminum hydroxide = 0.945 g
Theoretical yield of Aluminum sulfate = ?
Solution:
First we look for the balance reaction
Reaction
3H₂SO₄ + 2Al(OH)₃ ----------> Al₂(SO₄)₃ + 6H₂O
Now we look for the limiting reactant on which the amount of aluminum sulfate depends
So,
3H₂SO₄ + 2Al(OH)₃ ----------> Al₂(SO₄)₃ + 6H₂O
3 mol 2 mol
from above reaction it is clear that 3 mole of H₂SO₄ combine with 2 mole of Al(OH)₃
Convert moles to mass
molar mass of Al(OH)₃molar mass of Al(OH)₃ = 27 + 3(16 + 1)
molar mass of Al(OH)₃ = 27 + 45
molar mass of Al(OH)₃ =72 g/mol
molar mass of H₂SO₄molar mass of H₂SO₄ = 2(1) + 32 + 4(16)
molar mass of H₂SO₄ = 2 + 32 + 64
molar mass of H₂SO₄ = 98 g/mol
So,
3H₂SO₄ + 2Al(OH)₃ ----------> Al₂(SO₄)₃ + 6H₂O
3 mol (98 g/mol) 2 mol (72 g/mol)
294 g 144 g
So its clear from the reaction that 294 g of H₂SO₄ react with 144 g of Al(OH)₃
now if we look at the given amounts the amount Al(OH)₃ is less then the amount of H₂SO₄
So, for Al(OH)₃ if we calculate the needed amount of H₂SO₄
So apply unity formula
294 g H₂SO₄ ≅ 144 g of Al(OH)₃
X g H₂SO₄ ≅ 0.945 of Al(OH)₃
Do cross multiplication
X g H₂SO₄ = 294 g x 0.945 g / 144 g
X g of H₂SO₄ ≅ 1.93 g
So, 1.93 g of H₂SO₄ will react out of 3.24 grams, the remaining amount of it will be in excess.
So,
Al(OH)₃ will be consumed completely an it will be limiting reactant.
-----------
Now to Calculate for the theoretical yield
First we look for the balance reaction
Reaction
3H₂SO₄ + 2Al(OH)₃ ----------> Al₂(SO₄)₃ + 6H₂O
Now we look for the mole mole ration of Al(OH)₃ to the amount of aluminum sulfate produced
So,
3H₂SO₄ + 2Al(OH)₃ ----------> Al₂(SO₄)₃ + 6H₂O
2 mol 1 mole
from above reaction it is clear that 1 mole of Al₂(SO₄)₃ produce by 2 mole of Al(OH)₃
As we know that
2 mole of Al(OH)₃ = 144 g
So,
if 144 g of Al(OH)₃ gives 1 mole Al₂(SO₄)₃ then how many moles of Al₂(SO₄)₃ will be produces by 0.945 g Al(OH)₃
So apply unity formula
144 g of Al(OH)₃ ≅ 1 mole of Al₂(SO₄)₃
0.945 g of Al(OH)₃ ≅ X mole of Al₂(SO₄)₃
Do cross multiplication
X mole of Al₂(SO₄)₃ = 0.945 g x 1 mole / 144 g
X mole of Al₂(SO₄)₃ = 0.0066 moles
So,
0.945 g of Al(OH)₃ produce 0.0066 mole of Al₂(SO₄)₃
Now conver moles of Al₂(SO₄)₃ to mass
Formula used:
mass in grams = no. of moles x molar mass . . . . . . (1)
molar mass of Al₂(SO₄)₃molar mass of Al₂(SO₄)₃ = 2(27) + 3(32 +4(16))
molar mass of Al₂(SO₄)₃ = 54 + 3 (32 +64)
molar mass of Al₂(SO₄)₃ = 54 + 3 (96)
molar mass of Al₂(SO₄)₃ = 54 + 288
molar mass of Al₂(SO₄)₃ =342 g/mol
Put values in equation 1
mass in grams = 0.0066 g x 342 g/mol
mass in grams = 2.26 g
So the theoretical yield of Aluminum sulfate (Al₂(SO₄)₃ ) is 2.26 g
Which of the following examples does NOT describe nuclear fission?
