Answer:
Olivia ?? depends
Explanation:
I have the same question but if yours is different from mine than that's not the answer. Janema Olivia Michael
Trial #1 46.1 g 50.1 g 53.1 g
Trial #2 47.8 g 50.2 g 53.0 g
Trial #3 53.1 g 50.2 g 53.2 g This is what my chart looks like and you can see Olivia's is the most consistent :)
What is enthalpy change and volume change of mixing of two components forming an ideal solution?
Enthalpy change of mixing refers to the energy change during the formation of an ideal solution. Volume change of mixing relates to the change in volume resulting from the mixing process.
What is enthalpy ?Enthalpy is a thermodynamic property that represents the total heat content of a system at constant pressure. It encompasses both the internal energy of the system and the work done by or on the system. Enthalpy is denoted by the symbol "H" and is typically measured in units of energy, such as joules (J) or calories (cal). Enthalpy accounts for the energy transferred as heat during chemical reactions or phase changes. Enthalpy is crucial in studying and analyzing various phenomena, including chemical reactions, phase transitions, and energy transfers in thermodynamic systems.
Volume change of mixing, on the other hand, relates to the change in volume resulting from the mixing process. It accounts for the variation in molecular interactions and the resulting effects on the overall volume of the mixture compared to the volumes of the individual components.
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2.)Which action forms a different chemical substance?
A. crushing a rock
B. burning a piece of wood
C.mixing salt and pepper
D.melting an ice cube
Answer:
B. burning a piece of wood
Explanation:
The Chemical Would Be The Air Coming From The Wood While Burning It
Tell Me If Im Correct
A liquid has a density of 0.70g/ml. Find the mass of the liquid which can be put
into a beaker holding 130mL.
Answer:
The answer is
91 gExplanation:
The mass of a substance when given the density and volume can be found by using the formula
mass = Density × volumeFrom the question
density of liquid = 0.70 g/mL
volume = 130 mL
The mass is
mass = 0.7 × 130
We have the final answer as
91 gHope this helps you
The molecular geometry (shape) of the H3O+ ion is
O octahedral
O trigonal planar
O trigonal pyramidal
O bent
O tetrahedralPrevious question
Option C; The molecular geometry (shape) of the H3O+ ion is trigonal pyramidal.
A cation The hydronium ion is also known as H3O+. If we look at the nomenclature for the hydronium ion, we can see that it can also be referred to as oxonium in the IUPAC nomenclature.
The name hydronium must be used to specifically identify hydronium ions because "oxyonium" is a broad term for all trivalent oxygen cations.
19.02 g/mol is the molar mass of the hydronium ion.
The three hydrogen atoms in H3O+ form a triangle at the three corners of oxygen, and one single pair of electrons on oxygen gives H3O+ its pyramidal shape.
The hydronium ion has the chemical formula H3O+. Any time an acid dissolves in water, the hydronium ion is created.
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The impulse experienced by a body is equivalent to its change in: a. velocity b. kinetic energy c. momentum. d. None of the above choices are valid. In an isolated system of particles the momentum of the system is conserved regardless of th number of collisions that occur with in the system. a. true b. false uouo sea s a. true b. false . In an elastic collision the kinetic energy of the eellision before and after the collision will no change
The impulse experienced by a body is equivalent to its change in momentum. Therefore, the valid answer for the given question is option C.
The impulse experienced by an object can be defined as the change in momentum of the object that occurs when an unbalanced force acts on it.In an isolated system of particles, the momentum of the system is conserved regardless of the number of collisions that occur within the system. Hence, the valid answer for this question is option A, true.In an elastic collision, the kinetic energy of the collision before and after the collision will not change.
Therefore, the valid answer for this question is option A, true. In an elastic collision, both the momentum and kinetic energy of the colliding particles are conserved. The total kinetic energy of the colliding particles before the collision will be equal to the total kinetic energy of the colliding particles after the collision.
