The transmission of electrons from one item to another occurs during rubbing. When electrons are transferred from a body, that body loses electrons and gains a positive charge.
What happens when rubbing charges an object?
Friction is the movement of electrons between two things when they are brushed against one another. When a thing loses an electron, it becomes positively charged; when it gains an electron, it becomes negatively charged.
What is electron transmission?
A technique used to examine the features of incredibly small objects is transmission electron microscopy (TEM). A scientist can see features like structure and morphology using the technology, which involves an accelerated electron beam that passes through a very thin specimen.
The primary distinction between SEM and TEM is that the former produces images by detecting reflected or knocked-off electrons, whereas the latter produces images by using transmitted electrons (electrons that are traveling through the material).
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consider the moon when it is in the position shown in the moon phase diagram below. how much of the moon's total surface is illuminated by sunlight at this time?
At this time, approximately 50% of the moon's total surface is illuminated by sunlight.
Moon phases refer to the various ways the Moon looks to Earth over the course of about a month. The Moon will be lighted as it circles around the Earth and confronts the Sun. The phases of the Moon are the different configurations of the illuminated area that may be seen from Earth. There are 29.5 new phases every 29.5 days. The same side of the Moon always faces Earth due to tidal locking. The phases will consequently always cover the same part of the lunar surface. Exactly half of the whole surface of the moon is currently lit by sunlight.
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determine the friction force on the 40-kg crate, and the resultant normal force and its position x, measured from point a, if the force is p = 300 n. take ms = 0.5 and mk = 0.2
Therefore, the friction force is 30.48 N, the resultant normal force is 152.4 N, and the distance from point A is 793.7 mm.
The distance from point A is,
XΑ =400+X= 400 + 393.7= 793.7 mm
It can be defined as the force that acts in the perpendicular direction to the surface. The force may be a type of pull force or a type of a push force, Mathematically the force can be evaluated by the multiplication of the mass of the object and the acceleration of the object.
The force surfaces apply to stop solid objects from passing through one another is known as the normal force. A contact force is a normal force. A normal force cannot be applied between two surfaces that are not in contact.
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which of the following is an example of negative acceleration? responses mike starts riding his bike and uses the pedals to go from 0 km/h to 20 km/h. mike starts riding his bike and uses the pedals to go from 0 km/h to 20 km/h. mike sits on his bike at the top of the hill and rests. mike sits on his bike at the top of the hill and rests. mike pedals up a hill and gradually slows from 20 km/h to 5 km/h. mike pedals up a hill and gradually slows from 20 km/h to 5 km/h. mike coasts downhill without pedaling, going from 0 km/h to 15 km/h.
The example of negative acceleration is "mike pedals up a hill and gradually slows from 20 km/h to 5 km/h."
The example of negative acceleration is "mike pedals up a hill and gradually slows from 20 km/h to 5 km/h." Acceleration is defined as the change in velocity over time, and a decrease in velocity is considered negative acceleration. In this scenario, as Mike is pedaling up a hill and his speed is decreasing, he is experiencing negative acceleration. On the other hand, "mike coasts downhill without pedaling, going from 0 km/h to 15 km/h" is an example of positive acceleration as the velocity of the bike is increasing.
Acceleration is a measure of how rapidly the velocity of an object changes over time. It is a vector quantity, with both magnitude and direction. Acceleration is defined as the change in velocity divided by the change in time, and its unit is typically meters per second squared (m/s^2). Positive acceleration occurs when an object's velocity is increasing, while negative acceleration occurs when an object's velocity is decreasing. The magnitude of the acceleration depends on the rate of change of velocity, so an object with a greater rate of change will have a higher acceleration.
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in each case below an arrow has been shot
C-E>A>B=D. This is an application of conservation of energy.
A and B are shot horizontally, so their height does not change, thus they have the least gravitational potential energy at the start. C and E are shot at a 45° angle upwards, so they have more gravitational potential energy than A and B, but less than D. D is shot at a 45° angle downwards, so it has the greatest gravitational potential energy at the start, and therefore the greatest kinetic energy and speed at the bottom.
