Transpiration is the loss of water from the leaves of plants. The stomata of leaves must open to allow
carbon dioxide to enter the leaf for photosynthesis, but when they are open, water vapor escapes into
the atmosphere.
HYPOTHESIS: As the intensity of light is increased, the rate of transpiration will increase, as
measured in by the loss of mass of the plant.
Independent variable:
Dependent variable:

Answers

Answer 1

Answer:

Independent variable: The light intensity (what YOU CHANGE)

Dependent variable: The rate of transpiration (what YOU MEASURE)

Answer 2

Independent variable are the light intensity that what we change and dependent variable are the rate of transpiration that what we measure.

What is photosynthesis ?

Photosynthesis is the process that can be used by the plants and other animals to covert light energy into the chemical energy. Photosynthesis is the main source of food in the earth.

Photosynthesis is the process in which oxygen is released. For survival oxygen is very important, from this process we obtain sufficient amount of oxygen.

The dependent variable is the rate of transpiration and the independent variable is time.The dependent variable is the rate of transportation because it is depends on the environmental factor the plant is placed.

Thus,Independent variable are the light intensity that what we change and dependent variable are the rate of transpiration that what we measure.

To learn more about the photosynthesis, follow the link;

https://brainly.com/question/1388366

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Related Questions

In order for convection to transfer heat, particles need to
absorb solar and fossil energy
O circulate and move within a liquid or gas
O make contact with the heat source
transmit electromagnetic waves

Answers

Answer:

The answer is B "circulate and move within a liquid or gas"

You wish to prepare 250.0250.0 mL of a 400.0400.0 ppm w/v Fe2+Fe2+ ( MW=55.845 g/molMW=55.845 g/mol ) solution. How many grams of ferrous ammonium sulfate hexahydrate (Fe(NH4)2(SO4)2⋅6H2O(Fe(NH4)2(SO4)2⋅6H2O , MW=392.14 g/molMW=392.14 g/mol ) are needed to prepare this solution? Assume the final solution has a density of 1.00 g/mL.

Answers

Answer:

You need 0.702g of ferrous ammonium sulfate hexahydrate to prepare the desired solution.

Explanation:

First, you want to prepare 250.0mL of a 400.0ppm of Fe²⁺ (That is mg/L, w/v):

0.250L * (400mg / L) = 100mg Fe²⁺ = 0.1g Fe²⁺

Molar mass of Fe is 55.845g. moles are:

0.1g Fe²⁺ * (1mol / 55.845g) =

1.79x10⁻³ moles Fe²⁺

The Fe²⁺ comes from ferrous ammonium sulfate hexahydrate, as 1 mole of this salt contains 1 mole of Fe²⁺, moles of the salt you need are:

1.79x10⁻³ moles Fe(NH₄)₂(SO₄)₂.6H₂O.

To convert these moles to grams you must use molar weight, MW, thus:

1.79x10⁻³ moles Fe(NH₄)₂(SO₄)₂.6H₂O * (392.14g / 1mol) =

You need 0.702g of ferrous ammonium sulfate hexahydrate to prepare the desired solution.

What is the half-life of polonium-210 if it takes 828 days for a sample to be reduced to 1.6% of its original mass?

Answers

Answer:

The half-life of polonium-210 is approximately 138.792 days.

Explanation:

We must remember that the decay of a radioisotope is modelled by this ordinary differential equation:

[tex]\frac{dm}{dt} = -\frac{m(t)}{\tau}[/tex]

Where:

[tex]m(t)[/tex] - Current mass of the isotope, measured in grams.

[tex]\tau[/tex] - Time constant, measured in days.

Whose solution is:

[tex]m(t) = m_{o}\cdot e^{-\frac{t}{\tau} }[/tex]

Where [tex]m_{o}[/tex] is the initial mass of the isotope, measured in grams.

Our first step is to determine the value of the time constant:

[tex]-\frac{t}{\tau} = \ln \frac{m(t)}{m_{o}}[/tex]

[tex]\tau = -\frac{t}{\ln \frac{m(t)}{m_{o}} }[/tex]

If we know that [tex]\frac{m(t)}{m_{o}} = 0.016[/tex] and [tex]t = 828\,days[/tex], then the time constant of the radioisotope is:

[tex]\tau = -\frac{828\,days}{\ln 0.016}[/tex]

[tex]\tau \approx 200.234\,days[/tex]

And lastly we find the half-life of polonium-210 ([tex]t_{1/2}[/tex]), measured in days, by using this expression:

[tex]t_{1/2} = \tau \cdot \ln 2[/tex]

[tex]t_{1/2} = (200.234\,days)\cdot \ln 2[/tex]

[tex]t_{1/2}\approx 138.792\,days[/tex]

The half-life of polonium-210 is approximately 138.792 days.

