The force is an external agent which is capable of changing a body's state of rest or motion. The acceleration due to gravity is 12.5 m/s².
What is force?The push or pull on an object with mass causes it to changes its velocity is defined as the force. The direction towards which the force is applied is called the direction of the force and the application of the force is the point where force is applied.
The SI unit of force is Newton. The equation which connects the force with mass and acceleration is given by:
F = ma
Total mass = 5 + 4 + 7 = 16
a = F / m
= 200 / 16
= 12.5 m/s²
Thus the acceleration of the system is 12.5 m/s².
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A6 kg block moves with a constant speed 5 m/s on a horizontal frictionless surface and collides elastically with an identical block initially at rest. The second block collides and sticks to the last 6 kg block which was initially at rest.
What is the speed of the second 6 kg block after the first collision? What is the speed of the third 6 kg block after the second collision?
For the first 6 kg block, the speed after the collision will be 2.5 m/s. For the second 6 kg block, the speed after the collision will be zero since it sticks to the first 6 kg block.
What is Speed?Speed is a measure of how quickly an object moves or how quickly a task is performed. It is usually measured in units of distance per unit of time, such as metres per second, miles per hour, or kilometres per hour. Speed is an important concept in physics and is used to describe motion of all kinds, from elementary particles to everyday objects such as cars, planes, and rockets.
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A microwave oven has a power requirement of 1,263 W. A frozen dinner requires 5.0 min to heat on full power.
The energy required to heat the frozen dinner is 378,900 joules.
What is Power?
Power is the rate at which energy is transferred, converted, or used. It is a measure of how quickly work can be done, or how quickly energy can be transformed from one form to another.
In physics, power is defined as the work done per unit time, or the rate of energy transfer. The SI unit of power is the watt (W), which is defined as one joule per second (J/s).
To calculate the energy required to heat the frozen dinner, we can use the following formula:
First, we need to convert the power requirement from watts to joules per second (or watts):
1,263 W = 1,263 J/s
Next, we need to convert the heating time from minutes to seconds:
5.0 min = 300 s
Now we can plug these values into the formula:
Energy = 1,263 J/s x 300 s
Energy = 378,900 J
Therefore, the energy required to heat the frozen dinner is 378,900 joules.
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ou are conducting an experiment inside an elevator that can move in a vertical shaft. a load is hung vertically from the ceiling on a string, and is stationary with respect to you. the tension in the string is measured to be 10% less than the force due to gravity on the load. no other forces are acting on the load. which of the following statements about the elevator are correct?check all that apply.you are conducting an experiment inside an elevator that can move in a vertical shaft. a load is hung vertically from the ceiling on a string, and is stationary with respect to you. the tension in the string is measured to be 10% less than the force due to gravity on the load. no other forces are acting on the load. which of the following statements about the elevator are correct?check all that apply.the elevator is an inertial frame of reference.the elevator is not an inertial frame of reference.the elevator may be at rest for the duration of the entire experiment.the elevator may be moving at a constant velocity upward.the elevator may be moving at a constant velocity downward.the elevator must be accelerating. physics is beautifull
A frame of reference that is inertial is not the elevator.
The elevator must be accelerating.
What is Acceleration?
It is a vector quantity, which means that it has both magnitude and direction. Acceleration is defined as the change in velocity divided by the time it takes for that change to occur. Mathematically, acceleration can be expressed as:
a = (v_f - v_i) / t
where "a" is acceleration, "v_f" is the final velocity, "v_i" is the initial velocity, and "t" is the time taken for the change in velocity.
According to the problem statement, the tension in the string is measured to be 10% less than the force due to gravity on the load. This means that the net force on the load is not zero, and it is accelerating in the direction of the net force, which is downwards.
Since the load is stationary with respect to the observer inside the elevator, the elevator must also be accelerating downwards with an acceleration equal to that of the load. This implies that the elevator is not an inertial frame of reference, as an inertial frame of reference is a frame in which an object at rest remains at rest, or an object in motion moves with a constant velocity in a straight line, in the absence of any external forces.
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It takes tiffany 0. 25 hours to get to school in the mornings. She lives 4. 5 miles away from the school. At what speed (in miles per hour) is she traveling to get there?.
If It takes Tiffany zero.25 hours to get to school in the mornings. She lives 4.5 miles far away from the faculty, then the speed of traveling off the Tiffany would be 28.96 kilometers per hour.
velocity of touring = general distance traveled by means of the Tiffany / general time
velocity of touring = 4.5 × 1.609 / 0.25
= 28.96 kilometers per hour
Speed in physics is a scalar quantity that refers to the rate at which an object moves, usually expressed in units of meters per second (m/s) or kilometers per hour (km/h). It is defined as the distance an object travels per unit of time, which means that it only takes into account the magnitude of the object's motion and not its direction.
