b)to what form of energy do the chain molecules transfer the energy of the electrons?

Answers

Answer 1

In a chain molecule, the energy of electrons is transferred to chemical energy.

A chain molecule, also known as an electron transport chain, is a series of molecules located in the inner membrane of the mitochondria in eukaryotic cells or the plasma membrane in prokaryotic cells. This chain is involved in the process of oxidative phosphorylation, which is the final stage of cellular respiration that produces ATP, the primary energy currency of cells.

During oxidative phosphorylation, the chain molecules receive electrons from NADH and FADH2, which are produced in the previous stages of cellular respiration. As the electrons move through the chain, they lose energy, which is used by the chain molecules to pump protons (H+) across the membrane. This creates an electrochemical gradient, with a higher concentration of protons outside the membrane than inside.

The flow of protons back across the membrane through the ATP synthase enzyme drives the synthesis of ATP from ADP and inorganic phosphate. The energy released by this process is stored in the chemical bonds of the ATP molecule and can be used by the cell to power a wide range of biological processes.

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Related Questions

A 2-kg mass placed 30-cm to the

left of the fulcrum is balanced by

a 1-kg mass placed ______ cm to

the right of the fulcrum

Answers

Answer:

60 cm

Explanation:

Torque = τ = rFsinΘ

In this case Θ = 90, so sinΘ = 1

x = distance from fulcrum of the 1 kg mass

(2 kg)(g)(0.30 m) = (1 kg)(g)(x)         because the beam is in equilibrium

0.60 N·m = (1 N)x

x = 0.60 m = 60 cm

what is derivative of ln kx

Answers

The derivative of ln(kx) with respect to x is 1/x.

To find the derivative, we must be aware of the chain rule and product rule.

f(x) = g(h(x) (x) The chain rule can be utilised to implement functions.

G and h are two separate functions.

F(x) = g(h(x)) G(h(x)) = H'(x) = d/dx (x)

The product rule is the second rule. To determine whether a function is the sum of two other functions, we can utilise the product rule.

The chain rule must be applied to the query first.

D/dx = ln(kx)=1 (kx) D/DX (kx) (kx)

Now, by applying the product rule, it is possible to find the derivative of kx: The equation is: d/dx (x) + x (d/dx x) + x 0 = k

So the derivative of ln(kx) with respect to x is 1/x.

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blocks x and y are connected by a string that passes over a pulley, as shown in the figure. block y has more mass than block x . the string and pulley have negligible mass, and the pulley rotates with negligible friction. after the blocks are released from rest, what happens to the mechanical energy emech of the system consisting of the two blocks and earth?

Answers

As block y has more mass than block x, it will experience a more significant force due to gravity and accelerate downwards faster than block x. As block y moves downwards and block x moves upwards, the total kinetic energy of the system increases while the gravitational potential energy decreases. However, the total mechanical energy remains constant throughout the motion.

When will the mechanical energy of the system remains constant?

The mechanical energy of a system will remain constant when no non-conservative forces are acting on it, such as friction or air resistance. In other words, if the only forces working on the system are conservative forces, such as gravity or elastic forces, then the system's mechanical energy will be conserved.

What is the conservation of mechanical energy law?

The law of conservation of mechanical energy states that a system's total mechanical energy, which includes kinetic energy and potential energy, remains constant as long as only conservative forces act on the system. This means that the system's total energy cannot be created or destroyed but can only be transferred from one form to another.

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four parallel-plate capacitors are constructed using square plates, and each has a dielectric inserted between the plates.

Answers

Each capacitor's capacitance will decrease in the following order:

C> B> A> D.

An object that stores electrical energy is a capacitor. By building up electric charges on two nearby surfaces that are isolated from one another, a capacitor is a device that stores electrical energy in an electric field.

A passive electrical component having two terminals is a capacitor. Capacitance refers to a capacitor's effect. Faraday is the SI unit for capacitance (F).

C = ε₀ K A/ d

where the capacitor's area is A, the electric permittivity is 0, and the distance between the plates is d

The capacitance is inversely proportional to the distance and directly proportional to the cross-sectional area of the plates.

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Note: the full question is

Four parallel plate capacitors are constructed using square plates, and each has a dielectric inserted between the plates.

Sort the capacitance of each capacitor from highest to lowest.

Capacitor A: long side

l, distance between plates D, dielectric constant

Capacitor B: side length l

2, the distance between the plates D 2, the dielectric constant 4k.

Capacitor C: side length 2l, distance between plates D, dielectric constant 2k.

