Which effects would many organisms likely experience if global warming occurs? Check all that apply.

disrupted food webs

increased competition

increased number of glaciers

disrupted life-cycle events

forced relocation

and any MHA fan to

Answers

Answer 1

Answer:

Disrupted food webs

increased competition

disrupted life-cycle events

forced relocation

Explanation:

Global warming refers to a gradual rise in the temperature of the earth due to the increase in the concentration of greenhouse gases in the atmosphere which trap infrared radiation close to the earth.

This gradual increase in the temperature of the earth often have devastating effects on the lives of various organisms on earth. These effects include;

Disrupted food webs

increased competition

disrupted life-cycle events

forced relocation

Due to changes that occur in the ecosystem as a result of global warming, many species may be compelled to relocate from place to place. This in turn disrupts food webs and may lead to disruption of life cycle events of the concerned organisms. Decrease in the number of certain populations due to global warming may lead to increased competition among species for food.


Related Questions

HELP ASAP!!! #2 only please.

Answers

Answer:

friend me on here and imma send you the link Explanation:

4948484843838382829292929

In hospitals, staff members wear shoes with special soles to prevent build up of static charge as they walk. Why?Single line text.

Answers

Answer:

The correct answer is - sudden static charge could damage sensitive medical equipment.

Explanation:

Staff members of a hospital or medical institution wear special shoes that are able to prevent static charge as they walk. These shoes help to prevent static charge as we know that the sudden transfer of a static charge to medical equipment may alter the reports or damage sensitive equipment. This type of static charge is negative or positive due to electronic devices touches the device leads to damage of electric devices.

Thus, the correct answer is - sudden static charge could damage sensitive medical equipment.

Liquid A has weaker intermolecular forces than liquid B. Which liquid would demonstrate greater surface tension?

Answers

Answer:

ronger intermolecular forces will produce greater surface tension .

The intermolecular forces present in a sample of water are hydrogen bonds . The high surface tension of water allows a paper clip to "float" on the surface of the water. It's not actually floating, it's resting on top of the hydrogen bonds that exist between the water molecules at the surface. See the video below which shows a paper clip resting on the surface of water in a beaker.

If the hydrogen bonds are removed or disrupted, the surface tension will decrease. Watch what happens to the paper clip in the video when detergent (which will disrupt hydrogen bonds) is added to the beaker.

Here is video showing how a paperclip can "float" on water - it's actually being held up by the hydrogen bonds formed between water molecules which give water its surface tension.

pls mark me the brainliest

Let's say that you were given the following
problem:
A gas that exerts a pressure of 151 mm Hg in a
container with a volume of L will exert a
pressure of 166 mm Hg when transferred to a
container with a volume of 0.532 L.
Let's begin by assigning our variables. Let's say
that P1 = 151 mm Hg. What is V2?

Answers

Answer:

V2~0.4839M

Explanation:

We're going to use Boyles law to answer the question.

Boyle's law:

P1V1=P2V2

P1=151mmHg

P2=166mmHg

V1=0.532L

V2=?

V2=(P1 x V1)/P2

V2=(151 x 0.532)/166

V2~0.4839M

Hope it helps:)

Answer: C. unknown

Explanation: got it right on acellus

What volume, in milliliters, of a 0.997 M KOH solution is needed to neutralize 30.0 mL of 0.0400 M HCl?

Answers

Answer:

1.2 mL

Explanation:

We'll begin by writing the balanced equation for the reaction. This is illustrated:

HCl + KOH —> KCl + H₂O

From the balanced equation,

Mole ratio of the acid, HCl (nₐ) = 1

Mole ratio of base, KOH (n₆) = 1

Finally, we shall determine the volume of the base, KOH needed to neutralize the acid, HCl as follow:

Molarity of base, KOH (M₆) = 0.997 M

Volume of acid, HCl (Vₐ) = 30 mL

Molarity of acid, HCl (Mₐ) = 0.0400 M

Volume of base, KOH (V₆) =?

MₐVₐ / M₆V₆ = nₐ/n₆

0.04 × 30 / 0.997 × V₆ = 1/1

1.2 / 0.997 × V₆ = 1

Cross multiply

0.997 × V₆ = 1.2

Divide both side by 0.997

V₆ = 1.2 / 0.997

V₆ = 1.2 mL

Thus, the volume of the base, KOH needed to neutralize the acid is 1.2 mL.