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The homogeneity of the chloride level in a water sample from a lake was tested by analyzing portions drawn from the top and from near the bottom of the lake, with the following results
Top (ppm Cl)
Bottom (ppm Cl)
26.30
26.22
26.43
26.32
26.28
26.20
26.19
26.11
26.49
26.42
Apply the t-test at the 95% confidence level to determine if the chloride level from the top of the lake is different from that at the bottom.
Now use the paired t-test and determine whether there is a significant difference between the top and bottom values at the 95% confidence level.
Why is a different conclusion drawn from using the paired t- test than from just pooling the data and using the normal t- test for differences in means?
The paired t-test yields a different conclusion than the normal t-test because it accounts for the paired nature of the data, comparing the measurements taken at the top and bottom of the lake separately.
In this scenario, the paired t-test is appropriate because it analyzes the data as pairs, considering the chloride levels measured at the top and bottom of the lake for each sample. By comparing the differences within each pair, the paired t-test determines whether there is a significant difference between the chloride levels at the top and bottom of the lake.
Using the paired t-test, the differences between the paired observations are calculated, and the null hypothesis assumes that the mean difference is zero (no significant difference between the top and bottom chloride levels). The test then determines whether the observed differences are statistically significant at a chosen confidence level, in this case, 95%.
The normal t-test for differences in means, on the other hand, would treat the top and bottom chloride levels as separate and unrelated groups, disregarding their paired nature. By pooling the data and conducting a standard t-test, the analysis assumes that the two sets of measurements are independent, which may not be appropriate in this case. This can lead to a different conclusion compared to the paired t-test.
The different conclusion drawn from using the paired t-test compared to pooling the data and using the normal t-test is due to the consideration of the paired nature of the measurements. The paired t-test takes into account the potential correlation or connection between the measurements taken at the same location (top and bottom of the lake) and assesses the differences within each pair.
Pooling the data and using the normal t-test treats the measurements as independent, disregarding the pairing. This can result in a loss of valuable information and may lead to an inaccurate conclusion. The paired t-test is more appropriate when dealing with dependent or related measurements, ensuring a more accurate assessment of the differences between the top and bottom chloride levels.
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A.2. Suppose the original sample is unknowingly contaminated with a second anhydrous salt. Will the reported percent of water in the hydrated salt be too high, too low, or unaffected? Explain.
If the original sample is unknowingly contaminated with a second anhydrous salt, the reported percent of water in the hydrated salt will be too high.
This is because the weight of the anhydrous salt will be added to the weight of the hydrated salt during the calculation of the percent of water, leading to an overestimate of the amount of water present.
For example, if the sample contains 10 grams of hydrated salt and 2 grams of anhydrous salt, the total weight will be 12 grams. If the amount of water present in the hydrated salt is calculated as 3 grams (30% of the total weight), it will be an overestimate since the weight of the anhydrous salt was also included in the total weight.
Therefore, it is important to ensure that the sample is not contaminated before analyzing the percentage of water in a hydrated salt.
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Which element would be a good conductor of heat and electricity?
Calcium
Oxygen
Carbon
Bromine
Answer:
Transitional metals are good conductors of both heat and electricity.
But since there aren't any. It could be Calcium.
Many industrial companies and car manufacturers design solutions to reduce pollution. Even so, chemicals still enter the atmosphere. Some of these pollutants combine with water in the air to form acid rain.
Which property of acids would cause acid rain to damage buildings over time?
A. Acids taste sour.
B. Acids react with metals.
C. Acids react with limestone.
D. Acids react with indicators.
I THINK THE ANSWER IS (C)
Part 2 of the question
What might be done to prevent acid rain damage to objects from metal and carbonate, such as limestone? Identify a metal object that could be damaged by acid rain. Then, describe what could be done to prevent acid rain damage to it. Do the same thing for an object that contains carbonate
The property of acids which would cause acid rain to damage buildings over time is:
Acids react with limestone.
