Waters density is 1 g/cm^3. Glass has a density of 2.8 g/cm^3. Will glass float in water?


YES, it will float because its density is greater than the density of water/

This question cannot be answered because density does not determine buoyancy

NO, it will not float because its density is greater than the density of water

Answers

Answer 1

Explanation:

It will not float on water

Substances with their densities less than that of water usually float on it and those with their densities greater than that of water will sink into it.

From the question the density of glass is 2.8 g/cm³ and this is greater than the density of water which is 1 g/cm³. Therefore glass will not float on water.

Hope this helps you


Related Questions

please help urgent!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
How can you safely turn on and off an electromagnet on and off?​

Answers

Turn off the electromagnetic part

how many moles are in 2.91 × 10²² atoms of He?​

Answers

Answer:

0.048 moles

Explanation:

To find the number of moles in a substance given it's number of entities we use the formula

[tex]n = \frac{N}{L} \\[/tex]

where n is the number of moles

N is the number of entities

L is the Avogadro's constant which is

6.02 × 10²³ entities

From the question we have

[tex]n = \frac{2.91 \times {10}^{22} }{6.02 \times {10}^{23} } \\ = 0.04833887...[/tex]

We have the final answer as

0.048 moles

Hope this helps you

What kind of energy is required for photosynthesis to occur?


energy stored in chemical bonds


energy from nutrients in the ground


thermal energy


solar energyy

Answers

Answer:

Explanation:

Solar energy

Your answer  is 100% Solar Energy,

The complex [FeSCN]2+ has an absorptivity of 6.14×10−2 L/(mg⋅cm) at a wavelength of 580 nm. The transmittance of a solution sample was measured in a 1.00 cm cell, and the percent transmittance %T was 53.9%. Calculate the concentration of the solution in ppm.

Answers

Answer:

4.36 ppm

Explanation:

First we convert percent transmittance to absorbance:

A = 2 - log(%T)A = 0.268

Then we calculate the concentration of the solution, using Lambert-Beer's equation:

A = ε*l*C

It is usually used with molar concentrations but given that the given absortivity is in ppm terms and the answer is also in ppm, we can simply use the given value.

0.268 = 6.14x10⁻²L·ppm⁻¹ * 1.00 cm * CC = 4.36 ppm

The concentration of the solution is 4.36 ppm when the percent transmittance measured in a 1.00 cm cell is 53.9%, the absorptivity is 6.14x10⁻² L/(mg*cm), and the wavelength is 580 nm.        

 

We can calculate the concentration of the solution with the Beer-Lambert equation:  

[tex] A= \epsilon Cl [/tex]   (1)  

Where:

A: is the absorbanceC: is the concentration =?l: is the length of the optical path = 1.00 cm   ε: is the absorption coefficient = 6.14x10⁻² L/(mg*cm)  

With the transmittance, we can find the absorbance as follows:

[tex] A = -log T [/tex]  

Where T is the transmittance = 53.9% = 0.539

So, the absorbance is:

[tex] A = -log T = -log(0.539) = 0.268 [/tex]

Finally, by solving equation (1) for C, we have:

[tex] C = \frac{A}{\epsilon l} = \frac{0.268}{6.14 \cdot 10^{-2} L/(mg*cm)*1.00 cm} = 4.36 mg/L [/tex]

Therefore, the concentration of the solution is 4.36 ppm.

You can find more about absorbance and transmittance here:

brainly.com/question/14919298brainly.com/question/6167291

I hope it helps you!

A sample of an ideal gas at 1.00 atm and a volume of 1.98 L was placed in a weighted balloon and dropped into the ocean. As the sample descended, the water pressure compressed the balloon and reduced its volume. When the pressure had increased to 55.0 atm, what was the volume of the sample? Assume that the temperature was held constant.

Answers

Answer:

Final Volume = 0.036 L

Explanation:

Initial Pressure P1 = 1 atm

Initial Volume V1 = 1.98L

Final Pressure T1 = 55.0 atm

Final Volume V2 = ?