Instantaneous speed refers to the speed of an object at any given moment, while average speed is calculated over a period of time. The speed of an object can be influenced by several factors, such as the forces acting upon it and the medium through which it is moving.
In addition to speed, there are other related concepts in physics, such as velocity, which includes both the speed and direction of an object's motion, and acceleration, which describes the fee at which an item's speed modifications over time.
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A large scoreboard is suspended from the ceiling of a sports arena by 10 strong cables. Six of the cables make an angle of 8.0° with the vertical while the other four make an angle of 10.0°. If the tension in each cable is 1300.0 N, what is the scoreboard’s mass?
According to the problem the mass of the scoreboard is 1320.7 kg.
What is mass?Mass is the amount of matter in an object or substance. It is a measure of the amount of material in a body or an object and is usually expressed in kilograms, grams, or pounds. The mass of an object is usually determined by weighing it.
The sum of the 10 individual tensions must equal the mass of the scoreboard multiplied by the acceleration due to gravity, as follows:
T1 + T2 + T3 + T4 + T5 + T6 + T7 + T8 + T9 + T10 = m•g
Where:
T1-T10 = 1300.0 N (tension in each cable)
m = mass of the scoreboard
g = acceleration due to gravity (9.81 m/s2)
Substituting the values, we get:
1300.0 N + 1300.0 N + 1300.0 N + 1300.0 N + 1300.0 N + 1300.0 N + 1300.0 N + 1300.0 N + 1300.0 N + 1300.0 N = m•(9.81 m/s2)
13000.0 N = m•(9.81 m/s2)
m = 13000.0 N / (9.81 m/s2)
m = 1320.7 kg
Therefore, the mass of the scoreboard is 1320.7 kg.
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in which circuit will the capacitors reach half their maximum charge in the least amount of time when switch s is closed
The circuit where the capacitors reach half their maximum charge in the least amount of time when switch s is closed. is Circuit E.
What is a circuit?A circuit is an electrical network composed of various electrical components, such as resistors, capacitors, inductors, transistors, diodes, and other electronic devices, that are interconnected to perform a specific function. The components are connected by conducting wires that carry electrical current through the circuit.
Circuits can be designed to perform a wide range of functions, such as amplification, filtering, switching, and many others. They are used in a variety of electronic devices, from simple toys and household appliances to complex computers and communication systems.
Circuits can be classified into two types: analog and digital. Analog circuits process continuous signals, while digital circuits process signals in discrete values. Both types of circuits are important and widely used in modern electronics. Circuit E takes less time to reach half of its maximum charge
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Calculate the force of gravity on the 0.70- kg mass if it were 1.9×10^7 m above Earth's surface (that is, if it were four Earth radii from Earth's center).
Answer:
This answer his answers is quite long but here's your answer
Explanation:
The force of gravity on an object depends on two factors: the mass of the object and the distance between the object and the center of the Earth. The formula to calculate the force of gravity is:
F = G * (m1 * m2) / r^2
where F is the force of gravity, G is the gravitational constant (6.67 x 10^-11 N m^2/kg^2), m1 is the mass of the first object (in this case, the mass of the Earth), m2 is the mass of the second object (0.70 kg), and r is the distance between the centers of the two objects (in this case, the distance between the center of the Earth and the 0.70 kg mass, which is 4 times the radius of the Earth, or 4 * 6,371 km = 25,484 km).
First, we need to convert the distance from meters to kilometers:
1.9 x 10^7 m = 19 x 10^6 m = 19,000 km
So, the distance between the center of the Earth and the 0.70 kg mass is 25,484 km - 19,000 km = 6,484 km.
Now we can plug in the values into the formula:
F = G * (m1 * m2) / r^2
F = (6.67 x 10^-11 N m^2/kg^2) * (5.97 x 10^24 kg * 0.70 kg) / (6,484 km * 1000 m/km)^2
F = 2.17 x 10^-1 N
Therefore, the force of gravity on the 0.70 kg mass if it were 1.9 x 10^7 m above Earth's surface would be approximately 0.217 N.
Organ pipe A, with both ends open, has a fundamental frequency of 300 Hz. The third harmonic of organ pipe B, with one end open, has the same frequency as the second harmonic of pipe A. How long are (a) pipe A and (b) pipe B?
(a) To find the length of pipe A, we can use the formula for the fundamental frequency of an open pipe:
f = v/2L
where f is the
frequency
, v is the speed of sound in air, and L is the length of the pipe.