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Using conservation of energy, find the speed vb of the block at the bottom of the ramp.
The speed vb of the block at the bottom of the ramp can be found using the conservation of energy principle. The equation for the conservation of energy states that the initial total energy of an object (Potential Energy + Kinetic Energy) must remain constant throughout the motion.
The answer can be expressed in terms of variables m (mass), v (speed), h (height) and any appropriate constants. The formula for finding the speed vb is √ (v² + 2gh), where g is the acceleration due to gravity.
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heat in the amount of 7.5kj is added to a closed system during a process in which its internal energy decreases by 12 kj. how much energy is transferred to the system as work during this process?
The energy that is transferred to the system as works during this process is - 19.5 kJ.
According to the first law of thermodynamics ΔU = Q + W
Q = heatΔU = Q + W
W = ΔU - Q
W = - 12 - 7.5
W = - 19.5 kJ
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What is 150″ in to feet?
150in will be 12.5ft
What does the measuring unit foot mean?
"Feet" is the plural form of the single unit of measurement known as "foot." The symbol for foot or feet is, and the abbreviation is ft. One foot-long bags, for instance, can be written as either 1 ft or 1'.
Simply measure the length in inches, multiply the result by 12, and then you will have the conversion to feet. The linear footage is the resultant number. Height and width are unimportant for this dimension.
1 inch equals 2.54 cm or 0.0254 m.
1 foot equals 12 inches,150 inches will be 12.5 feet (ft).
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(a) If a 500-mL glass beaker is filled to the brim with ethyl alcohol at a temperature of 5.00ºC, how much will overflow when its temperature reaches 22.0ºC ? (b) How much less water would overflow under the same conditions?
When the temperature of the 500 mL glass beaker filled with ethyl alcohol reaches 22.0ºC, the increase in temperature will cause the volume of the liquid to expand, causing some of the liquid to overflow.
The amount of overflow can be estimated by calculating the difference in volume between the ethyl alcohol at 5.00ºC and 22.00ºC. When water is used instead of ethyl alcohol, the volume of overflow will be less due to water's lower coefficient of expansion.
To calculate the amount of overflow, the difference in volume between the water at 5.00ºC and 22.00ºC must be calculated.
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if one of the masses is doubled, the other remains unchanged, and the distance of separation is tripled, show what happens to the force.
If one of the masses is doubled while the other remains the same and the separation between them is tripled, the force becomes weaker.
If one of the masses is doubled and the distance of separation is tripled, the gravitational force between the two objects changes as per the formula,
F = G * (m1 * m2)/d^2,Where:
F is the forceG is the gravitational constantm1 and m2 are the massesd is the distance of separationAs the mass of one object is doubled, the numerator of the formula increases by a factor of 2. Meanwhile, as the distance of separation is tripled, the denominator increases by a factor of 9. Therefore, the overall effect is that the force decreases by a factor of 9/2, or 4.5 times.
In other words, the force becomes 4.5 times weaker.
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enn Discuss in on! groups the impact of energy Conservat 1. A parent of four children. 2. Shopkeeper 3. Electricity Company of Ghana (ECG). Answers
Energy conservation can impact families with children, shop owners and an electrical companies in various ways.
What are the effects of energy conservation?For a parent of four children, energy conservation can help reduce household expenses by reducing the amount of energy used for heating, cooling, and lighting. This can have a direct impact on the family's budget, freeing up money for other necessary expenses.
For a shopkeeper, energy conservation can help reduce business expenses and increase profits by reducing the cost of energy for lighting, heating, and cooling the store. Additionally, it can demonstrate the shopkeeper's commitment to environmental sustainability and attract customers who value eco-friendly practices.
For the Electricity Company of Ghana (ECG), energy conservation efforts can lead to a reduction in demand for electricity and a corresponding decrease in the amount of energy they need to produce and distribute. This can help reduce the burden on the energy grid and reduce the need for investments in new energy infrastructure. Additionally, reducing energy consumption can help reduce the company's carbon footprint, which is important for the environment and public perception.
