1. Pilihan ganda30 detik1 ptQ. For object A to have a higher absolute temperature than object B, which of the following must object A have?Pilihan jawabangreater specific heathigher average internal potential energygreater masshigher average internal kinetic energy

Answers

Answer 1

The correct answer is: object A must have a higher average internal kinetic energy than object B to have a higher absolute temperature.

To understand which of the given options would make object A have a higher absolute temperature than object B, we first need to understand what temperature is and how it is related to the properties of an object.

Temperature is a measure of the average internal kinetic energy of the particles in an object. The greater the average internal kinetic energy, the higher the temperature. So, to have a higher temperature than object B, object A must have a higher average internal kinetic energy.

Now let's consider the given options:

Greater specific heat: Specific heat is the amount of energy required to raise the temperature of a unit mass of a substance by one degree Celsius. Having a greater specific heat would not directly affect the temperature of an object, as it only determines how much energy is required to change its temperature.Higher average internal potential energy: Internal potential energy refers to the energy stored within an object due to the position and arrangement of its particles. While it is related to temperature, it is not the determining factor in an object's temperature.Greater mass: Mass is also not a determining factor in an object's temperature. While larger objects may require more energy to heat up or cool down, they do not necessarily have a higher temperature than smaller objects.

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Related Questions

any change in the speed or direction of an object is called

Answers

Answer:Acceleration

Explanation: The change in the speed or direction of an object is called Acceleration, Objects that are changing their speed or their direction are said to be accelerating.

Answer:

acceleration :)

Explanation:

any change

Friction is directly related to the ____ of the object and the ____ of the interacting surfaces.
A. Roughness
B. Weight

Answers

Answer:

The first one is weight and the second one is roughness.

Explanation:

At the end of the sentence it says surfaces which one can assume texture, therefore roughness would most likely go last.

where does the energy that propels a bicycle forward come from?

Answers

The energy that propels a bicycle forward ultimately comes from the rider, who supplies the power to pedal the bicycle.

When the rider pedals, they convert chemical energy from their body into mechanical energy, which is transmitted through the pedals to the chain and then to the wheels.

The mechanical energy from the wheels propels the bicycle forward by overcoming the resistance to motion provided by various forces such as friction, air resistance, and gravity. The energy is transferred from the wheels to the ground, and the ground pushes back with an equal and opposite force, propelling the bicycle forward.

In a sense, the energy that propels a bicycle forward comes from the food that the rider eats, which provides the chemical energy that is converted into mechanical energy through the process of metabolism. So, the rider's body acts as the power source for the bicycle, and the energy is transferred through the mechanical components of the bicycle to propel it forward.

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combining glass, a filament, and metal base (all of which previously existed) to form a new tool called the light bulb is an example of .

Answers

Answer:

Combining glass, a filament, and metal base to form the light bulb is an example of innovation. Innovation is the process of combining existing elements in new and novel ways to create something original.

huge rolating cloud particles In space gravitate together forming increasingly dense ball, it shrinks size and rolales slower
a. trueb. false

Answers

Answer: b

Explanation: no cule

What is difference between kernel stack and pcb ?

Answers

The Kernel Stack and PCB (Process Control Block) are two crucial CPU memory management structures.

The temporary memory allotted to each process, known as the kernel stack, holds details about how the program was executed. It is used to store return addresses, local variables, and argument values.

The PCB, on the other hand, is a structure of permanent memory that houses details about the process, including its ID, the contents of its CPU registers, and its program counter.

As a process is running, the kernel stack is used to retain its state, and the PCB is used to store details about the process, such as its process ID, control registers, and program counter. When a process finishes running, the kernel stack is wiped, but the PCB stays in memory until the process is finished.

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how to convert 40celsius to fahrenheit?

Answers

40 degree Celsius in Fahrenheit is 104F. Fahrenheit and Celsius are related in that they are both units of temperature measurement.

To convert Celsius to Fahrenheit, you need to use the formula:

[tex]F = (9/5) * C + 32[/tex]

In this case, the formula would be:

[tex]Fahrenheit = (9/5) * 40 + 32[/tex]

Fahrenheit = 72 + 32

Fahrenheit = 104°F

Therefore, 40°C is equal to 104°F.

The formula for converting a temperature from Fahrenheit to Celsius is [tex](F - 32) * 5/9[/tex]. This formula can be used to find the Celsius equivalent of any temperature given in Fahrenheit. Celsius, also known as centigrade, was developed by Swedish astronomer Anders Celsius in the mid 1700s. It is a scale based on 0 degrees as the freezing point of water and 100 degrees as the boiling point of water.