Bombarding uranium nuclei with beta particles to produce two lighter atomic nuclei.
Colliding hydrogen atoms to produce heavier helium atoms.
An unstable nucleus decays over a period of time.
Cobalt releasing gamma rays during decay to be used for a medical imaging.
Answer:
the answer is, colliding hydrogen atoms to produce heavier helium atoms.
These models show the electron structures of two different nonmetal elements. Element 1 at left has a purple circle at center with 2 concentric black lines around it. The first line has 2 small green balls on it. The second line has 8 small green balls on it. Element 2 at right has a purple center with 5 concentric circles around it, with the first circle innermost. The first circle has 2 small green balls on it, and the second circle has 8 small green balls on it. The third circle has 18 small green balls on it, and the fourth circle has 18 small green balls on it. The fifth circle has 6 small green balls on it. Which element is likely more reactive, and why? Element 1 is more reactive because it has fewer electron shells and is toward the top of its group on the periodic table. Element 1 is more reactive because it has more electrons in its valence shell and is farther to the right on the periodic table. Element 2 is more reactive because it does not have a valence shell close to the nucleus, so it will attract electrons. Element 2 is more reactive because it does not have a full valence shell, so it will attract electrons.
Element 2 is more reactive than element 1 because element 2 does not have a fully filled valence shell, so it will attract electrons to complete it. Therefore, option (D) is correct.
What are valence electrons?Valence electrons are those electrons present in the outermost shell of an atom while the electrons occupied the inner shell are known as core electrons. Lewis structures can be useful to evaluate number of valence electrons and predict the nature of bonds.
Valence electrons are arranged in different types of shells and these electrons will decide the interaction between atoms and the formation of chemical bonds.
Only valence electrons present in the outermost shell can take part in the formation of a chemical bond or a molecule and are reason of the reactivity of the element such kind of electrons is called valence electrons.
Given, element 1 have electronic configuration of 2,8 while the electronic configuration of element 2 is given 2, 8, 18, 18, 6. Element 1 contains fully filled valence shell while element 2 has an incomplete valence shell of electrons. Therefore, element 2 will be more reactive to get nearednoblegas configuration.
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Farming is one example of a human activity that has changed the environment. Which is the NOT a reason farming has hurt the environment? Question 11 options:
It uses large amounts of fresh water
It destroys habitats of many species
It increased the availability of food for humans
It contributes to soil erosion and desert formation
Answer:
It increased the avaiability of food for humans
Explanation:
What does it mean if a solid is malleable?
A. It is stretchable.
B. It is conductive.
C. It is bendable.
D. It is hard.
Answer:
Option C
Explanation:
The answer to this question will be the third option "It is bendable." Malleable means to be able to change the shape of a object without damaging or breaking it. In this case a malleable solid would be for example drainage pipes. These pipes have curves and different shapes but still remain its product of a metal.
Hope this helps!
Final answer:
A malleable solid can be shaped under compression into thin sheets without breaking, a property typically found in metals, which also possess ductility, the ability to be drawn into wires.
Explanation:
If a solid is malleable, it means that it can be pounded into thin sheets or bent into shape without breaking. This property is commonly associated with metals, which are elements known for their ability to conduct electricity and heat, their shiny appearance, and their variable hardness and melting temperatures. At room temperature, metals are typically solid, with the well-known exception of mercury.
The ductility of a metal refers to its ability to be drawn into thin wires, and malleability refers to being shaped under compression, such as hammering or rolling into sheets. For instance, metals like copper are used in electrical wiring because they are both malleable and ductile; they don't break when being bent into the needed shapes and can be stretched into thin wires that conduct electricity efficiently.
Please help my class ends in a couple hours
Which term describes a mixture of oxygen gas dissolved in water?
Select all that apply.
Suspension
Solution
Liquid-gas
Heterogeneous mixture
Homogeneous mixture
Gas-liquid
Answer:
Homogeneous mixture
Solution
Liquid-gas
Hope this helps, hope its not late.
