3. Where does the energy come from that drives water transport in plants?a) The sunb) ATPc) Waterd) Membrane pumps

Answers

Answer 1

The sun provides the energy that propels water transport in plants.

Photosynthesis is the process by which plants convert light energy into chemical energy that is stored in glucose. This glucose is converted into ATP (adenosine triphosphate), which serves as an energy source for various metabolic processes in the plant, including water transport.

Water is absorbed by the plant's roots and transported upward through the stem and leaves via a process known as transpiration. This process is powered by ATP, which provides the energy required to drive water movement from the roots to the rest of the plant.

So the sun provides the energy for water transport in plants, which is converted into chemical energy through photosynthesis and stored in the ATP.

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Related Questions

What is the opposite of proportional spacing?

Answers

Opposite of proportional spacing is monospacing.Monospacing is also called as fixed-pitch,fixed-front spacing.

Monospacing likewise called a fixed-pitch, fixed-width, or non-corresponding textual style, is a textual style whose letters and characters each involve a similar measure of flat space. This differences with variable-width text styles, where the letters and spacings have various widths.Monospaced textual styles are standard on typewriters and for typesetting PC code.

Monospacing were broadly utilized in early PCs and work stations, which frequently had very restricted graphical abilities. Equipment execution was improved by utilizing a text mode where the screen format was tended to as a customary framework of tiles, every one of which could be set to show a person by ordering into the equipment's personality map.

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Oliver tries to cut a piece of metal 30 centimeters long. The piece of metal ends up being 29. 4 centimeters long. What is the percent error in this situation?.

Answers

The percent error in this situation is 2%. This is calculated by taking the difference between the target length of 30 centimeters and the actual length of 29.4 centimeters, and then dividing it by the target length (30 centimeters).

The result is 0.06, which can be expressed as a percentage by multiplying it by 100, giving a result of 2%.

The percent error is an important measure of accuracy, and it can be used to assess the reliability of a measurement. In this case, a 2% error indicates that the measurement is relatively accurate, although it is still slightly off from the expected result.

In general, the smaller the percent error, the more accurate the measurement is. However, a higher percent error does not necessarily indicate that the measurement is completely unreliable, and it can still be used for certain purposes.

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stereo vision works because because our eyes see slightly different images with _______ objects shifting more between the two images.

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Stereo vision works because our eyes see slightly different images with distant objects shifting more between the two images.

Stereo vision works because our eyes see slightly different images with distant objects shifting more between the two images.

This is due to the fact that our eyes are positioned a few centimeters apart from each other, which gives us slightly different perspectives on the world around us. The difference in perspective between the two images allows the brain to calculate the distance to objects in the scene, creating the perception of depth and three-dimensionality. This process is known as stereopsis and is based on the idea that the closer an object is, the greater the shift between the two images of that object will be. By analyzing these shifts, the brain is able to calculate the relative distances to objects in the scene and construct a three-dimensional representation of the world.

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A box of textbooks is pulled to the right by a force of 10 Newtons and to the left by a force of 5 Newtons. The net force is

Answers

Answer:

I think 5 Newtons to the right.

Answer:

5

52.386552

Explanation:

5 Newton is right

Scientists used the pattern of alternating normal and reversed polarity in rocks to create the geomagnetic ________________.

Answers

Scientists used the pattern of alternating normal and reversed polarity in rocks to create the geomagnetic timescale.

who are refered as scientists ?

Scientists are individuals who engage in scientific research and study, and who are recognized for their expertise and knowledge in a particular field of study. They can come from a variety of scientific disciplines, such as physics, chemistry, biology, and earth sciences, and may work in academia, government, or the private sector.

Scientists are professionals who study the natural world in a systematic and organized manner. They use the scientific method, which involves observing and recording data, formulating hypotheses based on their observations, designing experiments to test these hypotheses, analyzing the results, and drawing conclusions based on their findings. Scientists may work in many different fields, such as physics, chemistry, biology, earth science, and others, and they may focus on specific areas within those fields. They may work in academic institutions, government agencies, private research organizations, or industries, among others. Scientists play a critical role in advancing our understanding of the world and developing new technologies, and their work has far-reaching implications for society.

Scientists used the pattern of alternating normal and reversed polarity in rocks to create the geomagnetic timescale.

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what is the x component of a⃗ what is the magnitude of a

Answers

The x component of a vector a⃗ is the projection of the vector onto the x-axis. It can be calculated as the dot product of the vector and the unit vector in the x-direction (i.e., the x-axis).