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The complete question is:
Discuss in groups the impact of energy Conservation 1. A parent of four children. 2. Shopkeeper 3. Electricity Company of Ghana (ECG). Answers
At 15 ∘C , a 3. 00- cm -diameter gla cylinder i filled with glycerin to a height of 25. 0 cm. If the temperature increae, the glycerin expand in volume and the diameter of the cylinder undergoe a linear expanion
The height of glycerin at a temperature of 65 °C would be 24.57 cm.
Given that:
Initial temperature (t1) = 15°CFinal temperature (t2)= 65°CΔt = t2 - t1 = 65 - 15 = 50°C = 50 K
Diameter of the glass cylinder (d1) = 3 cmCoefficient of linear expansion for glass / ∝ = 9 * 10⁻⁶/°CDiameter of the glass cylinder after expansion (d2) = d1 (1 + ∝ Δt)
d2 = 3 ( 1 + 9 * 10⁻⁶ * 50)
= 3 ( 1 + 450 * 10⁻⁶)
= 3 ( 1 + 0.00045)
= 3.00135 cm
The initial volume of glycerin (V1) = ((π * d1²) / 4) * h1
= (3.14 * 3² / 4) * 24
= 169.56 cm³
Volume after expansion (V2) = V1 ( 1 + γ Δt)
V2 = 169.56 (1 + 5 * 10⁻⁴ * 50)
= 169.56 ( 1 + 0.025)
= 169.56 (1.025)
= 173.79 cm³
Apply the volume formula again to the final volume to find out the final height.
V2 = ((π * d2²) / 4) * h2
173.79 = ((3.14 * 3.00135²) / 4) * h2
h2 = 696.196 / 28.285
= 24.57 cm
Your question seems incomplete. The completed version is most likely as follows:
At 15 ∘C, a 3. 00- cm -diameter glass cylinder is filled with glycerin to a height of 24. 0 cm. If the temperature increases, the glycerin expands in volume and the diameter of the cylinder undergoes a linear expansion.
What will be the height of glycerin at a temperature of 65 °C?
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if an electric field is being generated by a positive charge a. what will be direction of electric field lines - away or toward the charge? b. if another test charge q is brought in this electric field, and released, where will q move - toward or away from original charge q? c. if instead a -ve charge q is brought into the field and released, predict where would it move - toward or away from the charge q?
An electric field is a field that surrounds a charged particle or a collection of charged particles and can affect other charged particles in the vicinity.
What do you mean by electric field ?The strength of the electric field at a particular point is defined as the force per unit charge at that point. It is a vector field that represents the force that would be exerted on a test charge placed in that field.
Electric fields can be created by stationary charges or by changing charges, such as those in an oscillating electric circuit. They are an essential component of our understanding of the behavior of charged particles and play a crucial role in many natural phenomena and technological applications, including electricity, electromagnetism, and electronics.
a. The direction of electric field lines generated by a positive charge is away from the charge. Electric field lines always point away from positive charges and toward negative charges.
b. If a positive test charge "q" is brought into this electric field and released, it will move away from the original positive charge. Electric field lines exert a force on charged particles in the direction of the field lines, and positive charges experience a force away from a positive charge.
c. If a negative test charge "q" is brought into this electric field and released, it will move toward the original positive charge. Electric field lines exert a force on charged particles in the direction of the field lines, and negative charges experience a force towards a positive charge.
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Which one of the following statements is true concerning the strength of the electric field between two oppositely charged parallel plates?(a) It is zero midway between the plates(b) It is a maximum midway between the plates.(c) It is a maximum near the positively charged plate.(d) It is constant between the plates except near the edges
d) It is constant between the plates except near the edges is true statements concerning the strength of the electric field between two oppositely charged parallel plates.
Get to know the definition of an electric fieldThe electric field is an effect or impact that arises due to the presence of an electric charge. Whether it's protons, ions, or electrons in the space around it. In other words, the electric field is a spatial sector that arises due to the existence of an electric force, usually consisting of two or more charges.
This electric field has units of N/C (Newton/Coulomb). Meanwhile, to describe it, is to use lines of electric force (imaginary lines). Where the curved line is the path traversed by a positive charge and moves in an electric field.