We know that f = 300 Hz and that the pipe is open at both ends, so the first harmonic (or fundamental) frequency is given by:
f1 = v/2L
Substituting the given values:
300 Hz = v/2L
Solving for L:
L = v/2f
We can use the known value of the speed of sound in air at room temperature, which is approximately 343 m/s, to get:
L = 343 m/s / (2 x 300 Hz) = 0.572 m
Therefore, the length of pipe A is 0.572 m.
(b) To find the length of pipe B, we can use the formula for the frequency of a pipe with one end open:
f = (2n - 1)v/4L
where n is the harmonic number (i.e., 1 for the fundamental frequency, 2 for the second harmonic, 3 for the third harmonic, etc.).
We know that the third harmonic of pipe B has the same frequency as the second harmonic of pipe A, so:
(2 x 2 - 1)v/4LB = (2 x 1)v/2LA
5v/4LB = v/LA
Substituting the known value of LA from part (a), we get:
5v/4LB = v/(0.572 m
LB = 4/5 x 0.572 m = 0.458 m
Therefore, the length of pipe B is 0.458 m.
What is the formula for the frequency of an open pipe with one end closed, and how is it used to find the length of pipe B in this problem?The formula for the frequency of a pipe with one end open is f = (2n - 1)v/4L, where n is the harmonic number. To find the length of pipe B in this problem, we use the fact that the third harmonic of pipe B has the same frequency as the second harmonic of pipe A, and we set the two equations for these frequencies equal to each other.
What is the speed of sound in air at room temperature, and how is it used to find the length of pipe A in this problem?The speed of sound in air at room temperature is approximately 343 m/s. To find the length of pipe A in this problem, we use the formula for the fundamental frequency of an open pipe, which involves the speed of sound, and we solve for the length of the pipe.
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your father brought you a pairof shoes when you wore the shoes you realized there was problem the shoes were too long why might such a problem arise and how can it be mitigated
The shoes were two long because the accurate measurement of the foot size was not carefully by your father.
What are shoes?It is a type of footwear used to protect the human foot completely.
Given is that your father brought you a pair of shoes when you wore the shoes you realized there was problem the shoes were too long.
The shoes were two long because the accurate measurement of the foot size was not carefully by your father.
Therefore, the shoes were two long because the accurate measurement of the foot size was not carefully by your father.
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the wheel is now mounted to a frictionless fixed axle and suspended from a vertical support. several turns of light cord are wrapped around the wheel, and a mass m is attached to the end of the cord and allowed to hang. the mass is released from rest. derive the instantaneous velocity of the mass after the wheel has turned one revolution. a. do this using forces and kinematics
The instantaneous velocity of the mass after the wheel has turned one revolution is given by:
[tex]\mathrm v = \sqrt{(2gh - (\pi^2r^2 / t^2))}[/tex]
What is Instantaneous velocity ?
Instantaneous velocity is the velocity of an object at a particular moment in time or at a specific point in its motion. It is the rate of change of position of an object with respect to time at a particular instant in time. It can be calculated by taking the limit of the average velocity as the time interval approaches zero. In other words, it is the velocity of an object at a specific point in time, rather than over an interval of time.
To derive the instantaneous velocity of the mass after the wheel has turned one revolution, we can use the conservation of energy principle and kinematics equations.
First, let's consider the conservation of energy of the system. At the beginning, the mass m is at rest and has a potential energy given by mgh, where h is the initial height of the mass above the ground. As the mass falls, this potential energy is converted into kinetic energy. The wheel also gains kinetic energy as it turns, but since the axle is frictionless, we can assume that no energy is lost due to friction. Therefore, the total initial energy of the system is given by:
Ei = mgh
When the mass has fallen one revolution, it has moved a distance equal to the circumference of the wheel, 2πr, where r is the radius of the wheel. At this point, the mass has reached its maximum velocity, and all of its initial potential energy has been converted into kinetic energy. The wheel has also gained kinetic energy, which is equal to the kinetic energy of the mass, since no energy has been lost due to friction. Therefore, the total final energy of the system is given by:
Ef = 0.5mv² + 0.5Iω²
where v is the velocity of the mass, I is the moment of inertia of the wheel, and ω is the angular velocity of the wheel.
Since the wheel has turned one revolution, its angular displacement is equal to 2π radians. We can use the kinematic equation for rotational motion, which relates the angular displacement, angular velocity, and angular acceleration, to find the angular velocity of the wheel after one revolution:
θ = ωi t + 0.5 α t²
where θ = 2π radians, ωi = 0, and α = 0 since the wheel has a constant angular velocity. Solving for ω, we get:
where t is the time it takes for the mass to fall one revolution.