The magnitude of a vector a⃗ is the length of the vector and can be calculated as the square root of the sum of the squares of its components. Mathematically, the magnitude of a vector a⃗ is given by:

|a⃗| = √(a⃗⋅a⃗) = √(a_x^2 + a_y^2 + a_z^2)

where a_x, a_y, and a_z are the x, y, and z components of the vector, respectively.

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The space needle is 605 feet tall. A model of the building is 15 inches tall. What is the ratio of the height of the model to the height of the actual space needle?.

Answers

The  ratio of the height of the model to the height of the actual space needle is 1 : 484.

What is the ratio of the heights?

The ratio of the height of the model to the height of the actual space needle is calculated by converting feet into inches or inches to feet.

1 foot = 12 inches

605 feet = ?

= ( 605 x 12 in )

= 7,260 inches

The  ratio of the height of the model to the height of the actual space needle is calculated as follows;

ratio = ( height of model ) / ( height of actual space )

ratio = ( 15 inches ) / ( 7260 inches )

ratio = 1 : 484

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i need help please answer right away!

Answers

B and D are correct

Hope this helps have an excellent day!

the lungs provide oxygen to the blood

the acceleration of a particle is defined by the relation a = 9 − 3t2, where a and t are expressed in ft/s2 and seconds, respectively. the particle starts at t = 0 with v = 0 and x = 2 ft.

Answers

The exact time when this velocity of the object is again zero is found as : t = 3 sec.

Explain the term Acceleration?The rate at which a particle's velocity varies in relation to time is known as acceleration. Due to the fact that both the direction and magnitude are present, it is an vector quantity. Whenever its magnitude does have a negative value, it is sometimes referred to as deceleration.

The expression for acceleration is:

a = 9 − 3t²

Integrate the equation w.r.t time to get the velocity.

v = 9t - 3t³/3

v = 9t - t³

At t = 0 with v = 0 and x = 2 ft.

Pu v = 0.

0 = 9t - t³.

t(9 - t²) = 0

On simplification,

t = 0, 3, -3

Thus, the exact time when this velocity of the object is again zero is found as : t = 3 sec.

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The complete question is-

The acceleration of a particle is defined by the relation a = 9 − 3t2, where a and t are expressed in ft/s2 and seconds, respectively. the particle starts at t = 0 with v = 0 and x = 2 ft.

Determine the time when the velocity is again zero,

a 10 μf capacitor is connected to a 3.0 v battery. when the capacitor is charged, how much charge is on each plate?

Answers

When the capacitor is charged, 15 μC charge is on each plate.

The charge on each plate of a capacitor can be calculated as Q = C * V, where Q is the charge, C is the capacitance, and V is the voltage across the capacitor. In this case, C = 10 μF and V = 3.0 V,

so:

Q = 10 μF * 3.0

V = 30 μC

Therefore, each plate of the capacitor will have a charge of 30 μC / 2 = 15 μC.

A capacitor is an electrical thing that stores electric power in an electric powered area. It consists of two metal plates separated by a non-conductive material called a dielectric. When a voltage source is connected across the plates, an electric charge accumulates on each plate, creating an electric field between them. The amount of charge that can be stored on the plates, and the electric field strength, is proportional to the capacitance of the capacitor.

Capacitors are widely used in electrical circuits for various purposes such as filtering, coupling, and storing energy. They can be found in many different types of electronic devices, such as radios, televisions, computers, and power supplies.

Capacitors can also be used in power factor correction to regulate the flow of AC power in an electrical system. They can also be used in DC-DC converters to regulate the output voltage of a power supply.

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Consider the following calculation. 4.010 g/(0.08 cm)3 How many significant digits should be in the final answer? - 1- 2 - 3 - 4

Answers

In this calculation, the answer should be rounded to 2 significant digits and the final answer should be expressed as 4.0 x 10^2 g/cm^3.

The number of significant digits in a calculation refers to the number of digits that are meaningful and contribute to the accuracy of the result. In determining the number of significant digits in a final answer, the most important factor is the number of significant digits in the measurements used in the calculation.

In the calculation of 4.010 g/(0.08 cm)^3, the number with the fewest significant digits is 0.08 cm, which has two significant digits. Therefore, the final answer can only have two significant digits. This means that the final answer should be rounded to two significant digits, or written in scientific notation with two significant digits.