The lines of electric force will not intersect because the lines of electric force are imaginary lines that start from a positively charged object and end on a negatively charged object.
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what is the wavelength of 0.150 kg baseball traveling 40.0 m/s?
The wavelength of a 0.150 kg baseball traveling 40.0 m/s is 0.000375 m.
What is the wavelength ?Wavelength is a physical property of a wave, and it is defined as the distance between two adjacent peaks or troughs in a wave. In the case of light, wavelength is usually expressed in nanometers (nm), which is one billionth of a meter. Wavelength is related to frequency, as the higher the frequency of a wave, the shorter its wavelength will be. Different colors of light have different wavelengths; for example, red light has a wavelength of approximately 700 nm, while blue light has a wavelength of approximately 470 nm.
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Help please!!!! What is the connection between poverty and soil erosion in developing countries?
Answer:
Soil erosion is the single most important environmental degradation problem in the developing world. Despite the plethora of literature that exists on the incidence, causes and impacts of soil erosion, a concrete understanding of this complex problem is lacking. This paper examines the soil erosion problem in developing countries in order to understand the complex inter-relationships between population pressure, poverty and environmental-institutional dynamics. Two recent theoretical developments, namely Boserup's theory on population pressure, poverty and soil erosion and Lopez's theory on environmental and institutional dynamics have been reviewed. The analysis reveals that negative impacts of technical change, inappropriate government policies and poor institutions are largely responsible for the continued soil erosion in developing countries. On the other hand, potential for market-based approaches to mitigate the problem is also low due to the negative externalities involved. A deeper appreciation of institutional and environmental dynamics and policy reforms to strengthen weak institutions may help mitigate the problem.
hope it's right kiddo
an aquiclude is a material (rock or sediment) that:
An aquiclude is defined as a saturated geologic unit that is incapable of transmitting significant quantities of water under ordinary hydraulic gradients.
An aquiclude is a geological formation that is impermeable to water flow. It contains a large amount of water, but it does not allow water to pass through it and does not produce water. This is due to its high porosity. Aquiclude is exemplified by clay.
Because of its waterproof function, aquiclude plays an important role in controlling roof water inrush as a major protective layer beneath the aquifer.
When an aquifer is overlaid by a confined bed of impervious material, an aquiclude forms. Clay is one example of aquiclude.
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What is the acceleration on Jupiter?
The acceleration due to gravity on Jupiter is approximately [tex]24.79 m/s².[/tex]This means that if you were to drop an object on Jupiter, it would fall to the surface at a rate of 24.79 m/s every second.
The strength of gravity on a planet depends on its mass and radius, and Jupiter has a much larger mass and radius than Earth, which is why its acceleration due to gravity is so much stronger.
The acceleration due to gravity on a celestial body can be calculated using the following formula:
[tex]g = (G * M) / r^2[/tex]
where g is the acceleration due to gravity, G is the gravitational constant ([tex]6.67 x 10^-11 N*(m/kg)^2[/tex]), M is the mass of the planet, and r is the radius of the planet.
Jupiter has a mass of [tex]1.898 x 10^27[/tex]kg and a radius of 69,911 km, which gives it an acceleration due to gravity of[tex]24.79 m/s².[/tex] This means that if you were to drop an object from a height on Jupiter, it would fall to the surface at a rate of 24.79 m/s every second.
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what mass of water at 100°c should be added to make the temperature of the mixture 50°c.(neglect heat losses to the surrounding)
The mass of water at 100°C that should be added to 15g of water at 40°C to make the temperature of the mixture 50°C is 3 g.
What is the mass of water required?The mass of water required is calculated as follows:
Heat lost = heat gained
Neglecting heat losses to the surroundings
Heat change = mass * specific heat capacity * temperature change
Neglecting specific heat of water
Heat lost = mass * (100 - 50)
Heat gained = 15 * (50 - 40)
Mass * (100 - 50) = 15 * (50 - 40)
Mass = (15 × 10 )/50
Mass of water = 3g
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Complete question:
What mass of water at 100°c should be added to 15g of water at 40°c to make the temperature of the mixture 50°c?
