Answer:
Capillary action occurs when the adhesion to the walls is stronger than the cohesive forces between the liquid molecules. The height to which capillary action will take water in a uniform circular tube (picture to right) is limited by surface tension and, of course, gravity.
Capillary action is the phenomenon where a liquid rises in a narrow tube, such as a glass capillary or a plant stem, due to the adhesive and cohesive forces between the liquid and the tube. This phenomenon can be explained by a combination of intermolecular forces, namely adhesion and cohesion.
Adhesion refers to the attractive forces between unlike molecules. In the case of capillary action, the adhesive forces between the liquid and the walls of the capillary tube allow the liquid to "wet" the tube, which means that the liquid molecules adhere to the tube's surface. The strength of the adhesive forces depends on the chemical nature of the liquid and the tube's material. For example, water is attracted to glass due to the presence of polar groups on the glass surface.
Cohesion, on the other hand, refers to the attractive forces between like molecules. The cohesive forces between the liquid molecules cause them to stick together, forming a meniscus, which is the curved surface of the liquid in the tube. The cohesive forces are usually stronger than the adhesive forces, causing the liquid to rise in the tube against the force of gravity.
The height that the liquid rises in the tube depends on the balance between the adhesive and cohesive forces, as well as the diameter of the tube. A narrower tube will have a greater capillary rise than a wider one because the liquid experiences a greater amount of adhesive forces with the tube's surface in a narrower tube.
In summary, capillary action is a result of the interplay between adhesive and cohesive forces, which causes a liquid to rise in a narrow tube. Adhesion allows the liquid to wet the tube, while cohesion causes the liquid molecules to stick together, forming a meniscus that rises in the tube against the force of gravity.
How many moles of magnesium is 1. 25
x 1023 atoms of magnesium?
1.25 x 1023 atoms of magnesium contains 0.28. moles of magnesium.
A mole of any element contains Avogadro's number of that element's atoms. To find the number of moles of magnesium in 1.25 x 1023 atoms of magnesium, simply divide by Avogadro's number:
1.25 x
[tex] {10}^{23} [/tex]
magnesium atoms / 6.022 x
[tex] {10}^{23} [/tex]
atoms/mol = 0.208 moles magnesium
As a result, 1.25 x
[tex] {10}^{23} [/tex]
atoms of magnesium contain 0.208 moles of magnesium.
The number of particles (atoms, molecules, and ions) in one mole of a substance is represented by Avogadro's number, which is a fundamental constant in chemistry. It has a value of about 6.022 x
[tex] {10}^{23} [/tex]
particles per mole. The number was named after Italian scientist Amedeo Avogadro, who first proposed the concept in the early 19th century as a way to explain the relationship between the amount of a substance and its constituent particles.
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What mass of water in kg must evaporate in order for the person's body temperature to remain constant? use the enthalpy of vaporization of water at 298k is 44. 016 kj mol-1
The mass of water in kg must evaporate in order for the person's body temperature to remain constant is 0.0243 kg.
Internal energy, which emerges from the molecular state of motion of matter, is an energy form inherent in all systems. Internal energy is represented by the symbol U, and the unit of measurement is the joule (J).
Let mass of the body be x
We have,
enthalpy = 44.016 kj mol-1
Temperature be 298 K
As ideal gas,
Δ = 44.016 - x/18 x 8.314 x 10⁻³ x 298 K
40.66 = 44.016 - x/18
-3.356 x 10³/8.314 x 298 = x/18
-1.35 = x/18
x = 24.3 g
So the amount of water be 0.0243 kg.
Internal energy increases when temperature rises and states or phases transition from solid to liquid and liquid to gas. Planetary bodies can be viewed as hybrids of heat reservoirs and heat engines. Internal energy E is stored in the heat reservoirs, and heat engines transform some of this thermal energy into mechanical, electrical, and chemical energies.
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A table is titled Effect of Speed on Kinetic Energy. A blank graph is shown to the right.