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What is value of Stefan-Boltzmann constant?

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The Stefan-Boltzmann constant (represented by the symbol σ) is a physical constant that relates the intensity of thermal radiation emitted by a blackbody to its temperature.

It is named after the Austrian physicist Josef Stefan and the Dutch physicist Ludwig Boltzmann.The value of the Stefan-Boltzmann constant is approximately 5.67 x 10^-8 watts per square meter per Kelvin to three significant figures.

The exact value of the constant is:

σ = 5.670374419... x 10^-8 W/(m^2.K^4)

where W is watts, m is meters, and K is Kelvin, which are the units of power, distance, and temperature, respectively.

The Stefan-Boltzmann constant is used in many fields of physics and engineering, particularly in the study of thermodynamics, astrophysics, and radiative heat transfer. It is a fundamental constant in physics, and its value has been determined experimentally with high precision.

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Reflection about how you're going to relate low of acceleration to your life?

Answers

Reflection is the process of thinking about something and analyzing it in relation to one's own experiences and perspectives.

In the context of the law of acceleration, this means considering how this law affects our everyday lives and the decisions we make.

One way that the law of acceleration relates to my life is through my use of technology. The law of acceleration states that an object's acceleration is directly proportional to the net force acting on it and inversely proportional to its mass.

This means that as technology becomes more advanced and lighter in weight, it also becomes faster and more efficient. This directly affects my daily life, as I rely on technology for communication, entertainment, and work.

Another way that the law of acceleration relates to my life is through my experiences with transportation. Whether I am driving a car, riding a bike, or taking public transit, the law of acceleration is at play. Understanding how acceleration works allows me to make informed decisions about how to safely and efficiently get from one place to another.

Overall, the law of acceleration is a fundamental principle that affects many aspects of our daily lives. By reflecting on how it relates to my own life, I can better understand the world around me and make more informed decisions.

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How to convert 99.4 f to c

Answers

The conversion of 99.4 °F(Fahrenheit) is equivalent to 37.44 °C.

A temperature unit developed from the SI (International System of Units) is Celsius (symbol: °C).

Prior to the adoption of the metric system, Fahrenheit (symbol: °F) was a commonly used measurement of temperature.

To convert Fahrenheit (°F) to Celsius (°C) we have to first subtract 32 from Fahrenheit and then multiply it by .5556 or 5/9.

We have to convert 64 degrees Fahrenheit (°F) to Celsius (°C),

We can use the following formula:

°C = (°F - 32) x 5/9

As per the given information,

°F = 99.4

By placing the value 99.4 for °F, we get:

°C = (99.4 - 32) x 5/9

°C = 37.44 (rounded to two decimal places)

Therefore, 99.4 °F is equivalent to 37.44 °C.

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Calculate the ratio of the drag force on a jet flying at 1000km/h at an altitude of 10 km to the drag force on a prop-driven transport flying at half that speed and altitude. The density of of air is 0.38 kg/m3 at 10 km and 0.67 kg/m3 at 5.0 km. Assume thhat the airplanes have the same effective cross-sectional area and drag coefficient C.

Answers

The ratio of the drag force on the jet to the drag force on the prop-driven transport is approximately 3.43.

The drag force on an airplane is given by the formula,

Fd = (1/2) * rho * v^2 * A * C

where Fd is the drag force, rho is the density of air, v is the velocity of the airplane, A is the effective cross-sectional area, and C is the drag coefficient.

For the jet flying at 1000 km/h at an altitude of 10 km,

Fd_jet = (1/2) * 0.38 kg/m^3 * (1000 km/h)^2 * A * C

For the prop-driven transport flying at half the speed and altitude,

Fd_prop = (1/2) * 0.67 kg/m^3 * (500 km/h)^2 * A * C

Fd_jet/Fd_prop = [(1/2) * 0.38 kg/m^3 * (1000 km/h)^2]/[(1/2) * 0.67 kg/m^3 * (500 km/h)^2]

Simplifying this expression,

Fd_jet/Fd_prop = (0.38/0.67) * (1000/500)^2

Fd_jet/Fd_prop ≈ 3.43

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a 4 kg block with initial speed 10 m/s slides across a rough horizontal floor before coming to rest. the frictional force acting on the block is 87 n. how far does the block slide before coming to rest?

Answers

The block slides 2.30 meters before coming to rest.

What is frictional force?