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a racecar goes around a turn at a speed of 50 m/s. the radius of curvature of the turn is 30 meters. at this point, calculate the car’s centripetal acceleration.

Answers

The centripetal acceleration of the racecar is 2500 m/s^2.

The centripetal acceleration of a racecar going around a turn can be calculated using the following formula:

a = v^2 / r

where:

a is the centripetal acceleration

v is the speed of the racecar, and

r is the radius of curvature of the turn.

Centripetal acceleration is important in many real-world applications, such as the motion of satellites around the Earth, the movement of cars on circular roads and amusement park rides, and the movement of electrons in an atom. The magnitude of centripetal acceleration determines the tightness of the circular path and how much the object is being pulled towards the center. Understanding centripetal acceleration is essential for designing and analyzing various systems and processes.

Given the values:

v = 50 m/s

r = 30 meters

We can substitute these values into the formula and solve for a:

a = v^2 / r

a = (50 m/s)^2 / 30 m

a = 2500 m/s^2

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suppose a mistake is made in preparing a batch of MSA and the starting pH if 7.8 instead of 7.2-7.6. would that affect the mediums sensitivity or specificity?

Answers

Yes, it would affect the mediums sensitivity or specificity and may lead to the incorrect or undesired results, due to the error in starting MSA pH.

A change in the starting pH of MSA (methylene blue active) medium from the recommended range of 7.2-7.6 to 7.8 could affect the medium's sensitivity and specificity. Methylene blue is a pH indicator in MSA medium, which is used to identify the presence of gram-negative bacteria. The color of methylene blue changes from blue to colorless in the presence of acid produced by gram-negative bacteria. The change in pH to 7.8 would result in a less acidic environment, which could affect the ability of the medium to detect the presence of acid-producing gram-negative bacteria, leading to reduced sensitivity. Furthermore, a change in the starting pH to 7.8 could also result in false positive results, as the color change of methylene blue can also be influenced by factors other than acid production. This could lead to a decrease in specificity, as the test could be giving false positive results for the presence of gram-negative bacteria.

In conclusion, a deviation from the recommended starting pH of MSA medium can affect the medium's sensitivity and specificity and may lead to incorrect results.

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A roller-coaster's largest drop is 30.0 meters. Assuming it starts from rest, what is the speed of the car( in m/s) at the bottom of this drop?

Answers

The speed of an object at the bottom of a vertical drop would be v ≈ 24.3 m/s.

What is equation of motion?

The equation of motion is a mathematical formula used to describe the motion of an object based on the forces acting on it. It relates the position, velocity, acceleration, and time of an object. The most common form of the equation of motion is Newton's second law, which states that the net force acting on an object is equal to the mass of the object multiplied by its acceleration.

The speed of an object at the bottom of a vertical drop can be determined using the equation of motion:

v = √(2gh), where

v is the final velocity (speed),

g is acceleration due to gravity (9.8 m/s²), and

h is the height of the drop (30.0 m).

Plugging in the values, we get:

v = √(2 × 9.8 × 30)

v = √(588)

v ≈ 24.3 m/s

So the speed of the car at the bottom of the drop is approximately 24.3 m/s.

The equation of motion is a mathematical formula used to describe the motion of an object based on the forces acting on it. It relates the position, velocity, acceleration, and time of an object. The most common form of the equation of motion is Newton's second law, which states that the net force acting on an object is equal to the mass of the object multiplied by its acceleration.

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What is the temperature lapse rate according to altitude in troposphere?

Answers

The temperature lapse rate in the troposphere is approximately 6.5°C per kilometer.

The temperature lapse rate is the change in temperature with height in the atmosphere. It is an important factor that affects weather patterns and atmospheric stability. In the troposphere, the lowest layer of the Earth's atmosphere, the temperature lapse rate is approximately 6.5°C per kilometer.

This means that for every kilometer increase in height, the temperature decreases by 6.5°C. This temperature decrease is due to the increasing distance from the Earth's surface, which receives the majority of the Sun's energy.

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when using a graduated pipet, at which point do you measure the volume?

Answers

Answer: Read the point on the graduated scale that coincides with the bottom of the curved surface of the liquid.

Explanation:

look at the drawing below of the electric field. what are the relative strengths and signs of the three charges?

Answers

The electric field strength E at any position may be described as the electric force F exerted per unit positive electric charge q at that point, or simply E = F/q.