A table shows the mass in kilograms, the speed in meters per second and the kinetic energy in Joules for four trials. The last column, titled Drag to Graph, displays a car icon. Trial 1: Mass is 2; Speed is 1; Kinetic Energy is 1. Trial 2: Mass is 2; Speed is 2; Kinetic Energy is 4. Trial 3: Mass is 2; Speed is 3; Kinetic Energy is 9. Trial 4: Mass is 2, Speed is 4; Kinetic Energy is 16. A blank graph is shown to the right. The vertical axis is titled Kinetic Energy, Joules. It is labeled from 0 to 20 in increments of two. The horizontal axis is titled Speed, meters per second. It is labeled from 0 to 5 in increments of one.
Car 1
Car 2
Car 5
Car 4
Based on the given information, we can plot the data points on the blank graph to see the effect of speed on kinetic energy:
Vertical axis: Kinetic Energy (Joules)
Horizontal axis: Speed (meters per second)
Define the term kinetic energy.
The energy an object has as a result of its motion is known as kinetic energy. It is a scalar quantity and is defined as one-half of the product of an object's mass and the square of its velocity. Mathematically, it can be represented as:
Kinetic Energy = 1/2 x mass x [tex]velocity^{2}[/tex]
where mass is the mass of the object in kilograms and velocity is the speed of the object in meters per second.
Kinetic energy is a form of mechanical energy and can be transferred between objects in collisions or other interactions. It is a fundamental concept in physics and is used to understand and describe the behavior of moving objects in various physical systems.
The data points are:
Trial 1: Mass=2, Speed=1, Kinetic Energy=1
Trial 2: Mass=2, Speed=2, Kinetic Energy=4
Trial 3: Mass=2, Speed=3, Kinetic Energy=9
Trial 4: Mass=2, Speed=4, Kinetic Energy=16
Therefore, The graph shows that as the speed increases, the kinetic energy also increases. The relationship between speed and kinetic energy is quadratic, which means that the kinetic energy increases with the square of the speed.
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If a gas mixture has 10.0 moles of N2 and 4.00 moles of O2 and a total pressure of 2.36 atm, what is the partial pressure of O2?
Answer: 0.25 atm
Explanation:
What is the pOH of a solution that has a [OH-] = 5.8 x 10^-9 *
A. 9.8
B. 5.8
C. 4.2
D. 8.2
6.84 is the pOH of a solution that has a [OH⁻] value 5.8 x 10⁻⁹. The correct option is option B among all the given options.
What is pOH?The concentration of hydroxide ions (OH-) is measured by pOH. It can be employed to express a solution's alkalinity.
Aqueous solutions containing pOH less than 7 at 25 degrees Celsius are alkaline, pOH larger than 7 are acidic, as well as pOH equal to 7 constitute neutral.
pOH = -log[ OH ]
pOH = -log[ 5.8 x 10⁻⁹ ]
= 5.84
Therefore, 6.84 is the pOH of a solution that has a [OH⁻] value 5.8 x 10⁻⁹. The correct option is option B among all the given options.
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A student prepares a solution by dissolving 20.0 g of aluminum chloride (AlCl3) in enough water to produce 500 mL of solution. What is the molarity of the solution? Question 18 options: 0.040 M 0.320 M 0.080 M 0.160 M
The Molarity of the solution is 0.040M and the correct option is option A.
What is Molarity?
Molarity, also called molar concentration, is used to measure the quantity of a solute dissolved in a volume of solvent using the formula-
Molarity = number of moles of solute ÷ volume of solution in liters
Molarity of a solution is measured in moles per liter and is denoted by M.
When 1 mole of a substance is dissolved in water and the solution is made up to 1L, a solution with a molarity of 1M is produced.
Given,
Mass of aluminium chloride = 20g
Volume of solution = 500 ml
Molarity = mass of solute ÷ volume of the solvent in L
= 20 ÷ 500
= 0.040 M
Therefore, the Molarity of the solution is 0.040M and the correct option is option A.
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Look at the positions of calcium, beryllium, and magnesium on the periodic table. Based on their locations, predict how many valence electrons these elements have and predict what the reactivity of these elements will generally be.
Beryllium, calcium, and mg are all known to be group 2 elements. Be's atomic number is 4, while those of magnesium and calcium are 12 and 20, respectively.They frequently produce an ion with a +2 charge as a result.