Capacitor D: side length l, plate spacing 2D, dielectric constant 2k.

What is one situation when experiencing static electricity?

Answers

Answer:

getting shocked

Explanation:

i didnt really get the answer really much but i hope this helps

Answer:

Hair standing up

Explanation:

When there is a lot of static electricity, your hair stands up.


A chair has four narrow legs holding it up. The same model of chair is next to it,
but the legs have been removed so that the entire base of the chair rests on the floor
Which is true, assuming the chairs have the same mass?

Answers

Assuming that the chairs have the same mass, the chair with the legs removed will have a lower center of mass compared to the chair with the legs that is present in Option A.

What is the center of mass?

The chair with the legs removed will have a lower center of mass compared to the chair with the legs because the center of mass of an object is the point where the weight of the object can be considered to act, whereas in the chair with the legs, the center of mass is located at the point where the legs meet the seat and In the chair with the legs removed, the entire base of the chair rests on the floor, so the center of mass is located at the geometric center of the chair's base.

Hence, the chair with the legs removed will have a lower center of mass compared to the chair with the legs that is present in Option A.

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The question is incomplete, complete question is below

A chair has four narrow legs holding it up. The same model of chair is next to it,

but the legs have been removed so that the entire base of the chair rests on the floor

Which is true, assuming the chairs have the same mass?

A)chair with the legs removed will have a lower center of mass compared to the chair with the legs

B) chair with the legs removed will have a HIGHER center of mass compared to the chair with the legs

What is vaporization pressure of water?

Answers

Vaporization pressure of water is the pressure exerted by water vapor when it is in equilibrium with liquid water at a specific temperature.

Vaporization pressure of water represents the point at which the rate of evaporation of water equals the rate of condensation of water vapor, and it varies with temperature and atmospheric pressure.

As temperature increases, the vaporization pressure of water also increases. At sea level, the vaporization pressure of water is approximately 4.6 millimeters of mercury (mmHg) or 0.006 atmospheres at 0 degrees Celsius (32 degrees Fahrenheit) and approximately 23.8 mmHg or 0.031 atmospheres at 25 degrees Celsius (77 degrees Fahrenheit).

The vaporization pressure of water is an important parameter in atmospheric science, climate research, and various industrial and technological applications such as humidity control, air conditioning, and power generation.

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Which type of cutting blade can be damaged by petroleum vapors?
A)
Carbide tip
B)
Wood
C)
Plastic
D)
Metal

Answers

The type of cutting blade that can be damaged by petroleum vapors is a carbide tip blade. Optio A

What are carbide tip blades?

Carbide tip blades are made of a combination of carbide and steel, which makes them durable and suitable for cutting through various materials, including metal, plastic, and wood.

However, carbide is vulnerable to corrosion and damage from certain chemicals, such as petroleum vapors, which can weaken the blade's structure and reduce its cutting performance.

Therefore, it is important to avoid exposing carbide tip blades to petroleum vapors and other corrosive substances to ensure their longevity and effectiveness.

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the si base units depend on the location where measurements are made. (true or false)

Answers

False. SI (International System of Units) base units are standardized and do not depend on the location where measurements are made.

The SI system is a globally recognised and standardised measuring system. The framework provides a standard paradigm for measuring physical quantities independent of location or circumstance. SI base units are universal measures that underpin this system.

These base units—meter, kilogramme, second, etc.—are defined globally. This standardisation promotes uniformity, accuracy, and a single language for science and technology by ensuring accurate and trustworthy scientific measurement communication across researchers, enterprises, and governments.

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the sum of a systems potential and kinetic energy is equal to what?
a. Mechanical energy
b. Muscular energy
c. Solar energy
d. Wind energy

Answers

The sum of the potential and kinetic energy of the systems is equal to the option a. mechanical energy of the system.

Mechanical energy in physics is the sum of kinetic energy and potential energy. According to the law of conservation of mechanical energy, when only conservative forces act in an isolated system, the mechanical energy remains constant. Potential energy increases when an object moves in the direction opposite to the conservative force. Kinetic energy also changes when the speed (not the speed) of an object changes. Although non-conservative forces, such as friction, will always exist in real systems, if they are small the mechanical energy changes very little, making the idea of ​​its conservation a useful approximation.

Kinetic energy is conserved in elastic collisions, but some mechanical energy can be converted to heat in inelastic collisions.

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the atomic number of iron is 26, which means it has 26 protons. how many electrons would it have?