Temperature was held constant

The formulae relating these variables is Charles Law. This law states that the volume of a gas is inversely proportional to the pressure of a gas system provided temperature is held constant. The equations given as;

V1P1 = V2P2

V2 = V1P1 / P2

V2 = 1.98 * 1 /  55

V2 = 0.036 L

how many mole are in 5.25 × 10²⁵ atoms of Au​

Answers

Answer:

87.21 moles

Explanation:

To find the number of moles in a substance given it's number of entities we use the formula

[tex]n = \frac{N}{L} \\[/tex]

where n is the number of moles

N is the number of entities

L is the Avogadro's constant which is

6.02 × 10²³ entities

From the question we have

[tex]n = \frac{5.25 \times {10}^{25} }{6.02 \times {10}^{23} } \\ = 87.209302...[/tex]

We have the final answer as

87.21 moles

Hope this helps you

The United States is one country that does not fully use the metric system for measurement.

Yes or No

Answers

Answer: yes

Explanation:

What is the [H 30 +) in a solution with [OH = 1x10-12 M?

Answers

Answer: The way to get the answer is to know and understand certain relationships between [H3O+] and [OH-].  One such relationship which you must know (memorize) is...

[H3O+] [OH-] = 1x10-14 = Kw  (the rest is algebra)

[H3O+] [1x10-12] = 1x10-14

[H3O+] = 1x10-14 / 1x10-12

[H3O+] = 1x10-2 = 0.01 M

Explanation: HOPE IT HELPS!

If two forces are heading in the same direction, we ______ them to calculate net force.

options:
add
or
subtract

Answers

Answer:

add

Explanation:

Is this ground or excited state?
1s2 2s2 2p6 3s1 3p1

Answers

Answer:

Explanation:

Ground : 1s2 2s2 2p6 3s2

Excited 1s2 2s2 2p6 3s1

it is excited

How many moles are in 5.6x1025 molecules of calcium oxide?

Answers

Answer:

93.02 moles

Explanation:

To find the number of moles in a substance given it's number of entities we use the formula

[tex]n = \frac{N}{L} \\[/tex]

where n is the number of moles

N is the number of entities

L is the Avogadro's constant which is

6.02 × 10²³ entities

From the question we have

[tex]n = \frac{5.6 \times {10}^{25} }{6.02 \times {10}^{23} } \\ = 93.023...[/tex]

We have the final answer as

93.02 moles

Hope this helps you

What is the 8th term in the geometric sequence described by this explicit formula?
An=6×3(n-1)
A.2187
B.612,220,032
C.13,122
D.39,366

Answers

Answer: C

Explanation: Answered this same question on a test before

calculate the volume of nitrogen gas produce by heating g of ammonia at 21c and 823 torr pressure​

Answers

Answer:

final volume = 10.5 Liters N₂(g) at 21°C and 823Torr*

Explanation:

*Note=>No specified mass value of N₂(g) is defined in the problem. Therefore for a starting point, the gas sample is assumed to be 1.00 mole N₂(g) at STP conditions  22.4L

Determine volume of  N₂(g) at 21°C(=294K) and 823 Torr (= 2.286 Atm).

Start with Volume of N₂(g) at 0°C and 1 Atm pressure => 22.4L and adjust to final volume of  N₂(g) based upon 21°C(=294K) and 823 Torr (= 2.286 Atm).

V(final) = 22.4L(294K/273K)(360 Torr/823 Torr) = 22.4L(294/273)(360/823) = 10.55 Liters final volume.

Note: The volume of 1 mole (assumed) of any gas at STP (0°C/1 Atm) is 22.4 Liters. To convert to non-STP conditions, convert temperature and pressure factors (changes) that reflect what happens when the gas is expanded or decreased; but, these adjustments are taken independently for each variable of interest.  The following notes explain.

For the increase in temperature from 0°C(=273K) to 21°C(=294K) one must apply a temperature ratio that will increase volume. That is, the change in volume due to the temperature change is 294K/273K. If a 273K/294K ratio were used the volume would have decreased. Not so for heating a sample of gas.

For the increase in pressure one should expect a decrease in volume. Therefore apply a pressure ration that will effectively decrease the volume of the gas. That is, to decrease a 22.4L sample at STP multiply the standard volume by a ratio of pressures that will decrease 22.4L to a smaller volume. That is, V(final by pressure effects) multiply by 360Torr/823Torr to decrease the STP VOLUME (22.4L) to the new non-standard volume. If 823Torr/360Torr were used, the final volume would not be smaller, but larger. Such is the physical effect of an increasing pressure change.

Classify each of the following processes as spontaneous or nonspontaneous

Answers

What are the processes we are supposed to be classifying?

Look at the balanced equation below:

C2H6O + 3 O2 → 2 CO2 + 3 H2O

If you produced 11.5 moles of H2O, how many moles of O2 were used?