Do calcium and magnesium also react differently from top to bottom in terms of reactivity?Alkaline Since they rapidly give it up their two electrons of valence to reach a full outside energy level, resulting in the most stable configuration of electrons, earth metals are extremely reactive.From of the top to to bottom of the group, reactivity rises.
What connection exists between calcium and beryllium reactivity?the reason why beryllium is less reactive than calcium | Fandom.Although the two elements belong to the same group, calcium's valence electrons are located further from the nucleus.They are easily released because the nucleus does not hold them tightly.Higher reactivity is also a result of easily released electrons.
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You fill a rigid steel cylinder that has a volume of 20. 0 L with 10. Moles of nitrogen gas at 313 ºK. What is the final pressure in kPa in the cylinder?
Answer:
The quantity of nitrogen the cylinder contains is 4477.8 g
Explanation:
hope this helps u out:))
Answer:
Assuming ideal gas behavior, we can use the ideal gas law:
PV = nRT
where P is the pressure, V is the volume, n is the number of moles, R is the gas constant, and T is the temperature in Kelvin.
First, we need to convert the temperature from Celsius to Kelvin:
T = 313 ºK
The gas constant R is 8.31 J/(mol·K), but we need to use a value in units of kPa·L/(mol·K) for the pressure and volume units given:
R = 8.31 kPa·L/(mol·K)
Plugging in the given values, we have:
P × 20.0 L = 10.0 mol × 8.31 kPa·L/(mol·K) × 313 K
Solving for P, we get:
P = (10.0 mol × 8.31 kPa·L/(mol·K) × 313 K) / 20.0 L
P = 1293 kPa
Therefore, the final pressure in the cylinder is 1293 kPa.
Suppose that 22 mL of 0.1 M K2CrO4 reacts with 14.6 mL of AgNO3 completely. What mass of NaCl is needed to react completely with 35.2 mL of the same AgNO3 solution?
Answer in units of g.
According to the solving 0.0427 g of NaCl is needed to react completely with 35.2 mL of 0.1 M AgNO3.
What is a chemical reaction with an example?A chemical reaction is an event in which reactants chemically reacts and transform into products chemically. As an illustration, during respiration, oxygen is inhaled and combines with glucose to create carbon dioxide, water, and energy.
According to the given information:K₂CrO₄ + 2 AgNO₃ → 2 KNO₃ + Ag₂CrO₄
the moles of AgNO3 used in the reaction with K2CrO4 is:
n(AgNO3) = (14.6 mL) (0.1 mol/L)
= 1.46 × 10⁻³ mol
Since the same amount of AgNO3 is used in the reaction with NaCl, we can calculate the moles of NaCl needed to react completely with 35.2 mL of 0.1 M AgNO3:
n(NaCl) = n(AgNO3) / 2
= (1.46 × 10⁻³ mol) / 2
= 7.3 × 10⁻³ mol
To calculate the mass of NaCl needed, we can use its molar mass:
M(NaCl) = 58.44 g/mol
Mass of NaCl needed = n(NaCl) x M(NaCl)
= (7.3 × 10⁻⁴ mol) x (58.44 g/mol)
= 0.0427 g
0.0427 g of NaCl is needed to react completely with 35.2 mL of 0.1 M AgNO3.
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If we decrease the temperature to 200 K at constant pressure, what would the new volume be?
A. 6.67 L
B. 10 L
C. 13.3 L
D. 5 L
If we decrease the temperature to 200 K at constant pressure, 13.3 L would the new volume .
What is temperature?
Temperature is a unit used to represent how hot or cold something is. It can be stated using the Celsius or Fahrenheit scales, among others. Temperature shows which way heat energy will naturally flow, i.e., from a hotter (body with a higher temperature) to a colder (body with a lower temperature) (one at a lower temperature).
What is pressure?
As force applied per unit area, pressure is defined. P=FA, where F is the force operating perpendicular to the surface area A, gives it mathematical expression. The pascal (Pa), which equates to a newton per square metre (N/m 2), is the accepted unit of pressure.
Therefore, If we decrease the temperature to 200 K at constant pressure, 13.3 L would the new volume .
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HELP pls with this lab sheet
A balanced equation obey the law of conservation of mass. According to law of conservation of mass, mass can neither be created nor be destroyed.