A flask with a volume of 125.0 mL contains air with a density of 1.122 g/L. What is the mass of the air contained in the flask?

Answers

Answer:

The answer is

0.14 g

Explanation:

To find the mass of a substance given the density and volume we use the formula

mass = Density × volume

From the question

Density = 1.122 g/L

volume = 125 mL

We must convert the volume from mL to L

1000 mL = 1 L

125 mL = 0.125 L

volume = 0.125 L

Substitute the values into the above formula and solve for the mass

That's

mass = 1.122 × 0.125 = 0.14025

We have the final answer as

0.14 g

Hope this helps you

At room temperature 20 Celsius and object had a mass of 25g and displaces 15 mL water in a cylinder. what is it’s density? If the object was cooled to point where it had only half of its original thermal energy. What would be it’s temperature in Kelvin and Celsius?

Answers

Answer:

Density = 1.67 g/cm³

New Temperature = 10°C ⇔ 283K

Explanation:

a. Density of a substance can be described as the mass (in grams) of a substance per litre (in mL or cm³) of liquid displaced.

Hence: Density = mass ÷ volume

Density = 25 ÷ 15

Density = 1.67 g/cm³

b. If the object is cooled to half of its original temperature, the new temperature is assumed to be half of the room temperature

Hence, the substance's new temperature will be = 20÷2

=10°C ⇔ 283K (i.e 10 + 273)

Amoeba eat by using. What method

Answers

Answer:

Amoebas use their pseudopods to ingest food by a method called phagocytosis (Greek: phagein, to eat). The streaming of protoplasm inside the pseudopods moves the amoeba forward.

Explanation:

is oxygen an exhaustible natural resource ?

Answers

Answer: False

Explanation:

resources which are present in unlimited quantity in nature are called as inexhaustible natural resources.

In what two ways can an object possess energy?

Answers

Explanation:

An object can possess energy in tow ways by it's motion or position

If you burn 57.9 g of hydrogen and produce 517 g of water, how much oxygen reacted?​

Answers

In order to make water (H2O) out of hydrogen (H2), you also need OXYGEN (O2) gas.  So, first write a correctly balanced equation for this reaction.

2H2(g) + O2(g) ==> 2H2O

Now, convert 59.5 g of H2 to moles, then figure out moles of H2O and then moles of O2 used to do this.  

moles H2 = 59.5 g H2 x 1 mole/2 g = 29.8 moles H2

moles H2O formed = 531 g H2O x 1 mole/18 g = 29.5 moles H2O

So, the mole ratio of H2 to H2O is 1:1 meaning that the moles of O2 used will be 1/2 that amount.  This is the case because from the balanced equation you see that 1 O2 reacts with 2 H2 and produces 2 H2O. 

Amount of O2 used = 29.8/2 = 14.9 moles

What is the closest to potassium

Answers

Metal
Alkali metal
Period 4 element

What is 0.75140000 in scientific notation?

Answers

Answer:

i need help too

Explanation:

helppp

Determine the number of significant figures in the following measurement:

16.08 Liters

Answers

Answer:

Four significant figures.

Explanation:

Hello,

In this case, considering that the measurement 16.08 L has four digits we must take into account that all are significant even the zero due to fact that is to the right of the first nonzero digit which is 1, therefore, the measurement has four significant figures.

Best regards.

17. SiH3P
How do you create a Lewis structure for this formula?

Answers

Answer:

See attached picture.

Explanation:

Hello,

In this case, considering that Lewis structures are drawn in order to show up the bonding among equal or different atoms via their valence electrons, since hydrogen has one valence electron, silicon four and phosphorous five, the most suitable way to draw and attain the octet for both silicon and phosphorous is by bonding them via a double bond, one hydrogen bonded to the phosphorous and two hydrogen atoms bonded to the silicon as shown on the attached picture, wherein you can count eight electrons for both phosphorous and silicon.

Best regards.

An air conditioning unit turns off once it reaches its goal temperature. The house warms up and the air conditioning unit turns on again.

When the air conditioning unit turns on, it is an example of:

A) input

B) process

C) output

D) feedback

Answers

Answer:

D) feedback.

Explanation:

An air condtioning unit consists of the following elements according to available choices:

Inputs: Refrigerant, air from surroundings, electricity.

Process: Refrigeration cycle.

Output: Conditioned air at goal temperature.

Feedback: Activation and deactivation of the air conditioning unit depending on indoor temperature.

When the air conditioning turns on and off to keep goal temperature indoors, a control stage consisting in a controller and a action element is acting to reverse the behavior of the process with a view to keep goal temperature.

Hence, correct answer is D.

Which of the following elements is among the alkali metals?