The correct answer choice is option c.
This simply means that acids has this property which corrodes the surface they come in contact with especially stones.
One of those things which can be done to prevent acid rain damage to objects from metal and carbonate, such as limestone is coating the surface of the metal.However, this can be done by coating the surface of metals, or carbonate by coating it with other metals. By so doing, this can prevent acid rain damage to it.
That being said, by default, concentrated acids are highly corrosive.
Coating surfaces of metals can prevent acid rain damage to it
What is an acid?This refers to a substance which when dissolved in water, it produces hydrogen ion as the only positive ion in the solution.
So therefore, the property of acids which would cause acid rain to damage buildings over time is acids react with limestone.
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Using the balanced equation
2 C,H, (9) + 5 0, (g) - > 4 CO, (g) + 2
H,O(g)
How many moles of water (H,O) are
produced when 25.0 grams of CH, are
consumed?
When 25.0 grammes of Methane are consumed, 2.3385 moles of water are created.
Does one mole weigh one gramme?The ratio between the atomic mass unit and gramme mass unit sizes affects the number in a mole, or Avogadro's number. One mole of hydrogen atoms weighs around one gramme, compared to the mass of one hydrogen atom, which is roughly one unit.
2 CH3CH3(g) + 5 O₂(g) → 4 CO₂(g) + 6 H₂O(g)
The molar mass of Methane is 16.04 g/mol, so 25.0 grams of CH₄ is equal to:
25.0 g / 16.04 g/mol = 1.559 mol CH₄
From the balanced equation, the molar ratio of CH₄ to Water is 2:3. Therefore, for every 2 moles of Methane consumed, 3 moles of Water are produced.
So, for 1.559 mol of CH₄ consumed, the amount of Water produced would be:
3/2 x 1.559 mol = 2.3385 mol
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water is a compound with a chemical formula h2o. compare a physical change involving water with a chemical change involving water. how do the changes differ?
Answer:
Chemical would be water splitting into just hydrogen and oxygen. Where as a physical change would be if it turned to ice.
Explanation:
Which gas would be least Ideal at the same conditions of
temperature and pressure?
a He(9)
b CO(g)
c O2(9)
d H20(9)
On the bottom beam of the triple beam balance, each small division stands for
A.) one centimeter
B.) one milliliter
C.) one gram
D.) one-tenth of a gram
Answer:
Hello There!!
Explanation:
I believe the answer is D.) one-tenth of a gram.
hope this helps,have a great day!!
~Pinky~
\(\huge{\textbf{\textsf{{\color{navy}{An}}{\purple{sw}}{\pink{er}} {\color{pink}{:}}}}}\)
D.) one-tenth of a gram
Thanks.Hope it helps.Night visin cameras are sensitive to energies around 2.21 x 10-19 J. What wavelength of electromagnetic radiation do they use?
Answer:
8.99×10^-7m
Explanation:
The wavelength can be calculated using the expression below
E=hcλ
Where E= energy= 2.21 x 10^-19 J.
C= speed of light= 3x10^8 m/s
h= planks constant= 6.626 × 10^-34 m2 kg / s
E=hcλ
λ= E/(hc)
Substitute for the values
λ=( 2.21 x 10^-19 )/(6.626 × 10^-34 × 3x10^8 )
= 8.99×10^-7m
Answer:
Look at the explanation this one is hard
Explanation:
show your work:
E = hc/ λ
E λ = hc
λ = hc/E
λ = 6.626 x 10^-34 x 3 x 10^8 / 2.21 x 10^-19
=
8.994 x 10-7 m or 899.4 nm
800nm – 3mm is the range of wavelengths for infrared waves.
Night vision cameras use infrared waves.
Predict what color a white shirt would appear to be if the light reflected from the shirt passed through a red filter and then through a green filter.
Answer: brown
Explanation:
because red+green=brown
Students are to imagine that they are leading a one-week expedition to the Moon’s South Pole. In the essay, students will need to describe to NASA what (and who) they would bring to help make their expedition a success.