Answers

Answer: 26 electrons

Explanation:

The number of electrons and protons will always be the same number unless you are looking at an isotope.

So for iron, for example, there will be 26 protons, 26 electrons, and 30 neutrons.

calculate approximately how long it takes light to travel from the sun to pluto

Answers

It takes approximately 5.5 hours for light to travel from the Sun to Pluto

The distance from the Sun to Pluto varies depending on the positions of the two objects in their orbits, as both the Sun and Pluto are constantly moving. However, on average, the distance from the Sun to Pluto is about 5.9 billion kilometers or 3.7 billion miles.

The speed of light is approximately 299,792 kilometers per second or 186,282 miles per second.

Using these values, we can calculate that it takes approximately 5.5 hours for light to travel from the Sun to Pluto

5.9 billion km ÷ 299,792 km/s

=> 19710 seconds

=> 5.5 hours.

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fiberglass is a good insulator because it traps __________, which is not a good conductor.

Answers

Fiberglass is a good insulator because it traps air, that is not a good conductor.

Insulators are matter that do not conduct heat or electricity well and are often used to reduce or avert the transfer of heat or electricity between objects or environments. Fiberglass is a type of insulation material made of fine glass fibers that are woven together into a mass.

In inclusion to being a good thermal insulator, fiberglass is also a good acoustic insulator. The fibers can trap sound waves, reducing their transmission and absorption.

This makes fiberglass shelter commonly used in building construction to reduce noise transfer between rooms or from outside sources.

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a reaction has a rate constant of 1.25×10−4 s−1 at 28 ∘c and 0.230 s−1 at 78 ∘c .A. Determine the activation barrier for the reaction. B. What is the value of the rate constant at 16∘C ?

Answers

A. The activation barrier for the reaction is the difference between the rate constants at the two temperatures, which is 1.02×10−3 s−1.

What is the temperatures?

The temperature can vary greatly depending on the location. In general, temperatures can range from very hot to very cold. In tropical climates, temperatures can reach up to the mid-30s Celsius (mid-90s Fahrenheit). In colder climates, temperatures can dip down to below -30 Celsius (-22 Fahrenheit). Temperatures can also vary greatly depending on the season. In summer, temperatures can be much higher than in winter. In some areas, temperatures can also vary depending on altitude, with higher altitudes having cooler temperatures.

B. The value of the rate constant at 16∘C can be estimated using the Arrhenius equation, which is k = A e^(-Ea/RT), where A is the pre-exponential factor, Ea is the activation energy, R is the universal gas constant, and T is the temperature in Kelvin. Plugging in the values for the two known temperatures, we get A = 1.25×10−4 s−1 and Ea/R = (0.230-1.25×10−4)/(8.314*(78+273)) = 6806.4 K. We can then use the equation to compute the rate constant at 16∘C, which is 0.14×10−4 s−1.

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why could the measured values obtained by other students be different from yours

Answers

The measured values obtained by other students can be different from the values taken by us because of the errors during the experiment.

When we perform any experiment we have to take care of two things and they are Precision and accuracy.

Precision means that how much the values are wearing from each other and accuracy means that how much the value is near to the actual value.

Sometimes while performing experiments measured by the other students can be different from the value taken by us because of the human error for the error in the instrument or any other factor interfering during the experiment performance.

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A solid sphere of mass M and radius R rolls without slipping down a rough incline that makes an angle θ with the horizontal. Find the magnitude of the linear acceleration a of the sphere.a. a = 5/7 gb. a = 5/3 g cos θc. a = 5/3 g sin θd. a = g sin θe. a = 5/7 g sin θf. a = 5/7 g cos θ

Answers

The correct answer is option C, a = 5/3 g sin θ. This formula takes into account the acceleration due to gravity, the angle of the incline, and the fact that the sphere is rolling without slipping.

What is Gravity?

Gravity is a natural phenomenon by which all physical bodies attract each other. It is most commonly experienced as the force that gives weight to objects with mass and causes them to fall towards the ground when dropped. It is the reason why objects stay in motion until they are either acted upon by another force or are stopped by a surface.

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Why do different atoms have different lines in their spectra?A. different elements have different energy levels for the electronsB. light from a continuous spectrum source passing through a cooler low-density gasC. an eruption of solar material from the photosphereD. aurorascommunication blackouts

Answers

The correct answer is A) Different elements have different energy levels for the electrons.

The other options listed (B, C, and D) do not explain why different atoms have different lines in their spectra. Option B describes the process of absorption spectroscopy, while options C and D describe phenomena that are not related to the properties of atomic spectra.