The resultant force is doubled if the second, or test, charge is twice as large; nonetheless, their quotient, the measure of the electric field E, stays constant at any given position.

The intensity of the electric field is determined by the source charge rather than the test charge. Strictly speaking, the introduction of a tiny test charge, which has its own electric field, alters the existing field somewhat. The electric field may be conceived of as the force per unit positive charge that would be exerted before the presence of the test charge disturbs the field.

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Question: Determine If The Following Statements Are True Or False. The Magnitude Of A Vector Can Be Different In Different Coordinate Systems. It Is Possible To Add A Scalar To A Vector. A 2D Vector Can Have A Magnitude Equal To Zero Even When One Of Its Components It Nonzero. The Direction Of A Vector Can Be Different In Different Coordinate Systems. A 2D Vector

Answers

The statements about each of the suppositions are given below, to show whether they are true or false.

The True/False Statements

False. The magnitude of a vector is a scalar value that is independent of the coordinate system used to describe the vector.

False. A scalar is a single value, whereas a vector is a quantity with both magnitude and direction. Adding a scalar to a vector would not be meaningful.

True. A 2D vector with both components equal to zero has a magnitude equal to zero, but if one of its components is nonzero and the other is zero, it still has a nonzero magnitude.

True. The direction of a vector depends on the coordinate system used to describe it, and it can change when transforming from one coordinate system to another.

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in the video, the loaded car accelerated less than the unloaded car when the same force was applied. this was noticeable because the loaded car

Answers

The video demonstrates that, when the same force was applied to both cars, the loaded automobile accelerated less slowly than the unloaded car, which was apparent because the laden car was heavier.

An object's acceleration is inversely proportional to its mass and directly proportional to the force acting on it. This means that the more massive an object is, the less it will accelerated for a given force. In this case, the loaded car had a greater mass than the unloaded car, so the same force produced a smaller acceleration for the loaded car. This is why the loaded car appeared to accelerate more slowly than the unloaded car. The difference in acceleration is a direct result of the difference in mass and the same applied force.

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An Aircraft flies 800 miles in 60 minutes. How many miles does it fly in 4 hours and 30 minutes assuming a constant speed?
a. 3200
b. 3400
c. 3600
d. 3800

Answers

The answer is 3600 or c.

First, do 800 x 4 = 3200 since 60 minutes = 1 hour.

Next, do 800 ÷ 2 = 400 since 30 minutes is half of 800.

Finally, do 3200 + 400 = 3600.

Answer is 3600.

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how to write a program that converts degrees farenheit to degrees rankin

Answers

To write a program that converts degrees Fahrenheit to degrees Rankine, you can use a simple mathematical formula:

Rankine = Fahrenheit + 459.67

Here is an example of how you could write the program in Python:

python

Copy code

def fahrenheit_to_rankine(fahrenheit):

   rankine = fahrenheit + 459.67

   return rankine

fahrenheit = float(input("Enter temperature in Fahrenheit: "))

rankine = fahrenheit_to_rankine(fahrenheit)

print("Temperature in Rankine:", rankine)

Explanation:

The function fahrenheit_to_rankine takes a temperature in Fahrenheit as input and returns the equivalent temperature in Rankine.

In the function, the temperature in Rankine is calculated by adding 459.67 to the temperature in Fahrenheit. This is the mathematical formula for converting Fahrenheit to Rankine.

The user is prompted to enter a temperature in Fahrenheit using the input function, which returns the input as a string. The input string is then converted to a float using the float function.

The function fahrenheit_to_rankine is then called, passing the temperature in Fahrenheit as an argument. The returned value is stored in the variable rankine.

Finally, the temperature in Rankine is printed using the print function.

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in the 1860s, maxwell derived a set of mathematical equations that described electromagnetic waves that could have different wavelengths. these waves, which include visible light, have since been shown to

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in the 1860s, maxwell derived a set of mathematical equations that described electromagnetic waves that could have different wavelengths. these waves, which include visible light, have since been shown to have no wavelength limit, either short or long.

What is visible light?

Visible light waves are the only wavelengths of the electromagnetic spectrum that humans can see. The different wavelengths of visible light are seen as the colors of the rainbow: red, orange, yellow, green, blue, indigo, and violet.

What is the range of visible light?

The visible wavelengths cover a range from approximately 0.4 to 0.7 µm. The longest visible wavelength is red and the shortest is violet. Common wavelengths of what we perceive as particular colors from the visible portion of the spectrum are listed below.