What is a balanced equation?A balanced chemical equation is an equation in which the number of atoms of reactants and products on both sides of the equation are balanced. The coefficients are the numbers which are used to balance the chemical equation.
The decomposition of potassium chlorate is:
2KClO₃ (s) + heat → 2KCl (s) + 3O₂ (g)
Here the number of 'K', 'Cl' and 'O' atoms are equal on both sides of the equation.
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Theory of Plate Tectonics: Complete the sentence:
1. The theory of plate tectonics states that the
is broken into pieces called
slowly moving due to
It is believed that tectonic plates move as a result of convection in the asthenosphere and gravity.
What are Tectonic plates?According to the widely recognized scientific hypothesis known as plate tectonics, the Earth's lithosphere is made up of many sizable tectonic plates that have been steadily moving for nearly 3.4 billion years.
A tectonic plate, also known as a lithospheric plate, is a sizable slab of solid rock with an uneven shape that is typically made up of both continental and oceanic lithosphere. The Pacific and Antarctic Plates are among the largest plates, but they can range in size from a few hundred to thousands of kilometers broad.
Thus, it follows that convection in the asthenosphere and gravity are thought to be the causes of tectonic plate movement.
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What percent of magnesium bromide, MgBr2 is magnesium?
Answer:
percentage composition = 13.2%
Explanation:
percentage of magnesium in magnesium bromide can be found by molar mass of magnesium over molar mass of magnesium bromide.
Molar mass of elements can be found using a standard IUPAC Periodic Table.
M(Mg) = 24.31 g/mol
M(MgBr₂) = 24.31 + 79.90×2 = 184.11 g/mol
∴ percentage composition = 13.2%
(28) CCC Cause and Effect Young's modulus is a measure
of a solid material's stiffness. A highly ductile
material will typically have a very low modulus. The
table shows several different metals, their crystalline
structure, and their Young's modulus. Describe the
pattern you observe and explain the connection
between structure and stiffness.
From the table, it is very clear that as the crystallinity increases, its stiffness also increasing. The FCC structures are having less crystallinity and is more ductile than BCC structure.
What is ductility of a material ?Ductility of a material is the ability to make very thin elongated wires. Whereas, stiffness of a material is the resistance to any elongation or compression.
The more crystalline the material, more will be the stiffens. The material with higher Young's modulus (Y) are more crystalline and stiff. As Y decreases, stiffness decreases, the material becomes ductile.
Because the body-centered cubic (BCC) lattice is not tightly packed despite being cubic, the face-centered cubic (FCC) crystalline structure has greater ductility than the BCC.
Due to the fact that a hexagonal close-packed (HCP) lattice is densely packed but not cubic, HCP metals are less ductile than BCC and FCC metals.
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what are four characteristics that early geologists noticed while studying sedimentary rock layers
Early geologists identified four features while examining sedimentary rock layers: strata or layering, fossils, angular unconformities, and cross-bedding.
What are the 3 the primary types of sedimentary rocks?Rock fragments from other types of existing rocks or organic substance are used to create sedimentary rocks. Clastic, organic (biological), and chemical sedimentary rocks are the three distinct types of sedimentary rocks. Sandstone is a type of clast sedimentary rock, which is formed from fragments of other minerals.
Is granite a sedimentary rock?Igneous rock includes granite. Material is deposited, weathered, and other mechanisms that cause organic or mineral particles to settle down and collect result in the formation of sedimentary rock. All varieties of marble, as well as volcanic rocks like travertine and onyx, contain fossils.
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Which choice describes a way that composting benefits the soil?
keeps moisture levels low
makes nutrients more accessible to organisms
locks up carbon and nitrogen so that it can’t be released
maintains a moderate temperature within soils
keeps soils at a comfortable temperature. Composting helps to keep soil temperatures at a consistent level, which helps to optimize the growth of beneficial organisms and plants.
What is temperature?Temperature is a measure of the degree or intensity of heat or cold in a body or environment. Temperature is measured using a thermometer, which is an instrument that detects the temperature of an object or environment by measuring the intensity of certain physical properties such as thermal expansion of gas, electrical resistance or the velocity of sound. Temperature is typically measured in degrees Celsius (°C) or degrees Fahrenheit (°F). When the temperature of a body or environment is higher than usual, it is said to be hot; when it is lower than usual, it is said to be cold.