[Neglect heat losses surrounding]?
The Current in a wire is 0.500A. How much charge flows through a cross section of the wire in 10.0s? How many electrons move through the same cross section in 10.0s?
5 Coulomb charge flows through a cross section of the wire in 10 sec, and 3.1205 × 10¹⁹ electron passing through the same cross section in 10 seconds.
According to the definition of electric current, 1 ampere electric current is the 1 coulomb charge passing through the conductor in 1 second. 1 coulomb charge contains 6.241 x 10¹⁸ electrons. So,
0.5 A current flow means 0.5 C charge flows in 1 second.
So, the charge flows in 10 sec, = 0.5 × 10 = 5 C
Number of electrons pass in 10 seconds, n = 5 × 6.241 x 10¹⁸
n = 3.1205 x 10¹⁹
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TRUE/FALSE. when measuring the volume of water in a graduated cylinder it is important that your eye is parallel to the meniscus.
The statement is true, when measuring the volume of water in a graduated cylinder it is important that your eye is parallel to the meniscus.
This is because the meniscus, the curved upper surface of the liquid, is where the true liquid level lies. If your eye is not parallel to the meniscus, you may not see the true liquid level and therefore not get an accurate measurement of the volume of liquid in the cylinder. To ensure an accurate measurement, it is best to view the meniscus at eye level with the cylinder on a flat surface, so that your eye is parallel to the surface of the liquid. A meniscus is the curved surface of a liquid in a container, caused by the combination of the liquid's surface tension and the adhesion to the sides of the container. The type of meniscus formed depends on whether the liquid has higher adhesion to the container or higher surface tension.
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a homeowner wants to install wall-to-wall carpeting in a living room of length 9.16 m and width 6.1 m. what is the area of the room (in m2)? express your answer using the proper number of significant figures.
The area of the room that a home owner wishes to install wall-to-wall carpeting in the living room of length 9.16 m and width 6.1 m. is 55.876 m²
How to determine the area?The formula for the area, 'A,' of a rectangle whose length and width are 'l' and 'w,' respectively, is the product of length and width, that is, "A = l x w".
Where,
A = the area (m²)
l = length (m)
w = width (m)
To determine the length and width of a rectangle, first compute the width 'w' using the area of rectangle formula, 'w = A/l'. Then, in the formula for the perimeter of a rectangle, substitute the value of width and simplify the value of length 'l'.
Hence,
the area of the living room:
A = (9.16 m) x (6.1 m)
= 55.876 m²
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In the example illustrated in the image above, a substance is moved _______BLANK its concentration gradient using the energy of ______________BLANK.
1. Against; an electrochemical gradient.
2. Against ATP
3. Down; and electrochemical gradient.
4. Down; ATP.
In the example illustrated in the image above, a substance is moved against its concentration gradient using the energy of an electrochemical gradient.
ABOUT ELECTROCHEMICAL GRADIENTAn electrochemical gradient is a gradient of electrochemical potential, usually for ions that can move across the membrane. The gradient consists of two parts, the chemical gradient, or the difference in concentration of solutes across the membrane, and the electrical gradient, or the difference in charge across the membrane.
When there are unequal ion concentrations across a permeable membrane, ions will move across the membrane from an area of high concentration to an area of lower concentration by simple diffusion.
Ions also carry an electric charge that forms an electric potential across a membrane. If there is an unequal distribution of charges across the membrane, then the difference in electric potential produces a force that drives the diffusion of the ions until the charges are balanced on both sides of the membrane.
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5. At the 1984 Winter Olympics, William Johnson of the United States reached a speed of 104.5 km/h in the downhill skiing competition. Suppose Johnson left the slope at that speed and then slid freely along a horizontal surface. If the coefficient of kinetic friction between the skis and the snow was 0.120 and his final speed was half of his initial speed, find the distance William travelled.
