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Case Based Questions Test: Electrostatic Potential & Capacitance - NEET MCQ


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15 Questions MCQ Test Topic-wise MCQ Tests for NEET - Case Based Questions Test: Electrostatic Potential & Capacitance

Case Based Questions Test: Electrostatic Potential & Capacitance for NEET 2024 is part of Topic-wise MCQ Tests for NEET preparation. The Case Based Questions Test: Electrostatic Potential & Capacitance questions and answers have been prepared according to the NEET exam syllabus.The Case Based Questions Test: Electrostatic Potential & Capacitance MCQs are made for NEET 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Case Based Questions Test: Electrostatic Potential & Capacitance below.
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Case Based Questions Test: Electrostatic Potential & Capacitance - Question 1

Read the following text and answer the following questions on the basis of the same:

Supercapacitor: Super capacitor is a high capacity capacitor with a capacitance value much higher than normal capacitors but with lower voltage limits. Such capacitors bridges the gap between electrolytic capacitors and rechargeable batteries. In automobile, bus, train, crane, elevator such capacitors are used for regenerative braking, short term energy storage or burst-mode power delivery.

Super capacitors have many advantages over batteries: they are very low weight and generally don't contain harmful chemicals or toxic metal. They can be charged and discharged innumerable number of times without ever wearing out. The disadvantage is that super capacitors aren’t well-suited for long-term energy storage. The discharge rate of super capacitors is significantly higher than lithium-ion batteries; they can lose as much as 10-20% of their charge per day due to self discharge.

Capacity of supercapacitor is:

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 1
Super capacitor is a high capacity capacitor with a capacitance value much higher than normal capacitors but with lower voltage limits.
Case Based Questions Test: Electrostatic Potential & Capacitance - Question 2

Read the following text and answer the following questions on the basis of the same: Supercapacitor: Super capacitor is a high capacity capacitor with a capacitance value much higher than normal capacitors but with lower voltage limits. Such capacitors bridges the gap between electrolytic capacitors and rechargeable batteries. In automobile, bus, train, crane, elevator such capacitors are used for regenerative braking, short term energy storage or burst-mode power delivery. Super capacitors have many advantages over batteries: they are very low weight and generally don't contain harmful chemicals or toxic metal. They can be charged and discharged innumerable number of times without ever wearing out. The disadvantage is that super capacitors aren’t well-suited for long-term energy storage. The discharge rate of super capacitors is significantly higher than lithium-ion batteries; they can lose as much as 10-20% of their charge per day due to self discharge.

Super capacitors can be charged and discharged:

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 2
Super capacitors can be charged and discharged innumerable number of times without ever wearing out.
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Case Based Questions Test: Electrostatic Potential & Capacitance - Question 3

Read the following text and answer the following questions on the basis of the same: Supercapacitor: Super capacitor is a high capacity capacitor with a capacitance value much higher than normal capacitors but with lower voltage limits. Such capacitors bridges the gap between electrolytic capacitors and rechargeable batteries. In automobile, bus, train, crane, elevator such capacitors are used for regenerative braking, short term energy storage or burst-mode power delivery. Super capacitors have many advantages over batteries: they are very low weight and generally don't contain harmful chemicals or toxic metal. They can be charged and discharged innumerable number of times without ever wearing out. The disadvantage is that super capacitors aren’t well-suited for long-term energy storage. The discharge rate of super capacitors is significantly higher than lithium-ion batteries; they can lose as much as 10-20% of their charge per day due to self discharge.

Super capacitors are used for

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 3
In automobile, bus, train, crane, elevator such capacitors are used for regenerative braking, short term energy storage or burst-mode power delivery.
Case Based Questions Test: Electrostatic Potential & Capacitance - Question 4

Read the following text and answer the following questions on the basis of the same:

Capacitor Colour Code: Capacitor values as written on small capacitors are sometimes misleading. Letters like p (pico) or n (nano) are used in place of the decimal point to identify its position and the value of the capacitor. For example, a capacitor labelled as n33 = 0.33nF, 8n2 = 8.2nF, 22n = 47nF and so on. Sometimes capacitors are marked with the capital letter K to signify a value of Kilo pico-Farads. As for example, a capacitor with the markings of 100K would be 1000 × 100 pF = 100 Kpf = 100 nF. Sometimes, a three letter code consists of the two value digits and a multiplier. For example, the digits 471 = 47 × 10 = 470 pF, 332 = 33 × 100 = 3300 pf. To reduce these confusions an International colour coding scheme was developed almost the same as that of resistance colour code.

The value obtained from colour code is in pf.

What is the value of the capacitor if n27 is written on it?