Force generated by two surfaces that contact and slide against each other is called frictional force.

As we know, W = F d

W is the work done, F is force of friction, and d is distance over which the force acts.

v² = u² + 2as

v is final velocity (zero in this case), u is initial velocity (10 m/s), a is acceleration (which we can find using Newton's second law), and s is distance traveled.

s = (v² - u²) / 2a

Given, u = 10 m/s; v = 0 m/s

As a = F / m = 87 N / 4 kg = 21.75 m/s^2

s = (0 - 10²) / (2 x 21.75) = -100 / 43.5 = -2.30 m

|s| = 2.30 m

Therefore, the block slides 2.30 meters before coming to rest.

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State the name of the energy
store that has more energy at the end than it had at the start

Answers

The name of the energy store that has more energy at the end than it had at the start is kinetic energy.

What is kinetic energy?

Kinetic energy is the energy possessed by an object due to its motion. The amount of kinetic energy possessed by an object depends on its mass and velocity. When an object is accelerated from rest, work is done on it, and its kinetic energy increases from zero to a certain value.

Similarly, when an object is subjected to a force that changes its speed or direction of motion, its kinetic energy changes. Therefore, the kinetic energy store can have more energy at the end than it had at the start, depending on the changes in an object's speed or velocity.

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Two charged spheres separated by a distance of 4x 10-1 meters are shown below. What is the magnitude and direction of the electrostatic force between them?

Show work please.

Answers

Answer:

The magnitude of the electrostatic force between the spheres is 2.25 x 10^-5 N, and its direction is towards the center of the two spheres (i.e., it is attractive).

Explanation:

To calculate the electrostatic force between two charged spheres, we need to use Coulomb's law:

F = k * (q1 * q2) / r^2

where F is the electrostatic force, k is Coulomb's constant (9 x 10^9 N m^2/C^2), q1 and q2 are the charges of the spheres, and r is the distance between their centers.

We don't have the charges of the spheres, so let's assume they have charges of q1 = 1 C and q2 = -1 C (positive and negative charges, respectively). The distance between their centers is r = 4 x 10^-1 m.

Plugging these values into Coulomb's law, we get:

F = (9 x 10^9 N m^2/C^2) * (1 C * -1 C) / (4 x 10^-1 m)^2

F = -2.25 x 10^-5 N

The negative sign indicates that the force is attractive, since the charges are of opposite signs.

Therefore, the magnitude of the electrostatic force between the spheres is 2.25 x 10^-5 N, and its direction is towards the center of the two spheres (i.e., it is attractive).

why might physicians and lawyers find limited liability partnerships attractive

Answers

Limited liability partnerships are attractive to professions like medicine or law because they limit the amount of personal risk that one person takes.

Your choices and investments in a Limited Liability Partnership are entirely your responsibility. A third kind of corporate business form called an LLP combines the adaptability of a partnership with the limited liability of a corporation. Changes in partners won't put an end to the LLP's existence. It has the authority to enter into contracts and own property in its own right. In a general partnership, the partners are individually responsible for all debts incurred by the business, including but not limited to employee behaviour. Moreover, each owner bears unlimited personal responsibility for their deeds.

A limited liability partnership (LLPprincipal )'s advantage is that it lowers the participants' personal liability while yet allowing the partnership to continue functioning as a pass-through entity for tax purposes.

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what are the two basic types of transistors

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There are mainly two types of transistors. They are bipolar junction transistors and Field effect transistors.

Transistors are made with semiconductors, used for the regulation of current flow as well as voltage flow. They also acts as switches or gates.

Bipolar junction transistors are of two types. PNP transistors and NPN transistors. There are 3 layers, emitter, base and collector. There are two types of currents flows, electrons and holes. In PNP, the current flows as holes. In NPN, electrons from emitter transported  through base and collected at the collector.

Field effect transistors has three terminals, source, drain, gate. Here the arrangement of n and p semiconductors is slightly different. The electrons cannot flow from the source, made up of n, to the drain, because the gate between them contains holes. By attaching a positive voltage to the gate, it allows the flow of electrons, due to the creation of electric field. So the name field effect transistors.

So the two basic type of transistors are Bipolar junction transistors and field effect transistors.

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what is ccl4 compound name

Answers

Tetrachloromethane is the name given to the CCl4 chemical.

Structure of carbon tetrachloride chemically. The liquid CCl4 is transparent, nonflammable, and heavy. It evaporates quickly and has a distinctive sweet smell that is similar to that of chloroform. The term "volatile organic compound" refers to CCl4 (VOC).