11.5 moles O2
11.5 moles O, 2

34.5 moles O2
34.5 moles O, 2

3.83 moles O2
3.83 moles O, 2

7.67 moles O2

Answers

Answer:

11.5moles of oxygen gas

Explanation:

The reaction equation is shown below;

     C₂H₆O  + 3O₂ → 2CO₂  +  3H₂O

 We were given  11.5moles of H₂O produced;

Since the equation is balanced;

          3 mole of oxygen gas was used to produce 3 mole of water

        11.5 moles of water will be produced [tex]\frac{11.5 x 3}{3}[/tex]   = 11.5moles of oxygen gas

Examples of using chemical equilibrium in our daily life (other that ammonia, homeostasis, and others)

Answers

Answer:

There are many examples of chemical equilibrium all around you. One example is a bottle of fizzy cooldrink. In the bottle there is carbon dioxide (CO2) dissolved in the liquid. There is also CO2 gas in the space between the liquid and the cap.

how many molecules are present in 7 moles of h2o​

Answers

Answer:

9moles of h20 hndi parin ako sure

Baking soda with hydrochloric acid combine and bubbles form. Chemical or physical change.

Answers

chemical change because your changing one form to another

Answer:

I believe it is a chemical change.

Addition of Silver Nitrate
1. Based upon the color, in which direction does the equilibrium shift?
Shifts Left.
2. Write an equation showing what happens when AgNO3 is added, and explain why the equilibrium shifts.
Addition of Water
3. Explain the equilibrium shift that occurs when water is added to the original equilibrium reaction.
Cu(H2O)62+(aq) + 4Cl–(aq) D CuCl42–(aq) + 6H2O(l)
blue green
Temperature Changes
4. Write "heat" on either the left or right side of this equation, based upon observations from the addition and removal of heat in steps 3 and 4, respectively, and the corresponding shifts in equilibrium.
____ + Cu(H2O)62+(aq) + 4Cl–(aq) D CuCl42–(aq) + 6H2O(l) + _____
Blue Green

Answers

Answer:

See explanation

Explanation:

When AgNO3 is added to the system the equilibrium position shifts towards the left hand side because of the formation of AgCl as a precipitate thereby sequestering the Cl^- from solution.

AgNO3(aq) + Cl^-(aq) ------> AgCl(s) + NO3^-(aq)

[Cu(H2O)6]^2+(aq) + 4Cl^–(aq) ------> [CuCl4]^2–(aq) + 6H2O(l)

The equilibrium of this reaction shifts towards the right as more Cl^– is added making the color of the solution to change from blue to green.

[Cu(H2O)6]^2+(aq) + 4Cl^–(aq) + heat ------> [CuCl4]^2–(aq) + 6H2O(l)

This reaction is endothermic. addition of heat makes the solution to turn green (equilibrium shifts towards the right) while removal of heat makes the solution to turn blue (equilibrium shifts towards the left).

Which statement is true?
A. Less reactive substances will not undergo chemical reactions.
B. Reactivity is the rate at which a substance undergoes a chemical reaction.
C. A substance's reactivity is determined by its location in the periodic table.
D. Every element in the periodic table reacts strongly with water.

Answers

Answer:

I answer is c I'm sorry if I'm wrong but please mark me brainlest I will mean a lot

why is it necessary to use models to study submicroscopic objects such as atoms and molecules

Answers

Answer:

It is necessary to use models to study sub- microscopic objects such as atoms and molecules because they are too small to be seen.

What would be a good hypothesis for this data ?

Answers

Answer:

Organism B produces pyruvic acid at a faster rate as the temperature increases than Organism A.

Explanation:

Neutron moderation is used to counteract:
O A. the heat generated during nuclear fission reactions.
O B. the chain reactions that naturally occur with uranium-235.
O C. the low concentration of uranium-235 in nature.
O D. the minimal chance that the newly formed neutrons of a fission
reaction are absorbed by more atoms.

Answers

Answer:

(D) The minimal chance that the newly formed neutrons of a fission

Explanation:

I got it right on A P E X

Answer:

D. the minimal chance that the newly formed neutrons of a fission

reaction are absorbed by more atoms.

Explanation:

took test

Analyze the following blood splatter pictures to determine the general direction, origin, and impact

Answers

Answer:

!!!!!!!!!!!!!!!!!!!!!!