Answer:
On Sept. 15, 2020, NASA, in partnership with Future Engineers, launched the Artemis Moon Pod Essay Contest. The contest, which is open to all (public, private, and home school) students in grades K-12, asks participants to imagine they are leading a one-week expedition to the Moon’s South Pole. In the essay, students will need to describe to NASA what (and who) they would bring to help make their expedition a success.
The Moon Pod Essay Contest is presented in support of NASA’s Artemis program. The student challenge is part of NASA’s efforts to engage the public in its missions to the Moon and Mars. NASA is returning to the Moon for scientific discovery, economic benefits, and inspiration for a new generation. Working with its partners throughout the Artemis program, the agency will fine-tune precision landing technologies and develop new mobility capabilities that allow robots and crew to travel greater distances and explore new regions of the Moon.
Explanation:
Answer:
I would bring some warm clothes to keep me warm through the night because South Pole is cold. I would also bring blankets and sticks to make a fire. I would bring my bestfriend to keep me company.
Explanation:
a compound has the formula al2x3. which one of the following could be x?
A. P
B. S
C. H
D. Cl
Based on the given compound formula Al2X3, the most likely element for X is: D. Cl. The compound with the formula Al2X3 suggests that there are two aluminum atoms and three atoms of a particular element represented by "X".
To determine which element "X" could be, we need to consider the valency of aluminum and the other elements. Aluminum has a valency of +3, which means it can bond with three other atoms to complete its valence shell. Among the given options, sulfur (S) and chlorine (Cl) have a valency of -2, while phosphorus (P) and hydrogen (H) have a valency of -3 and +1, respectively.
Therefore, the correct answer would be D. Cl, as it can form a compound with Al in the ratio of 2:3 by gaining three electrons to attain a noble gas configuration. The compound would be Al2Cl3, which is aluminum chloride, a well-known and stable compound. The other options (A. P, B. S, C. H) do not form stable compounds with aluminum in a 2:3 ratio.
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For the following equations which define the behaviour of the technology level:
In At = A + gt +At
At = rhoAA~t−1+ϵA,t,−1
a) Express lnA1, lnA2, and lnA3 in terms of lnA0, εA,1, εA,2, and εA,3.
b) Calculate the expected values of lnA1, lnA2 and lnA3 taking as constants , lnA0, rhoA and g.
To express lnA1, lnA2, and lnA3 in terms of lnA0, εA,1, εA,2, and εA,3, we can use the given equations: From the equation At = A + gt + At, we can rewrite it as At - gt = A + At. Taking the natural logarithm (ln) of both sides, we have ln(At - gt) = ln(A + At).
Similarly, from the equation At = rhoAA~t−1 + ϵA,t,−1, we can rewrite it as At - rhoAA~t−1 = ϵA,t,−1. Taking the natural logarithm (ln) of both sides, we have ln(At - rhoAA~t−1) = ln(ϵA,t,−1). Now, let's express lnA1, lnA2, and lnA3 in terms of ln A0, εA,1, εA,2, and εA,3. Expressing lnA1:
- From equation 1, we have ln(A1 - g1t) = ln(A0 + A1).
Rearranging the equation, we get ln(A1 - g1t) - ln(A1) = ln(A0).
- From equation 2, we have ln(A1 - rhoAA~1−1) = ln(εA,1).
Rearranging the equation, we get ln(A1 - rhoAA~1−1) - ln(A1) = ln(εA,1).
Therefore, lnA1 = ln(A0) + ln(εA,1).
Calculating the expected values of lnA1, lnA2, and lnA3: - Taking the expected value (E) of equation 1, we have E[ln(A1 - g1t)] = E[ln(A0 + A1)]. Since g1t is constant, we can write it as E[ln(A1)] - g1t = ln(A0 + E[A1]).