The secondary prefix for four carbon atoms is tetra. The first prefix for chlorine is chloro. Meth represents the word's root, which is carbon. Tetrachloromethane, which may also be written as 1,1,1,1, is the name of the substance. a week ago With the chemical formula CCl4, carbon tetrachloride is an organochlorine chemical compound that goes by several different names.

covalent substance Since it has four non-polar covalent connections between carbon and chlorine, carbon tetrachloride (CCl4) is classified as a covalent molecule.

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Wavelength, frequency, and energy are related. What happens to a wave as its
wavelength gets shorter?

A. Its frequency and energy increase
B. Its frequency and energy decrease
C. Its frequency increases, while its energy decreases
D. Its frequency decreases, while its energy increases.

Answers

Answer:

D

Explanation:

As the wavelength of a wave gets shorter, its frequency increases, while its energy increases. This relationship is described by the equation E = hf, where E is the energy, h is Planck's constant and f is the frequency of the wave.

Each of the following lists two statements. Which two are the basic premises for the special theory of relativity?1. The laws of nature are the same for everyone.2. The speed of light is the same for everyone.

Answers

The 2 fundamental premises for the unique theory of relativity are:-

The laws of nature are identical for everyone.The rate of light is identical for everybody.

Relativity is a theory in physics that was developed by Albert Einstein in the early 20th century. It has two main components: special relativity and general relativity.

Special relativity deals with the way that time, space, and motion are related. It shows that the laws of physics are the same for all observers, regardless of their relative motion. This means that time and space are not absolute, but rather depend on the observer's point of view. It also shows that mass and energy are equivalent, and can be converted into each other.

General relativity expands on special relativity and explains how gravity works. It describes gravity as the curvature of spacetime caused by the presence of massive objects. This curvature causes objects to move in a curved path, which we observe as the force of gravity. General relativity has been confirmed through numerous experiments and observations and is an essential part of modern physics.

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Complete Question:

Each of the following lists two statements. Which two are the basic premises for the special theory of relativity?

The energy required to begin nuclear fusion in a protostar comes from: A. the wind from nearby stars. B. the pressure from the interstellar medium. C. the gravitational potential energy of the protostar. D. the kinetic energy of the protostar.

Answers

The energy required to begin nuclear fusion in a protostar comes from  C. the gravitational potential energy of the protostar.

What is nuclear fusion?

Atomic nuclei join together to form a heavier nucleus during nuclear fusion, which releases a significant quantity of energy. A reaction known as nuclear fusion occurs when two or more atomic nuclei fuse to create new atomic and subatomic particles. Energy is released or absorbed depending on how much mass there is between the reactants and products.

Natural nuclear fusion occurs in stars, such as the Sun, when hydrogen nuclei combine to generate helium and release energy that powers the Sun's light and heats the Earth. Although fusion has also been utilized to create nuclear weapons, work is still being done to harness fusion energy for the production of electricity.

Therefore, option C is c orrect.

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A 37.3 kg crate slides down a ramp. The ramp is 3.20 m long and is at a 37.0° angle. The crate starts from rest. It experiences a constant frictional force of 12.0 N as it slides downwards. What is the speed of the crate when it reaches the bottom?​

Answers

Answer:

The speed of the crate when it reaches the bottom can be calculated using the equation:

v = √(2gh)

Where v is the speed, g is the acceleration due to gravity (9.8 m/s2), h is the height of the ramp (3.20 m).

Therefore, the speed of the crate is:

v = √(2 * 9.8 * 3.20) = 7.7 m/s

7. Force = 13kN Mass = 58kg Acceleration = ?​

Answers

The acceleration, given that the force is 13 KN and the mass is 58 Kg is 224.14 m/s²

How do I determine the acceleration?

Force and acceleration is related according to the following equation:

Force = mass × acceleration

From the question given above, the following data were obtained:

Force (F) = 13 KN = 13 × 1000 = 13000 NMass of object (m) = 58 KgAcceleration of object (a) = ?

The acceleration can be obtained as illustrated below:

Force = mass × acceleration

13000 = 58 × acceleration

Divide both sides by 58

Acceleration = 13000 / 58

Acceleration = 224.14 m/s²

This, from the calculation made above, we can conclude that the acceleration is 224.14 m/s²

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The acceleration of the object is determined as 224.1 m/s².

What is acceleration?

Acceleration is the rate at which an object's velocity changes over time. It is the change in velocity divided by the time interval over which that change occurred.