The lines in the spectra of different atoms are caused by the energy transitions that occur when electrons move between different energy levels within the atom. Each atom has a unique set of energy levels that are determined by the arrangement of its electrons and the properties of its nucleus, including its atomic number.

When an atom absorbs or emits light, the energy of the light matches the difference in energy between two energy levels of the electrons in the atom. This produces a line in the atom's spectrum that is characteristic of that element.

Therefore, the lines in the spectra of different atoms are unique and can be used to identify the elements present in a sample of matter. This technique is called spectroscopy and is used in a wide range of fields, including astronomy, chemistry, and materials science.

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5. Pilihan ganda30 detik1 ptQ. Electronegativity values for elements in Group 1A are much lower than the values for elements in Group 7A. What type of bond forms if an element in Group 1A bonds with an element from Group 7A?Pilihan jawabanhydrogen bondpolar covalent bondnonpolar covalent bondionic bond

Answers

When an element from Group 1A (also known as alkali metals) bonds with an element from Group 7A (also known as halogens), the resulting bond is an ionic bond.

When an element from Group 1A (also known as alkali metals) bonds with an element from Group 7A (also known as halogens), the resulting bond is an ionic bond.

This is because alkali metals have a low electronegativity value, meaning they have a tendency to lose their outermost electron to achieve a stable configuration. On the other hand, halogens have a high electronegativity value, meaning they have a tendency to gain an electron to achieve a stable configuration. When an alkali metal and a halogen come into contact, the alkali metal loses its outermost electron to the halogen, which gains the electron. This results in the formation of positively charged alkali metal ions and negatively charged halide ions.

Because the resulting ions have opposite charges, they are attracted to each other and form an ionic bond. Ionic bonds are typically strong and involve the transfer of electrons from one atom to another. They are often formed between metals and non-metals with a large electronegativity difference.

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under which conditions do you expect a sample of gas to behave most ideally?A) high temperature and low pressure.B) low temperature and high pressure.C) high temperature and high pressure.D) low temperature and low pressure.

Answers

Under option A) high temperature and low pressure, the sample of gases are expected to behave like an ideal gas.

The definition of an ideal gas is a gas whose molecular volume and intermolecular forces are so small that it does not affect the behavior of the gas.

A real gas is one that disobeys the gas laws under any conventional pressure and temperature conditions. As the gas grows large and voluminous, it departs from its optimal behaviour.

At higher temperatures and lower pressures, a gas typically behaves more like an ideal gas because the potential energy from intermolecular forces is less significant compared to the kinetic energy of the particles and the size of the molecules is less significant compared to the void space between them. Hence, option A is the answer.

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because relative humidity is dependent on air temperature, it is ____________ in the cooler mornings and ____________ in the warmer afternoons.

Answers

Because relative humidity is dependent on air temperature, it is generally higher in the cooler mornings and lower in the warmer afternoons.

This is because warm air can hold more water vapor than cool air, so as the temperature rises in the afternoon, the air has the capacity to hold more moisture. This means that the same amount of water vapor in the air will result in a lower relative humidity when the temperature is higher. Conversely, in the cooler mornings, the air has less capacity to hold moisture, so the same amount of water vapor in the air will result in a higher relative humidity.

It's important to note, however, that this pattern is not always true and can be affected by other factors such as wind, precipitation, and geography. Additionally, relative humidity is not the same as absolute humidity, which refers to the actual amount of water vapor in the air, regardless of temperature.

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point a is located 0.26 m away from a charge of -2.09 10-9 c. point b is located 0.46 m away from the charge. what is the electric potential difference vb − va between these two points?

Answers

The required electric potential difference Vb - Va is calculated to be 31.46 V.

The gravitational potential energy and the electrostatic potential energy are practically identical. In relation to the gravitational potential energy notion, we explore the electric potential energy formula. An electric charge will store the external work done on it in the form of electric potential energy or electrostatic potential energy when it is exposed to an external electric field. As a result, the external work performed by an agent in getting a charge or system of charges from infinity to the desired location without accelerating the charge is defined as the electric potential energy.

The electric potential at A due to the charge,

Va = 1/4πε₀ (Q/ra) = [- 9 × 10⁹ × (- 2.09 × 10⁻⁹)]/0.26 = 72.35 V

Electric potential at B due to the charge,

Vb = 1/4πε₀ (Q/rb)= [-9×10⁹ × (-2.09 × 10⁻⁹)]/0.46 = 40.89 V

Vb - Va = 72.35 - 40.89 = 31.46 V

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what mass m2 will allow the following mobile to maintain static equilibrium?