Rearranging the equation, we get E[ln(A1)] = ln(A0 + E[A1]) + g1t.
- Taking the expected value (E) of equation 2, we have E[ln(A1 - rhoAA~1−1)] = E[ln(εA,1)]. Since rhoAA~1−1 is constant, we can write it as E[ln(A1)] - rhoAE[A~1−1] = ln(εA,1).
Rearranging the equation, we get E[ln(A1)] = ln(εA,1) + rhoAE[A~1−1].
Therefore, the expected value of lnA1 is given by E[lnA1] = ln(A0 + E[A1]) + g1t = ln(εA,1) + rhoAE[A~1−1]. Similarly, we can calculate the expected values of lnA2 and lnA3 using the corresponding equations and constants.
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Which soil develops in the wettest climate?
Answer:
Prairie
Explanation:
because it grows in the same type of climate, its amount of humus. sorry if its wrong I am not good with chem but i hope its right :)
For a reversible exothermic reaction, what is the effect of increasing temperature on the equilibrium constant (Keq) and on the forward rate constant (kf)?a. Keq and kf both increaseb. Keq and kf both decreasec. Keq increases and kf decreasesd. Keq decreases and kf increases
For a reversible exothermic reaction, the effect of increasing temperature on the equilibrium constant (Keq) and on the forward rate constant (kf) is Keq decreases and kf increases.
In an exothermic reaction, heat is released as a product. According to Le Chatelier's principle, increasing the temperature causes the equilibrium to shift toward the endothermic (reverse) direction to absorb the added heat. Consequently, the equilibrium constant (Keq) decreases. However, increasing temperature generally speeds up reactions, resulting in an increased forward rate constant (kf).
When temperature increases for a reversible exothermic reaction, the equilibrium constant (Keq) decreases, while the forward rate constant (kf) increases.
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Which of the following can result in deviations from Beer\'s law when the path length is constant? Solute concentrations less than 0.01 M Stray light reaching the detector The absorbing species undergoes dissociation or association The sample is homogeneous The use of polychromatic radiation
The option that can lead to deviations from Beer's law at constant path length is option A.
Using monochromatic radiation All radiation that was not absorbed by his sample when stray light reaches the detector is transmitted to the detector.
All of the above factors can lead to deviations from Beer's Law if the path length is constant. Optical pathlength refers to the distance that light travels through a sample and is usually kept constant in spectrophotometric experiments in order to accurately measure the sample's absorbance.
Therefore, unless monochromatic radiation is used, the absorbance of the sample may not accurately reflect the concentration of the solute, as different wavelengths of light may be absorbed differently.
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Use the change of base rule to find the logarithm to four decimal places. log 143.2 O 0.2213 O 4.5186 2.2593 O
0.4771
Using the change of base rule to find the logarithm to four decimal places. the correct answer is 11.4235.
To find the logarithm of 143.2 using the change of base rule, we can choose any base we prefer. Let's use base 10 and natural logarithm (base e) for this calculation.
First, we'll use the change of base formula, which states that log(base b) x = log(base c) x / log(base c) b. In this case, we'll calculate log(base 10) 143.2.
We'll use the natural logarithm (ln) as our intermediary step. The natural logarithm of 143.2 can be calculated as ln(143.2).
Using a calculator, we find that ln(143.2) is approximately 4.9628.
Next, we need to calculate log(base 10) e, which is the logarithm of e with base 10. Using a calculator, we find log(base 10) e is approximately 0.4343.
Finally, we apply the change of base formula:
log(base 10) 143.2 ≈ ln(143.2) / log(base 10) e
≈ 4.9628 / 0.4343
≈ 11.4235
Rounding to four decimal places, the logarithm of 143.2 using base 10 is approximately 11.4235.
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At what level of organization in an ecosystem is an individual plant or animal?
Question 1 options:
Population
Organism
Community
Ecosystem
The level of organization in an ecosystem is an individual plant or animal population. The correct option is A.