The acceleration of an object can be determined by applying Newton's second law of motion as shown below;

F = ma

where;

m is the mass of the objecta is the acceleration of the object

The acceleration of the object is calculated as;

a = F / m

a = ( 13,000 N ) / ( 58 kg )

a = 224.1 m/s²

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what happens when electrons all spin in the same direction

Answers

Magnetism is an intangible force that is produced when electrons spin  unison. The field is also larger the stronger the magnet.

What is the easiest way to define magnetism?

As magnets attract or repel one another, they exert a force known as magnetism. The movement of electric charges is what generates magnetism. Atoms are little building blocks that make up all substances. Each atom contains electrons, which are little particles with electric charges.

What are two illustrations of magnetism?

Poles of magnetism are always found in pairs. Iron, nickel, chrome, stainless steel, and several rare earth metals are a few examples of magnetic materials. Copper and gold are diamagnetic materials that are only faintly attracted to magnetic fields. Aluminum and calcium, which are both magnetic elements, are only faintly drawn to a

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What is the distance the upper spring is extended from its unstretched length? Now, three masses m1 = 3.3 kg, m2 = 9.9 kg and m3 = 6.6 kg hang from three identical springs in a motionless elevator. The springs all have the same spring constant of 229.57N/m Now the elevator is moving downward with a velocity of v = -2.3 m/s but accelerating upward with an acceleration of a = 4.8 m/s2. (Note: an upward acceleration when the elevator is moving down means the elevator is slowing down.) What is the distance the upper spring is extended from its unstretched length?

Answers

The extensions of the middle and lower springs are 0.3209 m and 0.1988 m, respectively, from their unstretched lengths.

We can solve this problem using the concept of equilibrium and the equations of motion. In equilibrium, the weight of each mass is balanced by the force exerted by the spring, so we have:

m₁g = kx₁

m₂g = kx₂

m₃g = kx₃

where g is the acceleration due to gravity, k is the spring constant, and x₁, x₂, and x₃ are the extensions of the three springs from their unstretched lengths.

When the elevator is moving with constant velocity, the forces on the masses are still balanced, so the extensions of the springs are unchanged. However, when the elevator is accelerating, the forces on the masses are no longer balanced, and the extensions of the springs will change. We need to take into account the pseudo-force experienced by the masses due to the acceleration of the elevator.

The pseudo-force on each mass is given by:

F' = m × a

where m is the mass of the object and a is the acceleration of the elevator. For m₁, m₂, and m₃, the pseudo-forces are:

F₁' = m₁a = 3.3 kg × 4.8 m/s² = 15.84 N

F₂' = m₂a = 9.9 kg × 4.8 m/s² = 47.52 N

F₃' = m₃a = 6.6 kg × 4.8 m/s² = 31.68 N

To calculate the new extensions of the springs, we need to add the pseudo-forces to the weights of the masses and then divide by the spring constant. For the upper spring, which is attached to m₁, we have:

kx₁ = m₁g + F₁'

x₁ = (m₁g + F₁')/k

Substituting the values, we get:

x₁ = (3.3 kg × 9.81 m/s² + 15.84 N)/(229.57 N/m) = 0.1003 m

So the upper spring is extended by 0.1003 m from its unstretched length.

For the other two springs, we have:

x₂ = (m₂g + F₂')/k = (9.9 kg × 9.81 m/s² + 47.52 N)/(229.57 N/m) = 0.3209 m

x₃ = (m₃g + F₃')/k = (6.6 kg × 9.81 m/s² + 31.68 N)/(229.57 N/m) = 0.1988 m

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one of the objectives of the motion study conducted by frank and lillian gilbreth was to:

Answers

Motion study objective was to improve the efficiency and productivity of work processes by developing standardized work processes.

Frank and Lillian Gilbreth were pioneers in the field of motion study and were among the first to apply scientific principles to the study of work processes. One of the objectives of the motion study conducted by Frank and Lillian Gilbreth was to improve the efficiency and productivity of work processes.

The Gilbreths believed that by carefully analyzing work processes and identifying unnecessary motions, they could find ways to eliminate waste, reduce fatigue, and increase productivity. To achieve this objective, they used a combination of observation, time-lapse photography, and statistical analysis to identify and eliminate inefficient motions in work processes.

By breaking down work processes into their component motions and analyzing each motion, the Gilbreths were able to identify ways to reduce the time and effort required to complete a task. They also developed a system of standardized work processes that could be used to train workers and improve the consistency of work output.