To find the distance William travelled, we can use the formula:
[tex]d = v^2 / (2 * μ * g)[/tex]
Substituting the values:
[tex]d = 14.5^2 / (2 * 0.120 * 9.8)\\d = 210.375 / 2.336\\d = 89.69 m[/tex]
So, William travelled a distance of approximately 89.69 meters before coming to a stop.
What is distance?Distance is a scalar quantity that represents the magnitude of separation between two points in space. It is often described as the amount of ground an object has covered. Distance can be calculated by multiplying speed (a scalar quantity) by time (a scalar quantity).
The unit of measurement for distance is typically meters, feet, kilometers, miles, etc. The concept of distance is fundamental to physics and is used in various applications such as determining the length of a race, the distance between two cities, or the distance between two celestial bodies.
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What are 10 examples of physical changes?
The physical change is one that affects a substance's physical properties rather than its chemical ones. Typically, they are reversible.
What 7 physical changes occur?A physical change is accompanied by a change in the physical characteristics. A few examples of physical attributes include melting, becoming a gas, altering strength or durability, altering the crystal structure or texture, and altering structure, size, color, volume, or density.
What ten physical changes take place during puberty?Puberty typically starts between both the years of ten and 11 both for boys and girls. Either sooner or later, it might occur. During puberty, kids get bigger, heavier, and stronger. Additionally altering are a woman's thoughts, complexion, hair, teeth, and perspiration.
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firefighters use a high-pressure hose to shoot a stream of water at a burning building. the water has a speed of 25.0 m/s as it leaves the end of the hose and then exhibits projectile motion. the firefighters adjust the angle of elevation α of the hose until the water takes 3.00 s to reach a building 45.0 m away. ignore air resistance; assume that the end of the hose is at ground level.
The angle that allows the water to reach a building 45 m away in 3 seconds is the angle of elevation, α, for the hose is 67.3°.
The angle of elevation, α, can be found using the following equation:
α = arctan ([tex]v_y[/tex] / [tex]v_0[/tex])
where [tex]v_0[/tex] is the initial velocity of the water, and [tex]v_y[/tex] is the vertical velocity of the water after time t. We can find [tex]v_y[/tex] using the following kinematic equation:
[tex]v_y[/tex] = [tex]v_0[/tex] sin α - g t
where g is the acceleration brought on by gravity (9.8 m/s2). We can also find the range (the distance the water travels horizontally) using the following equation:
R = [tex]v_0[/tex] cos α t
Setting R = 45 m and t = 3 s, and solving for α using these two equations, we find that α = 67.3°.
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A student pushes a 40-n block across the floor for a distance of 10 m. How much work was done to move the block? responses 4 j 4 j 40 j 40 j 400 j 400 j 4,000 j.
The work done by the student pushing a 40-newton block across the floor for a displacement of 10 meters is equal to 400 J.
Work has a wide range of meaning. In physics though, work is defined to be the energy transformed or transferred. Energy is something we need to function. In a specific sense, we can define energy as something we need to move. We can't directly measure energy, but we can still calculate the flow of energy with work.
Work is mathematically defined as force F times displacement x (W = F · x). This can mean that there must be work done when things are moving.
We're given a force of 40 newtons and a distance (displacement) of 10 meters. Using the work equation, the work done to move the block is then equal to 400 joules, which is equal to 400 newton-meters, since 40 newtons x 10 meters = 400 newton-meters.
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Learning Task 1
Define or describe the following words related to sports. If you are not familiar with the
word, you may ask assistance from your family.
5. Ball
1. Table
3. Ping-pong
6. Racket
4. Net
2. Tennis
patulong po.
HEART AND RATE 5
Define or explain the following words related to sports:
Ball - The 40mm ball is used in table tennis. It must be thrown toward the opponent to score points.Table - Table tennis is played at a table. When playing table tennis, a certain table size must be used.Ping-pong - this sport is also known as table tennis.Racket - This is used to hit the ball.Net - is the boundary that will be placed in the center of the table.Tennis - This is a sport that uses a racket and a ball. The mini version is called table tennis.Table tennis or ping pong is a sport that involves two or four players hitting a light ball called a ping pong ball on the table using small solid rackets called bets. The game is played on a table divided by a net.