What are the frequency and wavelength ranges of visible light?

Visible light has around 400 nm to 700 nm and a frequency range of around 400 THz to 800 THz. This part of the electromagnetic spectrum can be “seen” and distinguished optically by the human eye.

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A 100-kg object is taken to a height of 300km above the Earth's surface. (a) What is the object's mass at this height? (b) What is the object's weight at this height?

Answers

(a) The mass of the object remains the same, 100 kg, regardless of its height above the Earth's surface.

(b) The weight of the object at a height of 300 km above the Earth's surface is 9.80 N.

What is gravitational force?

Gravitational force is a fundamental force of nature that acts between two masses, attracting them towards each other. It is the force that governs the motion of celestial bodies, such as planets, stars, and galaxies, and is described by Isaac Newton's law of universal gravitation.

The weight of the object at a height of 300 km above the Earth's surface can be calculated using the equation for gravitational force:

F = G × (m₁ × m₂) / r²,

where m1 is the mass of the object (100 kg), m2 is the mass of the Earth, G is the gravitational constant (6.67 x 10⁻¹¹ N(m/kg²), and r is the distance between the centers of mass of the object and the Earth (the radius of the Earth plus the height of the object, approximately 6370 km + 300 km = 6670 km).

Putting these values into the equation, we get:

F = 6.67 x 10⁻¹¹ N(m/kg)² × (100 kg) × (5.97 x 10²⁴ kg) / (6670 km)² = 9.80 N

So the weight of the object is 9.80 N, which is a small fraction of its weight at the Earth's surface due to the reduced gravitational pull at a higher altitude.

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What is the acceleration due to gravity felt by a rocket with a mass of 8.2 × 10² kg and is in an orbit of about 110 km? Earth has a mass of 6.0 x 10^24 kg and a radius of 6,400 km.​

Answers

Answer:

The acceleration due to gravity felt by an object in orbit around the Earth can be calculated using the formula:

a = G * M / r^2

where G is the gravitational constant (6.67 × 10^-11 m^3 kg^-1 s^-2), M is the mass of the Earth (6.0 x 10^24 kg), and r is the distance between the object and the center of the Earth.

For an object in an orbit of about 110 km, we have:

r = 6,400 km + 110 km = 6,510 km = 6.51 x 10^6 m

Substituting into the formula:

a = 6.67 × 10^-11 * 6.0 x 10^24 / (6.51 x 10^6)^2

a = 9.80 m/s^2

So the rocket in an orbit of about 110 km would experience an acceleration due to gravity of approximately 9.8 m/s^2.

which process involves greatest heat transfer

Answers

The highest heat transfer occurs when one gram of steam is converted to one gram of water at 100 degrees Celsius.

Describe heat.

Heat is the result of the movement of kinetic energy within a material or an item, or from another fuel source to a material or an object. Irradiation, conduction, and convection are the three mechanisms through which such energy can be transferred. Energy sources for heating include electricity, combined heat and power, ground source combined heat and power, propane (LP), fossil fuels, oil, coals, and wood.

Heat is what kind of energy?

The energy that results from the motion of molecules and atoms in a medium is known as thermal energy, often known as heat. These electrons get hotter as they move more quickly. The heat energy of the ground is known as geothermal resources. Energy that is stored in rotational motion motion energy.

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what is the direction of the gravitational field midway between the earth and moon? ignore effects of the sun. towards the center of the earth towards the center of the moon towards the center of the sun

Answers

The direction of the gravitational field midway between the Earth and Moon is towards the center of the Earth.

A gravitational field is a model used to explain the influences that a massive body exerts on another massive body in the space around it. Thus, a gravitational field is used to explain gravitational phenomena and is measured in newtons per kilogramme (N/kg).

The gravitational force between two objects is proportional to the mass of each object and inversely proportional to the square of the distance between them.

Since the Earth is much more massive than the Moon, its gravitational pull dominates the field in the region between the two bodies. Thus, the direction of the gravitational field is towards the centre of the earth, not the centre of the moon or the sun.

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Two carts are initially moving to the right on a low-friction track, with cart 1 behind cart 2. Cart 1 has a speed twice that of cart 2 and so moves up and rear-ends cart 2, which has twice the inertia of cart 1.
Q1: Suppose that the the initial speed of cart 2 is vv. What is the speed of cart 1 right after the collision if the collision is elastic?
Express your answer in terms of v.
Q2:What is the speed of cart 2 right after the collision if the collision is elastic?
Express your answer in terms of v.