Case Based Questions Test: Electrostatic Potential & Capacitance - Question 5

Read the following text and answer the following questions on the basis of the same: Capacitor Colour Code: Capacitor values as written on small capacitors are sometimes misleading. Letters like p (pico) or n (nano) are used in place of the decimal point to identify its position and the value of the capacitor. For example, a capacitor labelled as n33 = 0.33nF, 8n2 = 8.2nF, 22n = 47nF and so on. Sometimes capacitors are marked with the capital letter K to signify a value of Kilo pico-Farads. As for example, a capacitor with the markings of 100K would be 1000 × 100 pF = 100 Kpf = 100 nF. Sometimes, a three letter code consists of the two value digits and a multiplier. For example, the digits 471 = 47 × 10 = 470 pF, 332 = 33 × 100 = 3300 pf. To reduce these confusions an International colour coding scheme was developed almost the same as that of resistance colour code.

The value obtained from colour code is in pf.

68k is written on a capacitor. What is its value?

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 5

The value of the capacitor = 1000 × 68 pF = 68 kpF = 68 nF

Case Based Questions Test: Electrostatic Potential & Capacitance - Question 6

Read the following text and answer the following questions on the basis of the same: Capacitor Colour Code: Capacitor values as written on small capacitors are sometimes misleading. Letters like p (pico) or n (nano) are used in place of the decimal point to identify its position and the value of the capacitor. For example, a capacitor labelled as n33 = 0.33nF, 8n2 = 8.2nF, 22n = 47nF and so on. Sometimes capacitors are marked with the capital letter K to signify a value of Kilo pico-Farads. As for example, a capacitor with the markings of 100K would be 1000 × 100 pF = 100 Kpf = 100 nF. Sometimes, a three letter code consists of the two value digits and a multiplier. For example, the digits 471 = 47 × 10 = 470 pF, 332 = 33 × 100 = 3300 pf. To reduce these confusions an International colour coding scheme was developed almost the same as that of resistance colour code.

The value obtained from colour code is in pf.

What will be the colour code of a 27 nF capacitor?

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 6
Red, violet, orange → 27 × 1000 = 27000 pF = 27 nF
Case Based Questions Test: Electrostatic Potential & Capacitance - Question 7

Read the following text and answer the following questions on the basis of the same:

Power factor correction capacitor Power factor correction is a method to reduce the lagging power factor in inductive loads by fixing a high value capacitor across the phase and neutral line close to the load. When the Voltage and Current are in phase with each other in an AC circuit, the energy from the source is fully converted into another form to drive the load and in this case the power factor is in unity. When the power factor drops, the system becomes less efficient. In inductive loads, current “lags'' the voltage leading to “lagging power factor”. Power factor correction is the method to reduce the lagging power factor in inductive loads by fixing a high value capacitor across the phase and neutral close to the load. These capacitors have leading power factor so that it will neutralize the lagging power factor of the load. Power capacitors are huge non polarized metal film electrolytic type capacitors. Capacitors should be sufficiently rated to the load capacity. It should be connected to the lines, only when the loads are running and drawing current

What is meant by power factor correction?

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 7
Power factor correction is the method to reduce the lagging power factor in inductive loads by fixing a high value capacitor across the phase and neutral close to the load.
Case Based Questions Test: Electrostatic Potential & Capacitance - Question 8

Read the following text and answer the following questions on the basis of the same: Power factor correction capacitor Power factor correction is a method to reduce the lagging power factor in inductive loads by fixing a high value capacitor across the phase and neutral line close to the load. When the Voltage and Current are in phase with each other in an AC circuit, the energy from the source is fully converted into another form to drive the load and in this case the power factor is in unity. When the power factor drops, the system becomes less efficient. In inductive loads, current “lags'' the voltage leading to “lagging power factor”. Power factor correction is the method to reduce the lagging power factor in inductive loads by fixing a high value capacitor across the phase and neutral close to the load. These capacitors have leading power factor so that it will neutralize the lagging power factor of the load. Power capacitors are huge non polarized metal film electrolytic type capacitors. Capacitors should be sufficiently rated to the load capacity. It should be connected to the lines, only when the loads are running and drawing current

Power capacitors for power factor correction are

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 8
Power capacitors are huge non polarized metal film electrolytic type capacitors.
Case Based Questions Test: Electrostatic Potential & Capacitance - Question 9

Read the following text and answer the following questions on the basis of the same: Power factor correction capacitor Power factor correction is a method to reduce the lagging power factor in inductive loads by fixing a high value capacitor across the phase and neutral line close to the load. When the Voltage and Current are in phase with each other in an AC circuit, the energy from the source is fully converted into another form to drive the load and in this case the power factor is in unity. When the power factor drops, the system becomes less efficient. In inductive loads, current “lags'' the voltage leading to “lagging power factor”. Power factor correction is the method to reduce the lagging power factor in inductive loads by fixing a high value capacitor across the phase and neutral close to the load. These capacitors have leading power factor so that it will neutralize the lagging power factor of the load. Power capacitors are huge non polarized metal film electrolytic type capacitors. Capacitors should be sufficiently rated to the load capacity. It should be connected to the lines, only when the loads are running and drawing current