A sample of O2 with an initial temperature of 50.0 oC and a volume of 105 L is cooled to -25 oC. The new pressure is 105.4 kPa and the new volume is 55.0 L. What was the initial pressure of the sample? Show your work, using the G.U.E.S.S. method.

Answers

Answer:

71.92 kPa

Explanation:

Using the combined gas law equation;

P1V1/T1 = P2V2/T2

Where;

P1 = initial pressure (kPa)

P2 = final pressure (kPa)

V1 = initial volume (L)

V2 = final volume (L)

T1 = initial temperature (K)

T2 = final temperature (K)

According to the information provided in this question;

T1 = 50°C = 50 + 273 = 323K

V1 = 105L

T2 = -25°C = -25 + 273 = 248K

P2 = 105.4 kPa

P1 = ?

V2 = 55.0 L

Using P1V1/T1 = P2V2/T2

P1 × 105/323 = 105.4 × 55/248

105P1/323 = 5797/248

0.325P1 = 23.375

P1 = 23.375 ÷ 0.325

P1 = 71.92 kPa

What is the concentration of hydrogen ions in a solution with a pH of 2.36?

Question 24 options:

a)

7.34x10-2 M


b)

4.37x10-3 M


c)

1x102.36 M


d)

6.95x10-3 M..

Answers

Answer:

b)

Explanation:

[tex]pH = - log[H {}^{ + } ] \\ 2.36 = - log[H {}^{ + } ] \\ [H {}^{ + } ] = {10}^{ - 2.36} \\ [H {}^{ + } ] = 4.37 \times {10}^{ - 3} \: M[/tex]

ZnSO4 +
+
LINO, → ---- Zn(NO3)2
+
Li,SO4
Balanced equation

Answers

Answer:

ZnSO4 + 2LiNO3 → Zn(NO3)2 + Li2SO4

Explanation:

There's many resources on web that can assist you with this concept:

https://en.intl.chemicalaid.com/tools/equationbalancer.php

https://www.webqc.org/balance.php

Which radiation detection device is the best to use for measuring the presence of radiation in large moving objects where constant monitoring is impossible?

film badge

Geiger counter

cloud chamber

scintillation counter

Answers

Answer:

A film badge

Explanation:

The film badge dosimeter or film badge is a personal dosimeter used for monitoring cumulative radiation dose due to ionizing radiation. It of a photographic film and a holder. This film badge is used to determine or measure and record the radiation exposure as a result of radiations, x-rays, gamma rays and also beta particles.

All users of medical x-ray equipment (C-arms, fluoro units, therapy units) must wear badges. Those using larger quantities of radioactive materials will also be provided badges. The correct option is A.

What is film badge?

Ionising radiation exposure is measured using photographic film for personnel monitoring purposes. A filter that protects part of the film from particular types of radiation may also be present in the film badge, which may contain two or three films with varying sensitivity levels.

A particular kind of passive dosimeter is the film badge. It comprises of a photographic emulsion film in a light-tight wrapping (kept in a holder) that changes optical density in response to ionising radiation. The holder, which also includes several filters (for calculating tissue equivalent amounts), is typically worn on the body's trunk.

So film badge is the device used most commonly today for monitoring the radiation exposure of personnel.

Thus the correct option is A.

To know more about film badge, visit;

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Examine the food chain below: In this specific food chain, the _______ eats plants for food. A. caterpillar B. sunshine C. bobcat D. leaf

Answers

A, leaf only absorbs water and sunlight

Can someone answer question 3 ASAP please

Answers

Answer:

Molecules must collide with sufficient energy, known as the activation energy, so that chemical bonds can break. Molecules must collide with the proper orientation. A collision that meets these two criteria, and that results in a chemical reaction, is known as a successful collision or an effective collision.

In the equation C H4 + O2 C O2 + H2 O, what are the products?