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Answer:
c. makes nutrients more accessible to organisms
Explanation:
i took the test
According to Bernoulli's Principle, what type of relationship do fluid velocity and pressure share?
Positive, because as the velocity of a fluid increases, so does the pressure.
Negative, because as the velocity of a fluid increases the pressure decreases.
Neutral, because velocity and pressure do not correlate in fluids.
The right response is "Negative, since pressure reduces as fluid velocity rises." The best choice is B.
What are two illustrations of the Bernoulli principle?As a vehicle goes quickly, it creates a low pressure region, which causes dust to be pushed along in it. As a swift train passes by us while we are in the platform, we are drawn toward the rail due to the low pressure created by the train's extreme speed.
What does the Bernoulli principle mean for children?According to Bernoulli's principle, an item experiences various pressures as air travels about it. Less pressure results from faster air. More pressure results from slower air.
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The Complete Question :
According to Bernoulli's Principle, what type of relationship do fluid velocity and pressure share?
A. Positive, because as the velocity of a fluid increases, so does the pressure.
B. Negative, because as the velocity of a fluid increases the pressure decreases.
C. Neutral, because velocity and pressure do not correlate in fluids.
why does the moon orbit earth in the same direction that earth orbits the sun?
Due to the gravitational force the moon orbit earth in the same direction that earth orbits the sun.
What is gravitational force ?
Newton's Law of Gravitation and the force of gravity. The force of attraction between any two bodies is known as gravity, or simply gravity. All objects in the cosmos are attracted to one another with some force, but most of the time this attraction is too faint to be noticed due to the extreme distance between the objects.
What is distance ?Distance is an object's overall movement, regardless of direction. Distance refers to the length of an object's real route as a whole. The displacement of an object between two points is defined as the straight line distance (shortest distance), measured from one position to the other.
Therefore, Due to the gravitational force the moon orbit earth in the same direction that earth orbits the sun.
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The following equation represents a laboratory preparation for oxygen gas: 2KClO3 (s) —------> 2KCl (s) + 3O2 (g)
If 4 moles of oxygen are produced how many moles of potassium chloride are produced?
If 4 moles of oxygen are produced, 2.66 moles of potassium chloride are produced in the given laboratory preparation.
What is mole concept?
Avogadro's number is the number of units in one mole of any substance and equals to 6.02214076 × 10²³. The units can be electrons, atoms, ions, or molecules.
No. of moles is defined as a particular no. of particles that we can calculate with the help of Avogadro’s number.
Given,
laboratory preparation for oxygen gas:
2KClO₃ (s) —------> 2KCl (s) + 3O₂ (g)
Moles of oxygen = 4 moles
When 3 moles of oxygen are produced 2 moles of potassium chloride are produced.
When 1 mole of oxygen are produced 2/3 moles of potassium chloride are produced.
Hence, 4 moles of oxygen are produced (2÷3)×4 = 2.66 moles of potassium chloride are produced.
Therefore, if 4 moles of oxygen are produced, 2.66 moles of potassium chloride are produced in the given laboratory preparation.
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What type of change is making popcorn and why?
Answer:The answer is physical change.
Explanation: The reason for this is because when popcorn is in its original state/form it is inside of a tear like shell and then when it changes it is an odd shaped peice if popped corn. Simple way to know is its physicle apperance changes.
Reptiles do not have the ability to create their own heat, and instead, sit in the sun for long periods of time in the mornings to warm up. Mammals and birds, on the other hand, have the ability to create their own heat. Where do mammals and birds get the energy for this heat?
Explanation:
Mammals and birds have a unique metabolic process that allows them to generate their own body heat, known as endothermy or warm-bloodedness. This means that they can regulate their body temperature internally, regardless of the external temperature.
The process of generating heat requires a lot of energy, which is primarily produced through the breakdown of nutrients, such as glucose and fatty acids, obtained from food. The mitochondria, which are present in almost all cells of the body, play a critical role in this process. They use oxygen to convert these nutrients into energy in the form of ATP (adenosine triphosphate), which powers the metabolic processes necessary for maintaining body temperature.