We can now use the expression for the moment of inertia of a solid disk, [tex]I = 0.5mr^2,[/tex]to simplify the final energy expression to:
[tex]\mathrm Ef = 0.5mv^2 + 0.25mr^2\omega^2[/tex]
Equating the initial and final energies and solving for v, we get:
[tex]\mathrm mgh = 0.5mv^2 + 0.25mr^2\omega^2[/tex]
[tex]\mathrm{v^2 = 2gh - 0.5r^2\omega^2}[/tex]
Substituting the expression for ω, we get:
[tex]\mathrm{v^2 = 2gh - (\pi^2r^2 / t^2)}[/tex]
Taking the square root of both sides and simplifying, we get:
[tex]\mathrm{v = \sqrt{(2gh - (\pi^2r^2 / t^2))}}[/tex]
Therefore, the instantaneous velocity of the mass after the wheel has turned one revolution is given by:
[tex]\mathrm{v = \sqrt{(2gh - (\pi ^2r^2 / t^2))}}[/tex]
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figure left shows a standard cmos inverter. however, during manufacturing, the circuit was contaminated
I'm sorry, I'm not able to see the figure you mentioned. Can you please provide more information or context about the figure and the question you have related to it?
a building is being knocked down with a wrecking ball, which is a big metal sphere that swings on a 14-m -long cable. you are (unwisely!) standing directly beneath the point from which the wrecking ball is hung when you notice that the ball has just been released and is swinging directly toward you.
Answer:
Explanation:
The type of motion executed will be the simple harmonic motion. The time do you have to move out of the way will be 1.74 sec.
What is simple harmonic motion?
When an object executes a to and fro motion in the definite plane when it is tied with the string. The type of motion will be the simple harmonic motion.
Simple harmonic motion is a form of periodic motion in mechanics and physics in which the restoring force on the moving item is directly proportional to the size of the object.
The time period is given by the formula;
Hence the time do you have to move out of the way will be 1.74 sec.
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reposting this question
jacob is kayaking across the chattooga river at a velocity of 2.5 m/s east. the river current today is 6 m/s south. find is velocity and direction,
Upon crossing the Chattooga River, the Jacob's last speed was measured at 6.5 m/s, with the direction of travel being to the south-east.
Describe the resulting velocity vector in detail.The overall vector velocity of an object is in fact the sum of its individual vector velocities.The sum of the vector forces exerted on an object are represented by the scalar product of its mass and acceleration vector.We measure two perpendicular velocities due to the kayaker and the river: 2.5 m/s downstream inside a southerly direction and 6 m/s across the river in such an easterly direction.
The Pythagorean Theorem makes the following predictions about the amount of a resultant velocity:
v = √(2.5)² + (6)²
v = √42.25
v = 6.5 m/s
The direction that results will be south-east.
As a result, the Jacob's final speed when it crosses the Chattooga River is determined to be 6.5 m/s, with the direction of travel being south-east.
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this raboratory activity is broken up into four distinct parts so that the goals and variables of each part can be
observed separately.
In Part I, students manipulate the
observe a magnetic field.
In Part II, students manipulate the
objects to observe an electric field.
In Part III, students intentionally change the
generated.
In Part IV, students intentionally change the
magnetic field.
•and document the attraction with a magnet to
~ and document the attraction between the
and measure the electric current
•and observe the generation of a
Answer:
This raboratory activity is broken up into four distinct parts so that the goals and variables of each part can be observed separately. In Part I, students manipulate the observe a magnetic field. In Part II, students manipulate the objects to observe an electric field. In Part III, students intentionally change the generated. In Part IV, students intentionally change the magnetic field. •and document the attraction with a magnet to ~ and document the attraction between the and measure the electric current •and observe the generation of a
In Part I of this lab activity, students manipulate objects to observe a magnetic field. In Part II, they manipulate objects to observe an electric field. In Part III, they intentionally change the generated electric field. In Part IV, they intentionally change the magnetic field and document the attraction with a magnet to and document the attraction between the objects and measure the electric current and observe the generation of a magnetic field.
The laboratory activity contains four distinct parts related to magnetic fields and electric fields. It is designed to help high school students understand the fundamental principles of electricity and electromagnetism in physics. Students manipulate, observe, document, and measure in all parts of the activity to gain comprehensive exposure.
Explanation:The laboratory activity you're referring to is subdivided into four distinct parts, each focusing on different aspects of Physics related to magnetic fields and electric fields.