Answers

A mass of will allow the following mobile to maintain static equilibrium.

In the given figure, we can clearly see that the rods are horizontal and also it's given that they are in static equilibrium.

Therefore we can conclude that the torque on the points connecting the rods is equal due to 0.1 kg and m1 masses

So,

(0.1 kg) × (0.1 m) = (0.2 m) × (m1)

m1 = 0.05 kg

Applying the same procedure of equating torque with the combined mass of 0.1kg and 0.05 kg and m2,

we get,

(0.15 kg) × (0.2 m) = (0.4 m) × (m2)

m2 = 0.075 kg

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How do space probes help in navigation and or space exploration?

Answers

Space probes are unmanned spacecraft that are designed to explore the solar system and beyond. They are equipped with advanced technologies and scientific instruments that help in navigation and space exploration. Here are some ways that space probes are useful:

Mapping and Navigation: Space probes help to map and navigate the solar system. They collect data on the location, size, and movement of planets, moons, asteroids, and other celestial bodies. This information is used to help spacecraft navigate and avoid obstacles during missions.

Studying Planets and Moons: Space probes can land on and study planets and moons in the solar system. They collect data on the composition, temperature, and atmosphere of these bodies. This information is used to learn about the origins and evolution of the solar system.

Searching for Signs of Life: Space probes are used to search for signs of life on other planets and moons. They look for evidence of water, organic compounds, and other indicators that life may exist or have existed in the past.

Collecting Samples: Some space probes are designed to collect samples of rocks, soil, and other materials from other planets and moons. These samples can be studied to learn more about the composition and history of the solar system.

Communication: Space probes are equipped with antennas that allow them to communicate with Earth. They send back data and images that are used by scientists to learn more about the solar system.

Overall, space probes are important tools for navigation and space exploration. They help us learn more about the solar system and the universe beyond.

which of the following are characteristics of slab pull? multiple select question. gravity is a major force in slab pull. the heat of the asthenosphere pulls against the lithospheric slab. subducting plates move faster than nonsubducting plates. subducting oceanic lithosphere is denser than asthenosphere.

Answers

Gravity is a major force in slab pull Sub-ducting plates move faster than non-sub-ducting plates. Sub-ducting oceanic lithosphere is denser than asthenosphere are the characteristics of slab pull.

What is slab pull?

Slab pull is a process causing the subduction of oceanic lithosphere. It is the dominant mechanism of plate tectonic motion in which an area of the Earth's oceanic lithosphere moves under an overriding plate, which causes it to sink into the Earth's mantle. It occurs when the gravity of the sub-ducting slab of lithosphere, which is denser than the material around it, causes the slab to move slowly and steadily into the Earth's interior. The slab pull force is the major contributor to plate motion and is the result of the sinking of cold, dense lithosphere into the mantle.

The characteristics of slab pull are:

1. Subduction: Slab pull is caused by subduction, where one tectonic plate slides beneath another and is forced down into the mantle. Subduction occurs at convergent plate boundaries, such as subduction zones.

2. Negative Buoyancy: Sub-ducting lithosphere has a negative buoyancy, meaning it is denser than the surrounding asthenosphere and is therefore pulled down. This induces a down-force on the overriding lithosphere, which is known as slab pull.

3. Moving Plates: Slab pull is responsible for the movement of oceanic lithosphere, which is constantly being recycled. As oceanic lithosphere is sub-ducted, new lithosphere is formed at divergent plate boundaries and is then pushed away from the ridge.

4. Stress: Slab pull also plays a role in creating stress in the lithosphere. As plates move away from the ridge, they create tension in the lithosphere. This tension is released when the plates meet a subduction zone, resulting in an earthquake.

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(21) A car covered a distance of 180 km. with velocity magnitude 20 m./sec. on a straight road, then the time taken to cover this distance = ​

Answers

Answer:

i got u

Explanation:

To find the time taken to cover a distance of 180 km with velocity magnitude 20 m/sec, we can use the formula:

time = distance / velocity

Converting the distance to meters, we get:

180 km = 180,000 m

Plugging in the values, we get:

time = 180,000 m / 20 m/sec

Simplifying, we get:

time = 9,000 seconds

Therefore, the time taken to cover a distance of 180 km with velocity magnitude 20 m/sec is 9,000 seconds.