Mammals and birds also have specialized tissues that help generate and conserve heat, such as brown adipose tissue and feathers. These tissues contain a high density of mitochondria, which allows for more efficient energy production and heat generation.
Overall, the ability of mammals and birds to generate their own heat is a key adaptation that enables them to thrive in a wide range of environments, from the icy poles to the scorching deserts.
The lattice structure of ionic solid consists of positive ions and negative ions held together by ionic bonds. Describe the lattice structure of a molecular solid Ionic compound?
The lattice structure of a molecular solid Ionic compound are mentioned below.
What is lattice structure?
An asymmetrical three-dimensional structural arrangement of ions, atoms, and molecules to create a unit cell is called a lattice or a crystal lattice. The kind of crystal lattice is determined by a unit cell's substantial and distinctive geometrical shape. Every ion, atom, or molecule in a crystal structure's unit cell represents a point in a three-dimensional space.
What is ionic compound ?
An ion with a positive charge is a cation, whereas one with a negative charge is an anion.
Therefore, The lattice structure of a molecular solid Ionic compound are mentioned above.
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find the complete mole ratio of:
2IrCl3(aq) + 3NaOH(aq) → Ir2O3(s) + 3HCl(aq) + 3NaCl(aq)
The balanced chemical equation for the given reaction is: 2IrCl3(aq) + 3NaOH(aq) → Ir2O3(s) + 3HCl(aq) + 3NaCl(aq)
How is the mole to mole ratio calculated?Use the atomic masses to translate each element's mass into moles. By dividing the total number of moles by the smallest number of moles, you may determine the ratio or the number of moles of each element.
The mole ratio of the reactants and products are represented by the coefficients in a balanced chemical equation. Hence, the total mole ratio for the indicated reaction is:
2 moles of IrCl3 : 3 moles of NaOH : 1 mole of Ir2O3 : 3 moles of HCl : 3 moles of NaCl
This can also be expressed in simpler terms as:
2:3:1:3:3
As a result, 3 moles of NaOH are needed to completely react with every 2 moles of IrCl3. 3 moles of HCl, 3 moles of NaCl, and 1 mole of Ir2O3 are the end products.
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In what ways are the buffering abilities of carbon sinks being reduced by climate change?
There is a different way to contribute to the CO₂ budget balance besides reducing or turning off this carbon, which would help reduce the amount of greenhouse gases in the atmosphere. However, that depends on the precise amount of carbon that the oceans, trees, and plants are absorbing.
What are the buffering abilities of carbon sinks?The carbon sinks in the cycle have so far had plenty of extra capacity. In fact, since we began burning fossil fuels for energy after the Industrial revolution, about half of the carbon dioxide emissions released into the atmosphere have naturally cycled away again.
A quarter of this carbon dioxide dissolves in water, so the oceans have absorbed it. As they used sunlight to turn it into glucose and oxygen during photosynthesis, plants use up an additional quarter.
The airborne carbon that was captured now exists as trees or is buried in peat, grassland, and soils. It is submerged in the water, dissolving in the deep ocean, or drifting as sediment on the seafloor. In other words, the planet has improved.
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What gas in the air is used by plants to make their own food?
Nitrogen
Water vapor
Carbon dioxide
Oxygen
Answer:
Carbon dioxide
Explanation:
Carbon dioxide gas is used by plants for the preparation of food materials. During this food preparation process, plants take up carbon dioxide from the air and give up oxygen.
Suppose 239. 7 mg of PbCl2 was added to 15. 0 mL of water in a flask, and the solution was allowed to reach equilibrium at 20. 0 oC. Some solute remained at the bottom of the flask after equilibrium, and the solution was filtered to collect the remaining PbCl2, which had a mass of 83. 6 mg. What is the solubility of PbCl2 (in g/L)?
The solubility of PbCl2 in water (H2O) at 20.0 °C (temperature) is 10.407 g/L.