In Part I of the lab, students experiment with a magnet to understand the mechanics of a magnetic field. Part II shifts the focus onto electric fields where students manipulate various objects and document interactions.
For Part III and Part IV, students are required to measure the electrical current generated and observe the change in generation when different variables are intentionally altered in the magnetic field.
Overall, this activity offers comprehensive exposure to the fundamental principles of electromagnetism and electricity in physics.
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After voltage was constant at 1.5 V, what did you observe about the motion of charges in the 3. external circuit? Observations (As voltage is increased, how do these quantities change?) Reasoning C V E Part 1 b-"V" and "A" constant- Battery Connected Keep the battery connected to the capacitor. With voltage at 1.5 V across capacitor and its area constant at its minimum value of 100 mm, slowly decrease the distance between the plates of capacitor to 2.0 mm. Observe the changes and provide reasoning in table below. was being decreased, what did you observe about the motion of charges in 4. As plate separation the external circuit? Reset to original configuration. Click the refresh button. Select all four options in top right comer (Plate Charges, Bar Graph, Electric Field, Current Direction). Connect Voltmeter across the capacitor and increase the battery voltage to 1.5 v After charging the capacitor to 1.5 V, disconnect the battery. Part 2 a "A" constant - Battery Disconnected With area of plates constant at 100 mm2, slowly decrease the distance between the plates of capacitor to 2.0 mm. Observe the changes and provide reasoning in table below. 8. Obtain an expression for magnitude of electric field E between the plates in terms of Q. A and . Show all work. USE EXTRA CALCULATIONS SHEET with calculations clearly identified if necessary to show all your work. Observations (As plate separation is decreased, how do these quantities change?)
1)Observations and Reasoning for Part 1b:
As for the motion of charges in the external circuit, it depends on the specific configuration of the circuit.
2)Observations and Reasoning for Part 2a:
The electric field between the plates of the capacitor also increases as the plate separation is decreased.
3)Expression for Electric Field E:
E = Q/(εA) = CV/(εA)
What is electric field?
A physics concept called the electric field is used to describe how an electric charge affects nearby charges. A modest positive test charge would feel that force per unit charge if it were placed at that location in space.As a vector quantity, the electric field has both magnitude and direction. The magnitude of the electric field is determined by the magnitude of the electric force at that location, and the direction is determined by the direction in which a positive test charge would travel in response to the electric force.According to the details, it appears that you ran an experiment to examine how the voltage across a capacitor and the plate separation affected the motion of charges and other physical parameters.
1. Observations and Justification for Part 1b:
The capacitance of the capacitor increases as the distance between the plates is reduced while maintaining a constant voltage of 1.5 V and a constant area of 100 mm2. The reason for this is that a parallel plate capacitor's capacitance is inversely proportional to the space between its plates.
Because the electric field is inversely proportional to the voltage across the capacitor, it also increases when the plate gap between the capacitor's plates decreases oppositely related to the space between the plates. As a result, the electric field between the plates gets stronger as the distance between the plates gets smaller while the voltage across the capacitor stays constant at 1.5 V.
2. Part 2a observations and reasoning:
The capacitor's capacitance increases for the same reason as in Part 1b as the space between its plates is reduced while maintaining its area at 100 mm2 and the battery is unplugged.
As the plate gap decreases, as previously mentioned, the electric field between the capacitor's plates also grows.
3. Expression for Electric Field E:
The following equation can be used to determine the size of the electric field E existing between a parallel plate capacitor's plate:
E = V/d
where d is the distance between the plates and V is the voltage across the capacitor.
The equation can be used to get the capacitance C of a parallel plate capacitor.
C = ε*A/d
where ε is the permittivity of the material between the plates, A is the area of each plate, and d is the distance between the plates.
By rearranging the above equation, we can express the electric field E in terms of Q, A, and C:
E = Q/(ε*A)
Since C = Q/V, we can also express the electric field E in terms of Q, A, and V:
E = Q/(εA) = CV/(εA)
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A sea breeze is when the cooler air over the ocean moves in toward land.
true or false
Calculate the magnitude of the force applied by the man if he pushes parallel to the incline A man pushes on a piano with mass 190 kg;it slides at constant velocity down a ramp that is inclined at 10.0 above the horizontal floor Neglect any friction acting on the piano. Express your answer with the appropriate units.
The magnitude of the force applied by the man is equal to the weight of the piano (190 kg) multiplied by the cosine of the ramp angle (10.0 degrees). The magnitude of the force is thus equal to 1647.2 N.