Answer:
Homogeneous mixture
Solution
Liquid-gas
Explanation:
A clear prediction of the anticipated results in an experimental design is known as
A clear prediction of the anticipated results in an experimental design is known as "Hypothesis".
Explanation:
A theory or hypothesis are often used clearly as a suggested event descriptive one. The scientific methods need that one can be able to examine for a hypothesis termed as scientific hypothesis.
A working in hypothesis is a proposed provisionally accepted hypothesis for on-going research that starts with an appropriate amount of conclusion and thoughts, also known as "Educated Guess".
According to researchers like Schick and Vaughn the weighing up an alternative hypotheses might be taken into understanding like Parsimony, testability, Fruitfulness, Scope and Conservatism.
The —————of the comet is on the opposite side of the common from the sun
A-Trail
B-light
C-tail
The tail of a comet is on the opposite side of the comet from the sun, due to the influence of the sun's radiation pressure and solar wind.
Explanation:The tail of the comet is on the opposite side of the comet from the sun. This happens because the sun's radiation pressure and solar wind push material away from the comet's nucleus, forming a tail that points away from the sun, regardless of the direction the comet is moving. Therefore, the tail of the comet always lies opposite to the direction of the sun.
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How many atoms are presented in 3.8 moles of sodium hydroxide, NaOH
Answer:
Sodium hydroxide has the formula NaOH and it contains three atoms, one each of Sodium, Hydrogen and Oxygen.
Explanation:
Answer: 1.806 x 10^24 atoms
Explanation:Please see attachment for explanation
Consider the following reactions. (Note: (s) = solid, () = liquid, and (g) = gas.)
V2H2(g) + 1212(9) - HI(g), AH = +6.2 kcal/mole
21.0 kcal/mole + C(s) + 2S(s) - CS2(1)
What type of reaction is represented by the previous two examples?
endothermic
exothermic
Answer:
Both are endothermic reactions.
Explanation:
Chemical equation:
1/2H₂(g) + 1/2I₂(g) → HI(g) + 6.2 kcal/mol
Chemical equation:
21.0 kcal/mol + C(s) + 2S(s) → CS₂
Both reaction are endothermic because heat is added in both of reactions.
Endothermic reactions:
The type of reactions in which energy is absorbed are called endothermic reactions.
In this type of reaction energy needed to break the bond are higher than the energy released during bond formation.
For example:
C + H₂O → CO + H₂
ΔH = +131 kj/mol
it can be written as,
C + H₂O + 131 kj/mol → CO + H₂
Exothermic reaction:
The type of reactions in which energy is released are called exothermic reactions.
In this type of reaction energy needed to break the bonds are less than the energy released during the bond formation.
For example:
Chemical equation:
C + O₂ → CO₂
ΔH = -393 Kj/mol
it can be written as,
C + O₂ → CO₂ + 393 Kj/mol
Titanium is a transition metal used in many alloys because it is extremely strong and lightweight. Titanium tetrachloride (TiCl4) is extracted from titanium oxide using chloride and coke (carbon).
A) what mass of Cl2 gas is needed to react with 3.09 mol TiO2?
C) what is the mass of all the products formed by reaction with 3.09 mol TiO2
Answer:
Mass of CO₂ = 135.96 g
Mass of TiCl₄ = 586.11 g
Mass of chlorine = 438.78 g
Explanation:
Given data:
Moles of TiO₂ = 3.09 mol
Mass of Chlorine = ?
Mass of all product from 3.09 mol of TiO₂ = ?
Solution:
Chemical equation:
TiO₂ +C + 2Cl₂ → TiCl₄ + CO₂
Now we will compare the moles of chlorine with TiO₂.
TiO₂ : Cl₂
1 ; 2
3.09 : 2×3.09 = 6.18 mol
Mass of chlorine:
Mass = number of moles × molar mass
Mass = 6.18 mol × 71 g/mol
Mass = 438.78 g
Now we will compare the moles of TiCl₄ and CO₂ with TiO₂
TiO₂ : CO₂
1 : 1
3.09 : 3.09
TiO₂ : TiCl₄
1 : 1
3.09 : 3.09
Mass of CO₂:
Mass = number of moles × molar mass
Mass = 3.09 mol× 44 g/mol
Mass = 135.96 g
Mass of TiCl₄:
Mass = number of moles × molar mass
Mass = 3.09 mol× 189.68 g/mol
Mass = 586.11 g
what is the volume of 0.2 moles of neon gas at STP?