What is the excess charge on a conducting sphere of radius R=0.15m if the potential of the sphere is 1500V and V=0 at infinity?A2.5μCB2.5nCC2.5mCD25nC

Answers

2.5 μC is the excess charge on the conducting sphere. The correct answer is A.

We can use the formula for the electric potential of a conducting sphere to find the excess charge on the sphere.

V = k * Q / R

where V is the potential, k is Coulomb's constant (9 × 10^9 N·m^2/C^2), Q is the excess charge on the sphere, and R is the radius of the sphere.

We can rearrange this formula to solve for Q,

Q = V * R / k

Substituting the given values,

Q = (1500 V) * (0.15 m) / (9 × 10^9 N·m^2/C^2)

Q = 2.5 × 10^-6 C

Therefore, the excess charge on the conducting sphere is 2.5 μC (microcoulombs), which corresponds to answer A.

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How to convert newton meters to foot pounds

Answers

To convert Newton meters (Nm) to foot pounds (ft-lb), you can use the following conversion factor:1 Nm = 0.737562149 ft-lb

A newton meter (Nm) is a unit of torque or moment of force in the International System of Units (SI). It is defined as the amount of torque produced by a force of one newton applied perpendicularly to a moment arm or lever arm of one meter.

In other words, a newton meter is the amount of force required to produce one newton of torque when applied at a distance of one meter from the axis of rotation. It is commonly used in engineering, physics, and other fields to measure torque or rotational force, such as the force required to tighten a bolt or turn a crank.

The newton meter is also equivalent to a joule (J), which is the SI unit of energy, since torque can be thought of as a force acting over a distance. This means that one newton meter of torque is equivalent to one joule of energy.

So, to convert a certain number of Newton meters to foot pounds, you just need to multiply the number of Newton meters by the conversion factor.

For example, let's say you have 50 Newton meters and you want to convert it to foot pounds. Using the conversion factor, you would multiply 50 Nm by 0.737562149 to get:

50 Nm x 0.737562149 = 36.88160745 ft-lb

Therefore, 50 Newton meters is equivalent to approximately 36.88 foot pounds.

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James has ¥9.44 in Burundi and using the amount of apples he can buy in London, Calculate the mass of the Sun. Using that information, square root 5.3r% of Earth’s mass powered by the square root of 2.5pi and then assume he bought 8.33 apples and has 3pi¥ remaining. Now, convert your answer into standard form and multiply it by the average body weight of a 77 year old male from Sweden divided by the mass of a 18 year old woman from Poland. This question is worth 16 marks

Answers

Answer: 42

Explanation:

42 i believe (sorry if i’m wrong)

Assuming the mass of the moon is 7.4 * 10 ^ 12 kg and its radius is 1.7 * 10 ^ 6 * m what is the gravitational energy of 1 kg mass at the moon's surface, Assuming R = 6.4 * 10 ^ 6 m. M- 6 * 10 ^ 24 kg. g = 9.8m / (s ^ 2) G = 6.7 * 10 ^ - 11​

Answers

Answer:

1.620 m/s^2

Explanation:

The acceleration due to gravity on the surface of the moon can be calculated using the formula:

g = G * M / R^2

where g is the acceleration due to gravity, G is the gravitational constant, M is the mass of the moon, and R is the radius of the moon.

Substituting the given values, we get:

g = (6.67 × 10^-11 Nm^2/kg^2) * (7.4 × 10^22 kg) / (17.4 × 10^6 m)^2

g = 1.62 m/s^2

Therefore, the acceleration due to gravity on the moon is approximately 1.62 m/s^2.

36) The diagram below represents a bar magnet. Six locations, A through F, are labeled on the magnet.

Which two locations on the magnet would have the greatest attractive forces?
(1) A and F
(3) C and D
(2) B and E
(4) D and F

Answers

The magnetic field of two magnets is seen in the above figure: Label the other magnet poles on a copy of the diagram. 

What characteristics does a magnet have?

A substance or thing that creates a magnetic field is called a magnet. The most noteworthy characteristic of a magnet—a force that draws on other ferromagnetic elements, such as metal, steel, nickel, cobalt, etc.—as well as the ability to attract or repel other magnets—is caused by this invisible magnetic field.

What gives magnetism its origin?

The magnetic fields that surround magnets are what cause magnetism. By examining the forces that the fields apply to other magnets or magnetic fluids, the forces can be studied. A magnet can push against another magnet that is close by. There are two poles on magnets: Near the magnet's poles, the magnetic force is greatest.

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