A) C H4 + H2 O
B) C O2 + H2 O
C) O2 C O2
D) C H4 + O2

Answers

The answer to this question is B; the products of this reaction is on the right after after the arrow

Answer:

Option B clearly shows the Products of the reaction

The balanced equation for the combustion of Hexane,C6H14 , is

Answers

Answer:

[tex]2C _{6}H _{14} + 19O _{2}→12CO _{2} +14H _{2} O[/tex]

I’d appreciate the help! :)

Here is the reaction:

3 NO2 (g) + H2O (l) = 2HNO3 (l) + NO (g)

Answers

Answer: 300g

Explanation:

first we write the given values on top

224L. x

3 NO2 (g) + H2O (l) = 2HNO3 (l) + NO (g)

22.4L 30g

then we form a formula

224L/22.4L= x/30g

224*30/22.4

6720/22.4= 300g

calculate the pressure at which the volume of oxygen becomes tripled. if it initial volume at 3.00 atm at 75cm³. if temperature is constant.


Help me
I'll give brainiest​

Answers

Answer:

The new pressure is equal to 1 atm.

Explanation:

Given that,

Initial pressure, P₁ = 3 atm

Initial volume, V₁ = 75cm³

Final volume, V₂ = 3V₁ = 225 cm³

We need to find the final pressure. The mathematical relation between P and V is :

[tex]P\propto \dfrac{1}{V}\\\\or\\\\\dfrac{P_1}{P_2}=\dfrac{V_2}{V_1}[/tex]

Where

V₂ is the new volume

So,

[tex]P_2=\dfrac{P_1V_1}{V_2}\\\\P_2=\dfrac{3\times 75}{225}\\\\P_2=1\ atm[/tex]

So, the new pressure is equal to 1 atm.

What is the molar mass of Na2CO3?
60.0 g/mol
O 106.0 g/mol
118.0 g/mol
141.0 g/mol

Answers

Answer:

The required molar mass is 106.0 g/mol

Explanation:

We know,

Molar mass of Na = 23 g/mol

Molar mass of C= 12 g/mol

Molar mass of O= 16 g/mol

∴Molar mass of Na2CO3 = {(23 X 2) + 12+ (16 X 3)}  g/mol

                                          = (46 + 12 + 48) g/mol

                                          = 106   g/mol

So, the required molar mass is 106.0 g/mol

Compared to the energy released per mole of reactant during chemical reactions, the energy
released per mole of reactant during nuclear reactions is
1.
much less
2.
much greater
3.
slightly less
4.
slightly greater

Answers

Answer:

2. much greater

The statement, that describes the energy released per mole of reactant during nuclear reactions is "much greater."

What are nuclear reactions?

Nuclear reaction is a sort of reaction in which the structure of an atom's nucleus changes completely, frequently producing a different element while releasing energy.

The energy released by nuclei is far more dense (approximately a million times more dense) than the energy released by atom interactions (chemical reactions). This is what gives nuclear weapons their extraordinarily huge and destructive force when compared to conventional weapons. Nuclear reactions generate more energy than chemical reactions.

Hence the correct option is 2.

Learn more about nuclear reaction here

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Suppose the galvanic cell sketched below is powered by the following reaction:
Mg(s)+Zn(NO3)2(aq) → Mg(NO3)2(aq)+Zn(s)

Answers

Explanation:Mg(s)+Zn(NO3)2(aq) → Mg(NO3)2(aq)+Zn(s)

(2-2) Looking at the chemical formula CaF2 (calcium fluoride), what do you think this substance is made of? (Choose ALL that apply
Metal
Metalloid
Non-metal

Answers

Answer:

Metal

Non-metal

Explanation:

Ionic compounds are said to be formed when metals donate electrons to non metals.

The metals become positively charged while the nonmetals become negatively charged.

CaF2 is composed of Ca^2+ and F^-. Calcium is a metal of group 2 in the periodic table while F is a nonmetal of group 17 in the periodic table.

Hence CaF2 is composed of a metal and a nonmetal.

How much energy required to raise the temperature of lead by the same degrees.

Answers

Answer:

If a one kilogram block of lead absorbs 2,000 J of energy then the temperature rise will be larger. If 1,000 J of heat is absorbed by a 2 kg block of lead then the temperature of the block doesn't rise as much since the energy is shared between more particles.

Explanation:

correct name for ZnS

Answers

Zinc sulfide (or zinc sulphide) is an inorganic compound with the chemical formula of ZnS. This is the main form of zinc found in nature, where it mainly occurs as the mineral sphalerite.