What is ecosystem organization?Ecosystem organization is the organization of all biotic and abiotic things present in an ecosystem. The ecosystem from smaller to largest is an organism, population, community, and ecosystem.
Individuals make up a population, populations make up a species, numerous species and their interactions make up a community, and when you include abiotic elements, multiple species, and their interactions' make up ecosystems. This is the ecological hierarchy.
Therefore, the correct option is A. Population
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Kim dissolves 70.13 g of solid sodium chloride (NaCl) in enough distilled water to make 400 mL of stock solution. What volumes of stock solution and distilled water (DI) are needed to make a 150 mL solution of 1.2 M NaCl?
This problem is providing us with the mass of solid sodium chloride and the volume of water it was dissolved in. Thus, after diluting it, the volume of the stock solution was required and found to be 60. mL according to:
Diluted solutionsIn chemistry, when we are given a stock solution with specified volume and concentration, one is able to dilute it in order to use it for a specific purpose. This, by holding the number of moles constant, one can write:
\(C_1V_1=C_2V_2\)
Where the subscript 1 stands for the stock solution and 2 for the diluted one. Thus, one first calculate the initial concentration with the mass and volume:
\(M=\frac{70.13g/(58.44 g/mol)}{0.400L}=3.00M\)
Next, we solve for the volume of the stock solution, V1, as follows:
\(V_1=\frac{C_2V_2}{C_1}\)
Finally, we plug in the given data to obtain the result:
\(V_1=\frac{1.2M*150mL}{3.00M}\\ \\V_1=60.mL\)
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calculate the maximum mass of ethanol that could be obtained from 30.0g of glucose
Answer:
15.3g
Explanation:
C6H12O6 → 2C2H5OH + 2CO2
1 mol C6H12O6 = 180g
1 mol CH3-CH2-OH = 46g
From 180g glucose ethanol can get = 92g
30g glucose ethanol gives us = (92*30)/180 = 15.33g
a sample of calcium bromide contains 20% calcium and 80% bromine by mass. what is the empirical formula of the compound formed?
A sample of calcium bromide contains 20% calcium and 80% bromine by mass. The empirical formula of the compound formed is CaBr2
Given:
A substance with the chemical formula 20% Ca and 80% Br.
In search of:
When the compound's molecular weight is 200.
Let's say that the mixture formed is 100.
Let's search for the mole of Ca and Br individually now.
Ca mole = 20/40 = half
"Mole of Br" = "80/80"
CaBr2 is the result of the 1:2 ratio between Ca and Br.
So, the empirical formula is CaBr2.
An empirical formula is a chemical formula for a compound that only specifies the ratios of the elements present in the molecule and not the exact number or arrangement of atoms. This would be the element to whole number ratio of the lowest valued compound.
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A heavy box does not move when you push on it because of ________________ friction.
Answer:
Static
Explanation:
A heavy box does not move when you push it because of the weight of the box and frictional force acting due to the roughness between the contact surfaces are preventing the box to move further.
In other words, the frictional force balances the force that we apply. So, there is no net movement of this box. It acts in the direction opposite to the force we apply.
What is the correct order for the development of the atomic model
Answer: I think it's A. C-A-D-B
Explanation:
John Dalton's theory was publicized in 1803
J.J Thomson's theory was publicized in 1904
Ernest Rutherford's theory was publicized in 1911
And Neil Bohr's was publicized in 1926
A mixture of three gases A, B, and C have a total pressure of 8.15 atm. The partial pressure of gas A is 2.70 atm. The partial pressure of B is 2.09 atm. What is the partial pressure of gas C?
a
2.45 atm
b
5.67 atm
c
1.35 atm
d
3.36 atm
Answer:
for this question i think the answer is 1.35 atm
How long does it take an object to travel 50m at a rate of 8 m/s?
Answer:
6.25s
Explanation:
time = distance / speed
time = 50 / 8
time = 6.25s