First, we need to calculate how much PbCl2 actually dissolved in the water. The amount of PbCl2 that did dissolve is the difference between the initial amount of PbCl2 added and the amount of PbCl2 that remained after filtering:
Initial amount of PbCl2 = 239.7 mg
Amount of PbCl2 remaining after filtering = 83.6 mg
Amount of PbCl2 that dissolved = 239.7 mg - 83.6 mg = 156.1 mg
Next, we can use the density of water at 20.0 °C, which is 0.9982 g/mL, to calculate the volume of the solution:
Volume of solution = 15.0 mL = 0.015 L
Finally, we can calculate the solubility of PbCl2 in g/L:
Solubility of PbCl2 = amount of PbCl2 that dissolved / volume of solution
Solubility of PbCl2 = 156.1 mg / 0.015 L
Solubility of PbCl2 = 10406.7 mg/L
Solubility of PbCl2 = 10.407 g/L
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How many coordinate covalent bonds, if any, does the ion AT3 have? A has 5
valence electrons, and T has 6 valence electrons. Both A and T cannot exceed the
octet. Explain your answer. Be sure to consider the Lewis structure with the proper
formal charges to determine your answer.
The ion AT3 has a total of 22 valence electrons: 5 from A and 6 from T, multiplied by 3 since there are three T atoms.
What is ion AT3?Generally, To determine the number of coordinate covalent bonds, we need to draw the Lewis structure and check the formal charges.
If A donates three electrons to each T atom, it will have a formal charge of +2 (5 valence electrons - 3 donated electrons - 0 non-bonding electrons). Each T atom will have a formal charge of -1 (6 valence electrons - 3 donated electrons - 2 non-bonding electrons).
The Lewis structure for AT3 will have single bonds between A and each T atom, and each T atom will have a lone pair of electrons.
The total number of electrons used in the bonds is 6 (2 from each bond). The remaining 16 electrons will be distributed among the three T atoms as lone pairs.
Therefore, there are no coordinate covalent bonds in the ion AT3.
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If I have 0.4 moles of a gas at a temperature of 17 C and a volume of 7.0 L, what is the
pressure of the gas?
Answer:
4.20 atm
Explanation:
PV = nRT
convert the temperature from Celsius to Kelvin:
T(K) = T(C) + 273.15
T(K) = 17 + 273.15
T(K) = 290.15 K
plug in the values:
n = 0.4 moles
V = 7.0 L
R = 0.08206 L atm / (mol K) (Gas constant)
T = 290.15 K
PV = nRT
P = nRT / V
P = (0.4 moles) x (0.08206 L atm / (mol K)) x (290.15 K) / (7.0 L)
P = 4.20 atm (rounded to two significant figures)
Therefore, the pressure of the gas is 4.20 atm.
Which of the following units would you use to describe the mass of baking soda needed for a reaction?
Gram
Meter
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The mass of baking soda required for a reaction is measured in grammes.
How are masses expressed in grammes?The metric system uses the gramme and kilogramme as its two primary units for measuring mass. Using the common metric prefixes, we can derive the remaining metric units from the gramme. A paper clip weighs roughly one gramme.
How do you use a scale to measure mass in grammes?Using balancing scales is one method of determining an object's mass. Place the item you want to weigh on one side of a balance scale, then add gramme masses to the opposite side until the scales are level. Typically, masses for weighing come in 1 g and 5 g units.
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In the SciShow video above, Hank Green says "Science isn't good or bad. It's only true," then later says "The science doesn't care. It's up to us to decide what we do with it." Do you agree with these statements? Why or why not? Use specific examples to support your answer.
Is the world better off with or without Fritz Haber? Explain your stance. How should we think about the total impact of someone's life?
Science could be used either for good or for bad depending on the user. This can be observed from the life of Fritz Haber described below.
Is the world better off with or without Fritz Haber?Fritz Haber was a German chemist who made significant contributions to the fields of chemistry and agriculture, and he is known for developing the process of synthesizing ammonia, which is used in fertilizer production. However, he is also known for his involvement in the development and use of chemical weapons during World War I.
Overall, it is difficult to make a definitive statement about whether the world is better off with or without Fritz Haber. His contributions to science and agriculture have been important, but the development and use of chemical weapons are atrocities that cannot be ignored. It is important to acknowledge and learn from both aspects of his legacy.
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