What is Force?Force is an external influence that will cause an object to move, accelerate, decelerate, remain in motion, or stop. Forces are measured in Newtons (N) and are represented by vectors, which have both a magnitude and a direction. There are different types of forces such as contact forces, non-contact forces, and forces in nature. Examples of contact forces are friction, tension and normal force. Examples of non-contact forces are gravity and magnetism.
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what is the unit of sound
Answer:
Decibel (dB) is the unit of sound.
Answer:
Decibels ( dB)
Explanation:
When measuring sound intensity in units, it is referred to as decibels
A swimming pool has a width of 12 ft and a side profile as shown in w = 62.4 lb/ft3.
Part A Determine the resultant force the pressure of the water exerts on the wall AB
Part B Determine the resultant force the pressure of the water exerts on the wall DC .
Part C Determine the resultant force the pressure of the water exerts on the bottom BC .
A. The resultant force the pressure of the water exerts on the wall AB is equal to the force generated by the water pressure times the area of wall AB, which is equal to 12 ft x 62.4 lb/ft3 = 748.8 lb.
B. The resultant force the pressure of the water exerts on the wall DC is equal to the force generated by the water pressure times the area of wall DC, which is equal to 12 ft x 62.4 lb/ft3 = 748.8 lb.
C. The resultant force the pressure of the water exerts on the bottom BC is equal to the force generated by the water pressure times the area of the bottom BC, which is equal to 12 ft x 62.4 lb/ft3 = 748.8 lb.
Force is an interaction between two objects that results in a change of motion, shape, or energy of one or both objects. Force can cause objects to accelerate, decelerate, or change direction. A force is a push or a pull that acts upon an object as a result of its interaction with another object.
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Carter has 60 balloons. 412 of the balloons are black, and 312 of the balloons are white. The rest of the balloons are red. Which series of calculations shows how many red balloons carter has?.
The required red balloons in the carter when the fractions of white and black balloons are specified is calculated to be 25.
The carter has a total of 60 balloons.
4/12 balloons are said to be black.
3/12 balloons are said to be white.
The remaining are red.
The total number of white and black balloons in the carter are,
Total fraction of white and black balloons ⇒ (4/12 + 3/12) = 7/12
The total number of white and black balloons are ⇒ 7/12 × 60 = 35
As the carter contains a mix of red, black and white balloons, the number of red balloons are,
⇒ 60 - 35 = 25
Thus, the required red balloons in the carter are 25.
The given question is inappropriate. The complete question is 'Carter has 60 balloons. 4/12 of the balloons are black, and 3/12 of the balloons are white. The rest of the balloons are red. Which series of calculations shows how many red balloons Carter has?'
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100 joules of work are done on an object when a force of 10n pushes it. how far is the object pushes it? what power is used if this is done in 4 seconds?
I need the distance and the work done (with explanation please)
Work is the amount of energy transferred by a force, and can be calculated using the formula W = Fd, where F is the force, and d is the distance. In this case, the work is 100 joules, and the force is 10N. Therefore, the distance is d = W/F = 100/10 = 10 meters.
What is energy?Energy is the ability to do work. It is a measure of the capacity to cause change. Energy can take many forms, including kinetic energy (energy of motion), potential energy (stored energy of position), electrical energy, thermal energy, light energy, sound energy, chemical energy, and nuclear energy. Energy can be converted from one form to another, but it cannot be created or destroyed. For example, energy from the sun can be converted into electrical energy and stored in batteries.
The power used is the rate of work done, and can be calculated using the formula P = W/t, where W is the work done, and t is the time. In this case, the power used is P = 100/4 = 25 Joules/second.
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have you ever had to estimate something for which there wasn't an exact answer? what was it? what tools did you use to make your estimation? discuss
Yes, estimation of a population of plant species in a precondition area. The tool use to make estimation was a QUADRAT.
What is estimation ?Finding an estimate or approximation a number that may be used for a purpose despite the possibility of incomplete, ambiguous, or unstable input data is the process of estimation.
It is simple to count plants in a small area, and the distribution of those plants is noted on a map or scale diagram for the region.
A technique known as the quadrat sampling approach may be used to Assess the number of plants.
Thus, a QUADRAT, a square or rectangular frame (tool) composed of thick wire, is repeatedly tossed at random.
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5. An incredible amount of energy holds the protons and neutrons together in the center of atoms. This type of
energy is known as
O A. chemical energy.
B. nuclear energy.
C. electrical energy.
O D. thermal energy.
An incredible amount of energy holds the protons & neutrons together in the center of atoms. This type of energy is known as nuclear energy. Thus, option B is correct.
What is nuclear energy?A type of energy released from an atom's nucleus, which is composed of protons & neutrons, is known as nuclear energy. Fission, which occurs when atom nuclei split into multiple pieces, and fusion, which occurs when nuclei combine, are the two ways in which this source of energy can be created.