Answer:

Figure 1: This blood spatter came from the right side. The impact was not hard. The blood may have come from a dripping wound though there is some evidence of movement, which may indicate the person with the wound was moving as the blood fell.

Figure 2: The elongated blood spatter shows that blood was traveling at a high velocity. The impact came from the right-hand side, and it was forceful.

Figure 3: This spatter shows circular drops, showing that the blood fell under the effect of gravity with no movement from the wound.

Explanation:

Plato

The mass of an atom composed of 7 protons, 8 neutrons, and 7 electrons is

Answers

Answer:

Nitrogen

Explanation:

The atmosphere that existed on early Earth was toxic, had no traces of oxygen and the was high levels of ultraviolet radiation from the Sun.

1.True

2.False

Answers

Answer: 1. True

Reasoning: because google said it was, also, makes sense in some aspects...

A 25.0mL sample of an acetic acid solution is titrated with a 0.175M NaOH solution. The equivalence point is reached when 37.5mL of the base is added. The concentration of acetic acid in the sample was :_________.A) 0.263
B) 0.365
C) 0.175
D) 1.83×10−4
E) 0.119

Answers

Answer:

Explanation:

First of all, let's write the equation of the reaction.

CH₃COOH + NaOH  ⇒ CH₃COONa + H₂O

The formula to be used here is CaVa/CbVb = na/nb

where Ca is the concentration of the acid (?)

Cb is the concentration of the base (0.175M)

Va is the volume of the acid (25 mL)

Vb is the volume of the base (37.5 mL)

na is the number of moles of acid (1)

nb is the number of moles of base (1)

Ca × 25/0.175 × 37.5 = 1/1

Ca = 0.175 × 37.5 × 1 /25 ×1

Ca = 0.263 M

The concentration of the acid in the sample was 0.263 M

Please help I’ll mark brainliest!

Answers

The correct answer choice is D

A light absorbing chemical has a molar absorptivity constant of 487 L/mol*cm. For a system with a 1.00 cm path length, what chemical concentration would result in a recorded % transmittance of 31.6?a. None of these b. 974 M c. 0.000649 M d. 0.00103 M e. 0.0649 M

Answers

Answer:

The right answer is Option d (0.00103 M).

Explanation:

The given values are:

T = 31.6

e = 487 L mol cm

length, l = 1 cm

As we know,

Absorbance,

[tex]A=2-log_{10}(percent \ T)[/tex]

[tex]A=2-log_{10}(31.6)[/tex]

[tex]A=0.5003[/tex]

By using the Beer's law, we get

⇒ [tex]A=ecl[/tex]

⇒ [tex]c=\frac{A}{el}[/tex]

On substituting the values, we get

⇒    [tex]=\frac{0.5003}{487\times 1}[/tex]

⇒    [tex]=0.001027 \ \frac{mol}{L}[/tex]

⇒    [tex]=0.00103 \ M[/tex]

1.
Based on the following information, arrange the A, B, C, and D from lowest to highest
activity (in order of increasing ability to act as reducing agents).
I. Only A, C and D react with 1 mol/L HCl to give H2(e).
II. When A is added to solutions of the other metal ions, metallic B and Care
formed but not D.
a) C b) B c) B d) C e) B

Answers

Order of metals from least reactive to most reactive: B <C <A <D

Further explanation

Reducing agents are substances that experience oxidation  

Oxidizing agents are substances that experience reduction

The metal activity series is expressed in voltaic series  

Li-K-Ba-Ca-Na-Mg-Al-Mn- (H2O) -Zn-Cr-Fe-Cd-Co-Ni-Sn-Pb- (H) -Cu-Hg-Ag-Pt-Au  

The more to the left, the metal is more reactive (easily release electrons) and the stronger reducing agent  

The more to the right, the metal is less reactive (harder to release electrons) and the stronger oxidizing agent

So that the metal located on the left can push the metal on the right in the redox reaction  

Let's analyze the statement in the problem

I. Only A, C and D react with 1 mol/L HCl to give H₂(e)

M + HCl ⇒ MCl + H₂(MCl : alkali, MCl₂ : alkaline earth)

A, C and D can react with 1 mol / L HCl, meaning metals A, C and D are located to the left of element H (more reactive), and B in the right of element H

II. When A is added to solutions of the other metal ions, metallic B and C are  formed but not D.

This means that metal A is more reactive than metals B and C, while D is more reactive than A, so metal D is the most reactive

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