Standard Molar Volume is the volume occupied by one mole of any gas at STP. Remember that "STP" is Standard Temperature and Pressure. Standard temperature is 0 &176:C or 273 K. Standard pressure is 1 atmosphere or 760 mm Hg (also called "torr"). 1 mole of any gas at STP occupies 22.4 liters of volume.
Answer: 4.5 L
Explanation: Ideal gas at STP standard temperature and pressure: at STP
P = 1 atm
T = 1 °C convert to K (273 K)
Solution:
PV= nRT
Derive the equation to find V
V= nRT / P
Substitute the values
V= 0.2 moles x 0.082 L.atm/ mol. K x 273 K / 1 atm
Cancel out the units of moles, atm and K so the remaining uni is in L.
A gas has experienced a small increase in volume but has maintained the same pressure and number of moles. According to the ideal gas law, how has the temperature of the gas changed?
Answer:
If a gas has experienced a small increase in volume but has maintained the same pressure and number of moles, the temperature of the gas will DROP.
Explanation:
According to Boyle’s law of ideal gases, volume and temperature of a gas is inversely related, as long as the pressure is kept constant;
P₁V₁/T₁ = P₂V₂/T₂
Therefore, if the volume of the gas increases, the temperature will definitely decrease due to the inverse relationship. The gas will get cooler.
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Answer:
Choices:
A. It has increased two times.
B. It has increased slightly.
C. It has decreased slightly.
D. It has stayed the same.
Explanation:
The correct answer is B. Edge2021
The molecular structure of water contains two end of hydrogen and one hour of oxygen. When water reaches its boiling point and turns into water vapor, what happens to it Molecular structure?
Explanation:
why hydrogen fluoride is a gas at room temperature?
Bottled gas is stored outside buildings because there is a danger if they are in a fire. explain what can happen to full gas bottles if they are involved ina fire
Full gas bottles, when involved in a fire, can experience a dangerous rise in internal pressure leading to potential explosions. Bottled gas is heavier than air and collects on the floor, creating significant fire hazards if it leaks. Proper storage and safety measures including seismic shut-off valves can help mitigate these risks.
Gas bottles, such as those containing propane or butane, are stored at high pressure typically around 200 atmospheres. These bottles have a safety factor where they are designed not to fail until reaching pressures around 400 atmospheres. However, if a fire exposes the gas bottle to high temperatures, the pressure inside the bottle will increase significantly. If the heat from the fire causes the internal pressure to exceed the safety limit of the bottle, it might no longer be able to contain the gas leading to a potential explosion or rupture.
Furthermore, gas bottles such as those containing propane or butane are denser than air. In the event of a leak, the gas would collect near the ground creating a severe fire hazard as it might be ignited by any nearby source of flame or heat. This is why warnings such as those on hairspray cans caution against exposure to heat or open flames, to prevent the dangerous increase in pressure and the risk of explosion or fire.
Additionally, during natural disasters like earthquakes, improperly secured gas tanks might be disturbed, causing leaks that can lead to fires. Installing seismic shut-off valves and flexible connections can mitigate this risk significantly.
state and explain the hess's law
Answer:
I had to do some research, because I not familiar with Hess's Law.
Hope this helps :)
Stating Hess's Law
Hess's Law is the most important law in this part of chemistry. Most calculations follow from it. It says "The enthalpy change accompanying a chemical change is independent of the route by which the chemical change occurs."
Explaining Hess's Law
Hess's Law is saying that if you convert reactants A into products B, the overall enthalpy change will be exactly the same whether you do it in one step or two steps or however many steps.
Answer:
Hess's Law of Constant Heat Summation (Hess's Law) states that regardless of the multiple stages or steps of a reaction, the total enthalpy change for the reaction is the sum of all changes
Explanation:This law is a manifestation that enthalpy is a state function.