Answers

Answer:

Alkali metals are: Lithium(Li), Sodium(Na), Potassium(K), Rubidium(Rb), Cesium(Cs) and Francium(Fr).

Explanation:

I cant understand your question mate, but these are all the alkali metals, because they are in the first group. Note that Hydrogen(H) is not an alkali metal. Hope that helps. God bless you.

The alkali metals are  lithium (Li), sodium (Na), potassium (K), rubidium (Rb), cesium (Cs), and francium (Fr).

What is the periodic table?

The periodic table has been the arrangement of the elements based on the reactivity and the electrons in the valence shell.

The left side of the periodic table has been consisted of the metals, while moving from left to right the metallic character decreases and the nonmetallic character increase.

The group 1 of the periodic table has been consisted of the metals with 1 valence electrons. The group has been termed as alkali metals, as the reaction of the elements of this group with water forms alkali.

The elements belonging to group 1 of the periodic table are  lithium (Li), sodium (Na), potassium (K), rubidium (Rb), cesium (Cs), and francium (Fr).

Learn more about periodic table, here:

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which element is less electronegative than silicon (Si)

Answers

Answer:

caesium

Explanation:

because it's lesssssssss

Determine the overall charge on particles with the subatomic makeups given.
13 protons, 14 neutrons, and 10 electrons
+3

Answers

Answer:

The correct solution will be "+3".

Explanation:

The given values are:

Number of protons

= 13

Number of neutrons

= 14

Number of electrons

= 10

As we know,

⇒  [tex]Charge = Number \ of \ protons - Number \ of \ electrons[/tex]

On putting the estimated values, we get

⇒               [tex]=13 - 10[/tex]

⇒               [tex]=+3[/tex]

The overall charge on the particle would be +3

Atomic Charge

The atomic charge on a particle is determined by the number of protons (positive charge) and electrons (negative charge) in the atoms of the particle.

Neutral atoms have equal number of protons and neutronsNegatively charged atoms have more electrons than protonsPositively charged atoms have more protons than electrons

Thus, an atom with 13 protons and 10 electrons will have a residual proton of 3, making the overall charge to be +3.

More on atomic charges can be found here: https://brainly.com/question/2279918?referrer=searchResults

Match the words to the appropriate blanks in the sentences.
a. For the pair of compounds CO2 or NO2 the one with the highest boiling point is __________ .
b. For the pair of compounds NH3 or CH4 the one with the highest boiling point is _________
c. For the pair of compounds CS2 or CO2 the one with the highest boiling point is _________
1. CH4
2. NH3
3. CS2
4. NO2
5. CO2

Answers

Answer:

a. NO2

b. NH3

c. CO2

Explanation:

a. For the pair of compounds CO2 or NO2 the one with the highest boiling point is __________ .

The answer is NO2. It has a higher boiling point than CO2 because it exhibits dipole-dipole interactions.

b. For the pair of compounds NH3 or CH4 the one with the highest boiling point is _________

NH3 has a higher boiling point compared to CH4. This is due to the presence of the hydrogen bonds in NH3,

c. For the pair of compounds CS2 or CO2 the one with the highest boiling point is _________

CS2 has a higher boiling point than CO2. This is because of the high molecular mass of CS2.

What did Aristotle believe?

Answers

Aristotle's philosophy stresses biology, instead of mathematics like Plato. He believed the world was made up of individuals (substances) occurring in fixed natural kinds (species). Each individual has built-in patterns of development, which help it grow toward becoming a fully developed individual of its kind.

Dogs can be acutely poisoned if they eat very small amounts of , a sweetener commonly found in sugar-free gum.

Answers

Answer:

Xylitol

Please give me the brainliest if you found this helpful

This is for my Science assignment: A molecule is made up of at least (blank) different atoms. Fill in the blank, please. Best answer gets Brainliest!

Answers

Answer:

2 differet atoms.

Explanation:

Molecule: group of two or more atoms held together by chemical bonds. So, minimum 2 atoms are required to form a molecule.

Suppose that 10.0 mol C2H6(g) is confined to 4.860 dm3 at 27 °C. Predict the pressure exerted by the ethane from (i) the perfect gas and (ii) the van der Waals equations of state. Calculate the compression factor based on these calculations. For ethane, a = 5.507 dm6 atm mol−2, b = 0.0651 dm3 mol−1.