Answers

Q1: If the initial speed of cart 2 is v, the initial speed of cart 1 is 2v. If the collision is elastic, the momentum of the system is conserved before and after the collision.

The momentum of cart 1 before collision = m₁ * 2v

The momentum of cart 2 before collision = m₂ * v

Total momentum before collision = m₁ * 2v + m₂ * v

The momentum of cart 1 after collision = m₁ * v₁

The momentum of cart 2 after collision = m₂ * v₂

Total momentum after collision = m₁ * v1 + m₂ * v₂

Since the total momentum is conserved, we can equate the total momentum before and after the collision:

m₁ * 2v + m₂ * v = m₁ * v₁ + m₂ * v₂

Expanding the terms:

m₁* 2v + 2m₂ * v = m₁ * v1 + 2m₂ * v₂

Rearranging the terms:

v₁ = 2v * (m₁ + 2m₂) / (m₁ + m₂)

Since m₂ = 2m₁, we can substitute m₂ = 2m₁ into the equation:

v₁ = 2v * (m₁ + 2 * 2m₁) / (m1 + 2m₁) = 2v * (3m1) / (3m1) = 2v

So the speed of cart 1 right after the collision if the collision is elastic is 2v.

Q2: If the collision is elastic, the momentum of the system is conserved before and after the collision.

The momentum of cart 1 before collision = m₁ * 2v

The momentum of cart 2 before collision = m₂ * v

Total momentum before collision = m₁ * 2v + m₂ * v

The momentum of cart 1 after collision = m₁ * v1

The momentum of cart 2 after collision = m₂ * v₂

Total momentum after collision = m₁ * v₁ + m₂ * v₂

Since the total momentum is conserved, we can equate the total momentum before and after the collision:

m₁ * 2v + m₂ * v = m₁ * v₁ + m₂ * v₂

Expanding the terms:

m₁ * 2v + 2m₂ * v = m₁ * v₁ + 2m₂ * v₂

Rearranging the terms:

v₂ = 2v * m₁ / (m₁ + m₂)

Since m₂ = 2m₁, we can substitute m₂ = 2m₁ into the equation:

v₂ = 2v * m₁ / (m1 + 2m₁) = 2v * m₁ / (3m₁) = 2v / 3

So the speed of cart 2 right after the collision if the collision is elastic is 2v/3.

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Figure 17 is a position-time graph of the motion of a basketball thrown straight up. Use the graph to sketch the path of the basketball and to sketch a velocity-time graph of the basketball’s motion. a. Is the velocity of the basketball constant? b. Is the acceleration of the basketball constant? c. What is the initial velocity of the basketball?

Answers

a. No, the velocity of the basketball is not constant, b. No, the acceleration of the basketball is not constant, c. The initial velocity of the basketball is zero.

What is velocity?

Velocity is the speed of an object in a given direction. It is a vector quantity, meaning it has both a magnitude and a direction. It is usually measured in meters per second (m/s). Velocity can also be expressed in other units, such as kilometers per hour (km/h). Velocity is an important concept in physics, and is used to describe the motion of objects in a variety of situations, such as projectiles and waves. It is also used to calculate force, momentum, and energy. In order to calculate velocity, one needs to know both the object's displacement (change in position) and the time it took for the object to move from its starting point to its final position.

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why is force measured in newtons?

Answers

Answer:

The SI unit of force is named after the scientist who formulated the 3 laws of motion, Isaac Newton

Explanation:

Well, it's named after the scientist, as he has made a significant contribution in the field of kinematics, attributing various quantities in relation with new ones (momentum, for example) and has changed the way how people perceived motion altogether. What better way to thank the physicist than to name the unit of measurement of a quantity he long experimented with after him?

A Newton is basically 1 kg * 1 m/s², which is given by a standard equation
F = ma
while the proportionality constant was made equal to 1 for our convenience.

Hope this answers your question.

What is the kinetic energy of a 2000kg boat moving at 5m/s?

Answers

Answer:

25000 J or 25 kJ

Explanation:

K = 1/2 mv^2

where mass is in kilograms kg

and velocity is in metres per seconds m/s

Here, m = 2000, v = 5

v^2 = 5*5 = 25

1/2 mv^2 = 1/2 * 2000 * 25

= 50000/2

= 25000

Hope it helps!

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