How do the resonance structures for ozone, 03, differ?
A. They have different numbers of atoms.
B. They have atoms in different positions.
C. They have different numbers of electrons.
D. They have electrons in different locations.
The resonance structures of ozone differ only in the location of electrons in the structure.
The idea of resonance structures are invoked when a single structure does not sufficiently explain the bonding characteristics of a chemical species. The resonance structures show the different possible bonding extremes in the substance.
In the resonance structures of ozone, all the contributing structures only differ in the location of the electrons in the structure.
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Final answer:
The ozone molecule has resonance structures that differ by the location of electrons around the oxygen atoms, with the positions of the atoms remaining unchanged.
Explanation:
The resonance structures for ozone (O3) differ because they have electrons in different locations. Both structures have the same number of atoms and the same total number of electrons, which is 18. However, what changes between the resonance structures of ozone is the arrangement of these electrons around the oxygen atoms. The positions of the oxygen atoms remain unchanged. The use of double-headed arrows is common to illustrate that the two structures are resonance forms of the same molecule, indicating the shifting of electron locations without altering the atomic positions.
What is the net ionic equation for the precipitation reaction between BaCl2 and Na2So4? I know the answer ( Ba2+(aq) + SO42-(aq) --> BaSO4 (S) ), but i dont understand how it is the answer. Can anybody help? <3
Answer:
Net ionic equation:
Ba²⁺(aq) + SO₄²⁻(aq) → BaSO₄(s)
Explanation:
Chemical equation:
BaCl₂ + Na₂SO₄ → BaSO₄ + NaCl
Balanced Chemical equation:
BaCl₂(aq) + Na₂SO₄(aq) → BaSO₄(s) + 2NaCl(aq)
Ionic equation:
Ba²⁺(aq) + 2Cl⁻(aq) + 2Na⁺(aq) + SO₄²⁻(aq) → BaSO₄(s)+ 2Na⁺(aq) + 2Cl⁻ (aq)
Net ionic equation:
Ba²⁺(aq) + SO₄²⁻(aq) → BaSO₄(s)
The Cl⁻(aq) and Na⁺ (aq) are spectator ions that's why these are not written in net ionic equation. The BaSO₄ can not be splitted into ions because it is present in solid form.
Spectator ions:
These ions are same in both side of chemical reaction. These ions are cancel out. Their presence can not effect the equilibrium of reaction that's why these ions are omitted in net ionic equation.
Assuming all protons can be seen in this atom what is the charge in this ion
Answer:
A proton has positive charge of 1, that is, equal but opposite to the charge of an electron. A neutron, like the name implies, is neutral with no net charge. The charge is believed to be from the charge of the quarks that make up the nucleons (protons and neutrons). need a pictur of the question
Explanation:
Assuming the diameters of the nucleus and atom are 10A
nucleus?
and 1-5 A correspondingly, what fraction of the volume of the atom is taken up by the
ing
Answer:
2.95 [tex]\times 10^{-9}[/tex] is the fraction of the nucleus is present in atom.
Explanation:
Given:
The diameter of the nucleus - 10A
The diameter of atom - 1.5 A
From this, we can find the radius of nucleus and atom i.e.
For nucleus [tex]=\frac{10}{2}[/tex]
For atom [tex]= \frac{1.5}{2}[/tex]
Now, the fraction of nucleus [tex]= \frac{volume of nucleus}{volume of atom}[/tex]
= [tex]\frac{4}{3}\pi (\frac{10}{2})\frac{3.14}{2}\pi (\frac{10}{2})^3[/tex]
or, = [tex](\frac{10}{1.5})^3[/tex]
= 2.95 [tex]\times 10^{-9}[/tex]
Therefore, 2.95 [tex]\times 10^{-9}[/tex] is the fraction of nucleus in the atom.
The volume of a nucleus is found by the formula for the volume of a sphere. Given the diameters specified, the nucleus occupies a very small fraction, specifically one trillionth, of the total atomic volume. Hence, atoms are mostly comprised of empty space.