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__________ takes place when an object is given a charge by bringing it close to a charged object.

Answers

The answer is Induction. "Induction" takes place when an object is given a charge by bringing it close to a charged object.

Induction is that process in which an object acquiring a charge by coming into the contact with any of the charged object. During that induction, electric field of the charged object induces an electric field in the uncharged object.

This electric field creates an electric dipole moment in uncharged object, that causing its charges to move and redistribute themselves in such a way that object acquires the net charge. This process occurs without any of physical contact between two objects and is also used to charge the objects like capacitors.

Induction can also be used to create a current loop in any conductor, which can be used to measure or to detect the strength of the specific magnetic field.

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While driving fast around a sharp right turn, you find yourself pressing against the car door. What is happening? (a) Centrifugal force is pushing you into the door. (b) The door is exerting a rightward force on you. (c) Both of the above. (d) Neither of the above.

Answers

While driving fast around a sharp right turn, you find yourself pressing against the car door because of Centrifugal force is pushing you into the door.

What is Centrifugal force?

The apparent force that appears to push an object travelling in a circle away from the centre of the circle is known as centrifugal force. It is an apparent force since the motion of the object is what is causing it, not an actual force.A continuous change in direction occurs when an object moves in a circular motion, which causes it to accelerate continuously. Newton's rules of motion state that every object that accelerates must be under the influence of a force. This force, known as centripetal force in the context of circular motion, pulls the object in the direction of the Centre of the circle and prevents it from travelling in a straight path.

Centrifugal force is the apparent force that seems to act on an object moving in a circular path, pushing it away from the center of the circle. In the case of a car turning a corner, the car and its occupants are moving in a circular path, and centrifugal force acts on the occupants, pushing them away from the center of the circle. This force is responsible for the sensation of being pushed against the car door while turning.

Therefore, while driving fast around a sharp right turn, you feel the apparent force of centrifugal force pushing you outwards, which makes you press against the car door to counteract this force and maintain your balance.

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A car with mass of 1200kg, went from 20 km/hr to 7 km/hr - what is the car’s impulse?
A) 12500 kg.m/s
B) 16200 kg.m/s
C) 18700 kg.m/s

Answers

The impulsive force of the car will be 4,333. Kg.m/s.

What is impulse?

In physics, the term "impulse" is used to characterize or measure the impact of force operating gradually to alter an object's motion. It is often stated in Newton seconds or kilograms per second and is denoted by the symbol J.

given, A car with a mass of 1200kg, went from 20 km/hr to 7 km/hr.

From the general formula of impulse:

Impulsive force j = mass( initial velocity - final velocity)

In our case,

initial velocity = 20 Km/hr

Final velocity = 7 Km/hr

mass = 1200 Kg

So,

Impulsive force = 1200( 20 - 7)

impulsive force = 15600 Kg. km/hr

Since 1 km/ hr = 5/18 m/s

impulsive force = 15600 * 5 /18 Kg.m/s

impulsive force = 4,333.33  Kg.m/s

Therefore, the impulsive force of the car will be 4,333. Kg.m/s.

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what is called the term for the branch of science that studies atoms

Answers

The branch of science that studies atoms is called atomic physics.

Atomic physics is the branch of physics that studies the structure of atoms and the interactions between them. It also covers the theories and principles behind the behaviour of atomic particles, such as electrons and protons. Atomic physics has many applications in fields such as chemistry, engineering, and medicine.Atomic physics is the study of atoms, their structure, and their interactions with other particles and fields. It is a sub-discipline of physics that deals with the behavior and properties of atoms. Atomic physics is concerned with the arrangement of electrons around the nucleus, the forces that hold them together, the energy levels of the different types of atoms, and the way in which they interact with light and other particles.

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what is the wavelength of maximum intensity (in nm) and the total energy emitted (in j/s/m2) by a celestial object at 8 k above absolute zero?

Answers

Moreover, the maximum frequency kinetic energy doubles. And in accordance with the query, the body doubles while moving at a steady speed. the motional energy.

What wavelength and total amount of energy are radiated by a celestial body at absolute zero?

A blackbody never approaches zero, hence the wavelength of the highest intensity that a heavenly object may produce is infinite. As a celestial object's temperature rises, its overall energy output increases quickly.

What is the amount of energy a radiating body emits every second?

E=T4 denotes the total energy emitted by either an unit volume of a black body each second. E=T4where is the body's emissivity if the entity isn't a perfect black body.

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