How many grams of water are produced when 12.50 mol oxygen reacts with hydrogen?

Answers

Answer: According to reaction below, when one mol of oxygen reacts with two mol of hydrogen, two mol of water is produced. Thus, when 2.5 mol of oxygen reacted with hydrogen, 2 * 2.5 mol = 5 mol of water is produced. The molar mass of water is 18 g/mol.

Explanation:

Not My WORK!  I got this info from another site.  BUT I HOPE IT HELPS :)

Polar bonds share electrons _______.

Answers

A polar bonds share electrons meaning they are a convenient bond

Polar bears are adapted to stay warm by growing thick fur. These organisms most likely live in a what​

Answers

Answer:

They live in the open snow

Explanation:

what energy is produced when particles vibrate?

Answers

sound energy is produced when particles vibrate. When an object vibrates, it causes movement in surrounding air molecules.

calculate the amount of hydrogen sulphide that would be liberated by the action of sulphuric acid on 4.4 gram of ferrous sulphide. (Fe=56;S=32)​

Answers

You will get iron sulfate and hydrogen sulfide gas (a.k.a. rotten egg gas).

FeS + H2SO4 = FeSO4 + H2S(g)

Change in Free Energy: ΔG(20C) = -66.6kJ (negative, so the reaction runs)

Change in Enthalpy: ΔH(20C) = -37.3kJ (negative, so the reaction is exothermic)

1.7 g of Hydrogen sulphide (H₂S) will be obtained.

We'll begin by writing the balanced equation for the reaction between ferrous sulphide (FeS) and sulphuric acid (H₂SO₄). This is illustrated below:

FeS + H₂SO₄ —> H₂S + FeSO₄

Next, we shall determine the mass of FeS that reacted and the mass of H₂S produced from the balanced equation. This is illustrated below:

Molar mass of FeS = 56 + 32

= 88 g/mol

Mass of FeS from the balanced equation = 1 × 88 = 88g

Molar mass of H₂S = (2×1) + 32

= 2 + 32

= 34 g/mol

Mass of H₂S from the balanced equation = 1 × 34 = 34 g

SUMMARY

From the balanced equation above,

88 g of FeS reacted to produce 34 g of H₂S.

Finally, we shall determine the mass of H₂S produced by the reaction of 4.4 g of FeS. This can be obtained as follow:

From the balanced equation above,

88 g of FeS reacted to produce 34 g of H₂S.

Therefore, 4.4 g of FeS will react to produce = (4.4 × 34)/88 = 1.7 g of H₂S.

Thus, 1.7 g of H₂S were obtained from the reaction.

Learn more: https://brainly.com/question/23115234

Help needed ASAP, I will mark your answer as brainliest.

Answers

The answer is C if I’m wrong than I’m sorry

HELP ASAP
Which BEST explains the
relationship between the greenhouse
effect and global warming?

global warming causes the
greenhouse effect

greenhouse effect decreases
global warming

greenhouse effect increases
global warming

greenhouse effect is the same
as global warming

Answers

Answer:

greenhouse effect is the same as global warming

Explanation:

they both mean warming of the earths surface

What is the molarity of a solution that is composed of 10 grams of Sodium Chloride ( NaCl) dissolved in 3.50 L of water

Answers

Answer: The molarity of solution will be 0.049 M

Explanation:

Molarity is defined as the amount of solute expressed in the number of moles present per liter of solution. The units of molarity are mol/L. The formula used to calculate molarity:

[tex]\text{Molarity of solution}=\frac{\text{Given mass of solute}}{\text{Molar mass of solute}\times \text{Volume of solution (L)}}[/tex]

We are given:

Given mass of sodium chloride = 10 g

Molar mass of sodium chloride = 58.44 g/mol

Volume of solution = 3.50 L

Putting values in above equation:

[tex]\text{Molarity of NaCl}=\frac{10 g}{58.44g/mol\times 3.50}\\\\\text{Molarity of NaCl}=0.049M[/tex]

Hence, the molarity of solution will be 0.049 M

Help me with chemistry! I got this answer wrong , what would be the right one?

Answers

Answer: Number 3

Explanation: Electronegativity is a measure of how strongly atoms attract bonding electrons to themselves.

I think, I could be wrong though.

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