Explanation:Both an atom and its nucleus are approximately spherical in shape. To calculate the volume of each, we can use the formula for the volume of a sphere, which is 4/3π*r3.
Hence, the volume fraction of the atom taken up by the nucleus would be the ratio of the volume of the nucleus to the volume of the atom.
The volume of the nucleus (Vn) is 4/3π*(101 A)3 = 4,188.79 cubic A.
The volume of the atom (Va) is 4/3π*(105 A)3 = 4.18*1015 cubic A.
Finally, the volume fraction of the atom taken up by the nucleus is
Vn/ Va = 4,188.79 / 4.18*1015 = 1*10-12 or one trillionth.
So, the nucleus occupies a very small proportion of the total atomic volume. This explains why atoms are mostly empty space.
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Q5. The table below shows the melting points and boiling points of four elements
Melting Point (°C) Boiling Point (°C)
357
-39
Element
Mercury
Copper
Nitrogen
Calcium
1085
2562
-210
-196
842
1484
Answer the following using the table above. Which element in the table is:
(i) a liquid at 0°C?
(ii) a solid at 1000°C?
(iii) a gas at 500°C?
(iv) What state is Nitrogen at -200°C?
i. Mercury
ii. copper
iii. Mercury
iv.Nitrogen becomes a liquid at -200°C. Liquid nitrogen looks like water
Mercury is a liquid at 0°C, Copper is solid at 1000°C, Nitrogen is a gas at 500°C, and Nitrogen is a gas at -200°C.
Explanation:(i) The element that is a liquid at 0°C is Mercury. It has a melting point of -39°C and a boiling point of 357°C, so it is in liquid state at 0°C.
(ii) The element that is a solid at 1000°C is Copper. It has a melting point of 1085°C, which means it remains in solid state at 1000°C.
(iii) The element that is a gas at 500°C is Nitrogen. It has a boiling point of -196°C, so it has already changed into a gas at 500°C.
(iv) Nitrogen at -200°C is in the gas state. Its boiling point is -196°C, which means it has already changed into a gas at -200°C.
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The chemical formula for the unknown molecule shown above is...
Answer:
the answer is A
Explanation:
The chemical formula is C₂H₅OH and the correct answer is C
What is a Chemical Formula ?A Chemical Formula is used to identify the constituent atoms / elements present in the sample and also the proportion in which the elements are mixed.
In the above figure given it can be seen that the colour of the molecules are being used to determine the Type of molecule
It can be easily observed that in the unknown molecule the carbon atom is connected to another carbon atom
The first Carbon atom is connected to 3 Hydrogen atom
and the second Carbon atom is connected to 2 Hydrogen and one Oxygen atom , The oxygen atom is connected to one Hydrogen atom.
So the chemical formula is C₂H₅OH and the correct answer is C
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chlorine molecule is orbital and dot structure
Answer:
The electron dot structure of [tex]Cl_2[/tex]
Explanation:
Step 1: First we have to know the number of valence electrons present in a molecule.
Chlorine is an element from group 17 with 7 nos. of valence electrons.
So, the given [tex]Cl_2[/tex] will have 7+7 = 14
Step 2: We, will begin by drawing the skeleton of the molecule.
Step 3: Then, we have to place the bonding pairs of the electrons in the middle atoms so that chemical bonds can be formed.
Step 4: The electrons left will be used as lone pairs for central and terminal atoms in order to achieve an octet and to finish the electron dot structure. The structural formula and electron dot structure has been attached below.
What is the job of a scientist?
A. To write laws based on his or her knowledge.
O
B. To ask and answer scientific questions.
C. To answer ethical questions.
O
D. To ignore facts that do not support his or her theory.
Answer:
B. To ask and answer scientific questions
To ask and answer scientific questions is the job of a scientist. Therefore, the correct option is option B.
The systematic examination of natural events through theoretical analysis and experimental is referred to as scientific research. Its main goal is to increase our knowledge of and comprehension of numerous scientific disciplines as well as our understanding of the world around us. A hypothesis is a put forth explanation for a phenomenon based on prior information or observation that serves as the starting point for scientific inquiry. Then, using a series of carefully planned tests or observations, this hypothesis is verified.
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