Answers

Answer:

[tex]P=35.16[/tex]

[tex]Z=4.6[/tex]

Explanation:

Hello,

In this case, since the VdW equation is:

[tex]P=\frac{nRT}{V-n*b}-a(\frac{n}{V} )^2[/tex]

Since the moles are 10.0 moles, the temperature in K is 300.15 K and the volume is liters is also 4.860 L (1 dm³= 1L), the pressure exerted by the ethane is:

[tex]P=\frac{10.0mol*0.082\frac{atm*L}{mol*K}*300.15K}{4.860mol-10.0mol*0.0651\frac{L}{mol} }-5.507\frac{atm*L^2}{mol^2}(\frac{10.0mol}{4.86L} )^2\\\\P=58.48atm-23.3atm\\\\P=35.16[/tex]

Thus the compression factor turns out:

[tex]Z=\frac{PV}{RT}=\frac{23.3atm*4.86L}{ 0.082\frac{atm*L}{mol*K}*300.15K}\\\\Z=4.6[/tex]

Regards.

What are the effects of inhalation of acetone vapor?

Answers

Answer:

it can cause irritation in eyes throat and lungs and u can become lightheaded, or possibly fall in a coma

Which of the following correctly describes what happens to the kinetic energy of water when it changes from steam to a liquid? The kinetic energy of the molecules increases. The kinetic energy of the molecules decreases. The kinetic energy of the molecules increases then decreases. There is no change in the kinetic energy of the molecules

Answers

When liquid water turns to steam the molecules move (faster or slower) and heat is (added or removed) from the water. ... The molecules in the steam have (more or less) Kinetic Energy. When liquid water turns to steam the molecules move (faster or slower) and heat is (added or removed) from the water.

Carbohydrates are made up of carbon, hydrogen, and __________.

Which term best completes the sentence?


oxygen


copper


helium


potassium

Answers

Oxegan ........
explation :



Google

Answer:

oxygen

Explanation:

Number of electrons absorbed by the main energy level (n = 4):
a)8
b)18
c)32
d)56

Answers

Answer:

C

Explanation:

Because 2 x n square gives the total energy level been absorbed = 2 x16

=32

What is the difference between dehydration and hydrolysis?

Answers

Answer:

Some differences between the given particular topics are described below.

Explanation:

Hydrolysis occurs as the water is absorbed in some kind of a response to breaking up the polymer through its corresponding monomers while Dehydration synthesis happens whenever water has been formed as a formation of the polymerization of the latter's corresponding monomers.Hydrolysis seems to be a method during which a chemical bond becomes dissolved by a water molecule while Dehydration would be a state of consuming less liquid than that of the natural rate.

Use the Gizmo to find the freezing, melting, and boiling points of water at 5,000 meters (16,404 feet). Write these values below. Freezing point: _______ Melting point: _______ Boiling point: _______

Answers

Answer:

Freezing point: 32 ºF (0ºC)

Melting point: 32 ºF (0ºC)

Boiling point: 203°F (95°C)

Explanation:

At the boiling point, the vapor pressure of a liquid  equals the external pressure. The normal melting point and boiling point of water at 1 atm are 0°C and 100°C, respectively. Decreasing the pressure under 1 atm (what happens when we are at high altitudes) will lower the boiling point since the external pressure will be lower, and it will become equal with the vapor pressure at a lower temperature.

However, the melting point and freezing point will stay unaffected since they don't depend on air-pressure; so at 0 or 5000 meters they will still be 0°C (remember that, since water is a pure substance, the freezing and melting points will be the same).

Calculate the [H+] and pH of a 0.000185 M acetic acid solution. Keep in mind that the Ka of acetic acid is 1.76×10−5. This is a problem that will require you to use the quadratic. Start by setting up the quadratic equation before using the quadratic formula and find the coefficients. Then, solve the quadratic. Quadratic formula: ax2+bx+c=0; enter the values of a, b, and c

Answers

Answer:

[H⁺] = 0.000048936M

pH = 4.31

Explanation:

Acetic acid, CH₃COOH, dissociates in water as follows:

CH₃COOH(aq) ⇄ H⁺(aq) + CH₃COO⁻(aq)

And Ka is defined as:

Ka = 1.76x10⁻⁵ =  [H⁺] [CH₃COO⁻] / [CH₃COOH]

Where [] are equilibrium concentrations of the species.

The 0.000185M of acetic acid will decreases X, and X of [H⁺] and [CH₃COO⁻] will be produced. That means Ka is:

1.76x10⁻⁵ =  [X] [X] / [0.000185 - X]

3.256x10⁻⁹ - 1.76x10⁻⁵X = X²

3.256x10⁻⁹ - 1.76x10⁻⁵X - X² = 0

Solving for X:

X = -0.000066M → False solution. There is no negative concentrations.

X = 0.000048936

As [H⁺] = X,

[H⁺] = 0.000048936M

And pH = -log [H⁺]

pH = 4.31

what have you learned about the four subsystem?​

Answers

The geosphere has four subsystem called the lithosphere, hydrosphere, cryosphere, and atmosphere.
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