An atom's nucleus splits into two or more smaller nuclei during a reaction known as nuclear fission, which also releases energy.
For instance, the nucleus of an atom of uranium-235 splits into two smaller nuclei, such as a barium & a krypton nucleus, as well as two or three neutrons when struck by a neutron. As a result of these extra neutrons striking nearby uranium-235 atoms, those atoms will split and produce an increasing number of neutrons.
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1. Compared to those with high self-esteem, people with
low self-esteem experience rejection as:
A. Less painful
B. More painful
C. Just as painful
Answer:
b more painful is correct
Explanation:
:)
The diameter of a copper atom is approximately 2. 28e-10 m. The mass of one mole of copper is 64 grams. Assume that the atoms are arranged in a simple cubic array. Remember to convert to s. I. Units.
The density of copper can be calculated as the mass of one mole of copper (0.064 kg) divided by the volume of the unit cell (5.25 x 10-24 m³), which is equal to 1.21 x 103 kg/m³.
What is mole?Mole is a unit of measurement used in chemistry to measure the amount of a substance. It is defined as the amount of a substance that contains 6.022 × 10^23 atoms, molecules, or other units. One mole is equal to the atomic or molecular weight of the substance in grams.
The diameter of a copper atom is 2.28e-10 m, which is equal to 2.28 x 10-10 m. To convert this to s.I. units, we must multiply by 100 to get 0.228 x 10-8 m.
The mass of one mole of copper is 64 grams, which is equal to 64 g. To convert this to s.I. units, we must divide by 1000 to get 0.064 kg.
Assuming that the atoms are arranged in a simple cubic array, the volume of the unit cell is equal to the diameter of the atom cubed (0.228 x 10-8 m)³ = 5.25 x 10-24 m³.
Therefore, the density of copper can be calculated as the mass of one mole of copper (0.064 kg) divided by the volume of the unit cell (5.25 x 10-24 m³), which is equal to 1.21 x 103 kg/m³.
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A car is driving counterclockwise on a circular path, moving at non-uniform speed. The small black circles in the figure show the position of the object in equal intervals of time.
a- The x component of the instantaneous acceleration at B is negative, positive or zero? Why?
b- The y component of the instantaneous acceleration at B is negative, positive or zero? Why?
a- The instantaneous acceleration at B has a negative x component.
b- The instantaneous acceleration at B has a positive y component.
Explain about the uniform circular motion?We refer to a particle as being in uniform circular motion when it is traveling in a circular path (and perhaps a portion of one) at a constant speed.
The object is accelerating despite the fact that its speed is remaining constant because of a change in direction in its velocity (v).We refer to a particle moving uniformly around a circle as having a centripetal acceleration owing to the direction of the acceleration, which is toward the center.It is useful to discuss the time T required for the particle to accomplish one full trip around the circle if the particle consistently follows a complete circular path. This is referred to as the motion's period.On a round, counterclockwise route, an automobile is traveling at an irregular speed.
The position of a object is depicted in the figure's tiny black circles at regular intervals of time.
a- The instantaneous acceleration at B has a negative x component.
Because the x-component of the velocity will be be along the negative x axis, which will be directed towards point D.
b- The instantaneous acceleration at B has a positive y component. Because, the y-component of the velocity will be be along the positive y-axis, which will be directed towards point C.
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1. Ray Bender observes that light striking a sheet of material at 30 degree angle to the surface is bent to an angle of 36 degrees relative to the normal as it passes through the material. Through what material is the light passing?
Pyrex
Ruby
Crown glass
Water
2. While sitting at the pool, you see a coin at the bottom of the pool. The light reflects from the coin to the surface forming an angle of 20o with the normal,
1. If water has an index of refraction of 1.33, determine
45.4
14.9
62.9
27.1
Using the Snell's law, it was found that the medium through which the light is passing is the water.Therefore, the correct option is D.
What is Snell's law?Snell's Law states that the ratio of the sines of the angles of incidence and refraction is equal to the ratio of the indices of refraction of the two media:
1.) n₁ sinθ₁ = n₂ sinθ₂
In the given problem:
For Water (index of refraction about 1.33), we get:
sinθ₁ = (1.00 sin36) / 1.33
sinθ₁ = 0.304
θ₁ = sin⁻¹(0.304)
θ₁ = 17.5 degrees
The only material for which the angle of incidence is close to 30 degrees is water. Therefore, the material through which the light is passing is most likely water.Therefore, the correct option is D.