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Constantly moving system of deep-ocean circulation driven by temperature and salinity; moves water around the Earth.
California Current
Global Conveyor Belt
Surface Currents
Gulf Stream
Global Conveyor Belt is constantly moving system of deep-ocean circulation driven by temperature and salinity; moves water around the Earth.
Explain global conveyor belt.The deep-ocean circulation system known as the "global ocean conveyor belt" is constantly moving, driven by temperature and salinity. The deep-ocean circulation system known as the "global ocean conveyor belt" is constantly moving, driven by temperature and salinity. Water is transported around the world by the huge ocean conveyor. The ocean is not an expanse of still water. The ocean is like a giant conveyor belt that is constantly in motion. The "global conveyor belt" is a system of currents that is driven by the hermohaline circulation. In the North Atlantic, close to the pole, the conveyor belt starts at the water's surface. In this location, arctic temperatures chill the water.
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Global Conveyor Belt is constantly moving system of deep-ocean circulation driven by temperature and salinity; moves water around the Earth.
What is global conveyor belt?The Global Conveyor Belt is a major driving force behind many of the world's oceanic currents. It is a continuous circulation of deep ocean water, driven by temperature and salinity differences between different parts of the ocean. The Global Conveyor Belt begins in the northern Atlantic Ocean, where a combination of factors create a strong surface current. This current carries warm, salty water from the Gulf of Mexico and the Caribbean Sea northward, where it cools and sinks to form a deep current that flows back towards the equator. This deep current is then joined by a cold, low-salinity current from the Antarctic region, creatig na continuous circulation of deep ocean waters around the globe.
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A point charge q1exerts an electric force on a second point charge q2. If a third charge q3is brought near to q2, the electrostatic force exerted by q1on q2will(Presence of charges in the vicinity does not change the force between any two charges)AdecreaseBincreaseCremain unchangedDincreases, if q3is of same sign as q1and decreases, if q3is of opposite sign.
The electrostatic force between two point charges remains unchanged in the presence of other charges, and the presence of a third charge does not affect the force between the two original charges hence C) is the correct option.
The electrostatic force between two point charges is determined by Coulomb's law, which states that the force between two point charges is directly proportional to the product of their charges and inversely proportional to the square of the distance between them.
The electrostatic force between two point charges is independent of the presence of other charges in the vicinity.
Therefore, the presence of a third point charge q3 near q2 will not change the electrostatic force exerted by q1 on q2. The force exerted by q1 on q2 will remain unchanged, regardless of whether q3 is of the same sign or opposite sign as q1.
This is because the electrostatic force between two point charges depends only on their charges and the distance between them, and not on the presence of other charges.
Therefore, the electrostatic force between two point charges remains unchanged in the presence of other charges, and the presence of a third charge does not affect the force between the two original charges hence option C) is the correct option.
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why is the molecular structure of the photovoltaic cells important for the efficiency of the cells?
Answer:
The molecular structure of photovoltaic cells is important for their efficiency because it affects the ability of the cells to absorb and convert light into electricity. The photovoltaic effect, which is the basis of solar cell operation, occurs when photons of light excite electrons within the cell material, causing them to become free from their atomic bonds and creating an electrical current.
The molecular structure of the photovoltaic cell material determines the electronic properties of the material, such as the bandgap energy and the electron mobility, which play a crucial role in the photovoltaic effect. The bandgap energy determines the minimum energy required to excite an electron, and the electron mobility determines how easily the electrons can move within the material.
If the molecular structure is poorly designed, the bandgap energy may be too low to effectively absorb the desired light, or the electron mobility may be too low to allow the electrons to move efficiently, both of which can lead to a reduction in efficiency. On the other hand, if the molecular structure is optimized, the photovoltaic cells can absorb light more effectively, the electrons can move more efficiently, and the overall efficiency of the cells can be improved.
Therefore, the molecular structure of photovoltaic cells is an important factor in determining their efficiency and is carefully considered by scientists and engineers in the design and development of new photovoltaic materials and technologies