2.) Using Snell's law, we can calculate the angle of incidence of the light ray as it enters the water:
n₁ sin θ₁ = n₂ sin θ₂
where n₁ is the refractive index of air (approximately 1), θ₁ is the angle of incidence (unknown), n₂ is the refractive index of water (1.33), and θ₂is the angle of refraction (20 degrees).
Plugging in the values and solving for θ₁:
1 x sin θ₁ = 1.33 x sin(20)
sin(theta1) = 1.33 x sin(20)
θ₁= sin⁻¹ (1.33 x sin (20))
θ₁ = 45.4 degrees
Therefore, the angle of incidence of the light ray in air is approximately 45.4 degrees. Hence, the correct option is A.
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The question is incomplete, but most probably the complete question is,
1. Ray Bender observes that light striking a sheet of material at 30 degree angle to the surface is bent to an angle of 36 degrees relative to the normal as it passes through the material. Through what material is the light passing?
A. Pyrex
B. Ruby
C. Crown glass
D. Water
2. While sitting at the pool, you see a coin at the bottom of the pool. The light reflects from the coin to the surface forming an angle of 20o with the normal,
1. If water has an index of refraction of 1.33, determine
A. 45.4
B. 14.9
C. 62.9
D. 27.1
Problem 7: A secret agent skis off a slope inclined at θ = 28 degrees below horizontal at a speed of v0 = 12.9 m/s. He must clear a gorge, and the slope on the other side of the gorge is h = 15.5 m below the edge of the upper slope. what is the maximum width
The maximum width of the gorge that the secret agent can clear is 33.2 m.
What is gorge?Gorge is a steep-sided valley that is typically formed when a river or stream cuts through a landscape. Gorges can occur in a variety of landscapes and can range greatly in size. They are often found in areas of limestone or sandstone, and are often filled with spectacular scenery, including waterfalls, rapids, and cliffs. Gorges can also be formed by ice, erosion, and glacial activity.
The maximum width of the gorge that the secret agent can clear is given by the equation:
W = 2v0^2 * sin(2θ) / g
Where W is the maximum width of the gorge, v0 is the initial speed of the agent, θ is the angle of the slope, and g is the acceleration due to gravity.
Substituting the given values into the equation, we get:
W = 2 * (12.9 m/s)^2 * sin(2 * 28°) / 9.81 m/s^2
W = 33.2 m
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Quantity with kgm^3/s^1
The quantity with units of [tex]kgm^3/s^1[/tex] is mass flow rate or mass flow density.
What does mass flow mean?Mass flow, is a physical quantity that represents the amount of mass flowing through a unit area per unit time. It is the mass flow per unit area and is typically denoted by the symbol ṁ/A. It is a measure of how much mass is flowing per unit area in a given system.
For example, it is often used to describe the rate of mass transfer in a chemical reaction, where a mass flow density is used to measure the amount of reactant or product flowing per unit area per unit time. Mass flow density is also used to describe the rate of mass flow in a fluid through a particular area, such as in a pipe or channel.
The quantity with units of [tex]kgm^3/s^1[/tex] is mass flow rate or mass flux density.
Mass flow rate is the amount of mass that passes through a given cross-section area per unit time. It is typically denoted by the symbol "ṁ" and has units of kilograms per second (kg/s).Mass flow density, on the other hand, is the amount of mass that passes through a given cross-section area per unit time and per unit area. It is typically denoted by the symbol "ṁ/A" and has units of kilograms per second per square meter (kg/s/m²).To know more about Mass Flow, visit:
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Not keeping accurate records of experimental observations is that a morality statement
While it may not be a moral issue per se, failing to maintain accurate records can be seen as a breach of scientific ethics, as it undermines the principles of transparency, reproducibility, and accountability that are essential to the scientific enterprise.
What is Molarity?
Molarity is a unit of concentration used in chemistry, which is defined as the number of moles of a solute per liter of solution. It is denoted by the symbol "M" and has units of moles per liter (mol/L).
Not keeping accurate records of experimental observations is not a morality statement, but it is a statement about scientific integrity and professionalism. Keeping accurate records is a fundamental aspect of the scientific process, and failing to do so can have serious consequences for the credibility of the research.
Inaccurate or incomplete records can lead to errors in data analysis, misunderstandings about the experimental design, and difficulties in reproducing the experiment. These issues can undermine the validity of the research and can make it difficult for other researchers to build on the findings.
Therefore, it is important for scientists to maintain accurate and detailed records of their experiments, including descriptions of the materials and methods used, observations made during the experiment, and any calculations or analyses performed. This information should be recorded in a systematic and organized manner, and should be easily accessible to other researchers in the field.
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