Power factor corrector capacitors should be connected

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 9
Power capacitors are connected across the phase and neutral near the inductive load such as the motor.
Case Based Questions Test: Electrostatic Potential & Capacitance - Question 10

Read the following text and answer the following questions on the basis of the same:

Supercapacitor: Super capacitor is a high capacity capacitor with a capacitance value much higher than normal capacitors but with lower voltage limits. Such capacitors bridges the gap between electrolytic capacitors and rechargeable batteries. In automobile, bus, train, crane, elevator such capacitors are used for regenerative braking, short term energy storage or burst-mode power delivery. Super capacitors have many advantages over batteries: they are very low weight and generally don't contain harmful chemicals or toxic metal. They can be charged and discharged innumerable number of times without ever wearing out. The disadvantage is that super capacitors aren’t well-suited for long-term energy storage. The discharge rate of super capacitors is significantly higher than lithium-ion batteries; they can lose as much as 10-20% of their charge per day due to self discharge.

Super capacitor makes a bridge between:

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 10
Such capacitors bridges the gap between electrolytic capacitors and rechargeable batteries.
Case Based Questions Test: Electrostatic Potential & Capacitance - Question 11

Read the following text and answer the following questions on the basis of the same: Supercapacitor: Super capacitor is a high capacity capacitor with a capacitance value much higher than normal capacitors but with lower voltage limits. Such capacitors bridges the gap between electrolytic capacitors and rechargeable batteries. In automobile, bus, train, crane, elevator such capacitors are used for regenerative braking, short term energy storage or burst-mode power delivery. Super capacitors have many advantages over batteries: they are very low weight and generally don't contain harmful chemicals or toxic metal. They can be charged and discharged innumerable number of times without ever wearing out. The disadvantage is that super capacitors aren’t well-suited for long-term energy storage. The discharge rate of super capacitors is significantly higher than lithium-ion batteries; they can lose as much as 10-20% of their charge per day due to self discharge.

Self-discharge rate of Supercapacitors:

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 11
The disadvantage is that super capacitors aren’t well-suited for long-term energy storage. The discharge rate of super capacitors is significantly higher than lithium ion batteries; they can lose as much as 10-20% of their charge per day due to self-discharge.
Case Based Questions Test: Electrostatic Potential & Capacitance - Question 12

Read the following text and answer the following questions on the basis of the same:

Capacitor Colour Code: Capacitor values as written on small capacitors are sometimes misleading. Letters like p (pico) or n (nano) are used in place of the decimal point to identify its position and the value of the capacitor. For example, a capacitor labelled as n33 = 0.33nF, 8n2 = 8.2nF, 22n = 47nF and so on. Sometimes capacitors are marked with the capital letter K to signify a value of Kilo pico-Farads. As for example, a capacitor with the markings of 100K would be 1000 × 100 pF = 100 Kpf = 100 nF. Sometimes, a three letter code consists of the two value digits and a multiplier. For example, the digits 471 = 47 × 10 = 470 pF, 332 = 33 × 100 = 3300 pf. To reduce these confusions an International colour coding scheme was developed almost the same as that of resistance colour code.

The value obtained from colour code is in pf.

Two capacitors marked as 221 and 220 respectively are joined in parallel. What is the total capacitance value?

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 12
The value of the capacitor marked as 221 is 220 pF. The value of the capacitor marked as 220 is 22 pF. When connected in parallel, the total capacitance = 220 pF + 22 pF = 242 pF.
Case Based Questions Test: Electrostatic Potential & Capacitance - Question 13

Read the following text and answer the following questions on the basis of the same: Capacitor Colour Code: Capacitor values as written on small capacitors are sometimes misleading. Letters like p (pico) or n (nano) are used in place of the decimal point to identify its position and the value of the capacitor. For example, a capacitor labelled as n33 = 0.33nF, 8n2 = 8.2nF, 22n = 47nF and so on. Sometimes capacitors are marked with the capital letter K to signify a value of Kilo pico-Farads. As for example, a capacitor with the markings of 100K would be 1000 × 100 pF = 100 Kpf = 100 nF. Sometimes, a three letter code consists of the two value digits and a multiplier. For example, the digits 471 = 47 × 10 = 470 pF, 332 = 33 × 100 = 3300 pf. To reduce these confusions an International colour coding scheme was developed almost the same as that of resistance colour code.

What is the value of the capacitor bearing a colour code: brown, green, brown?

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 13
Brown, Green, Brown 15 × 10 = 150 pF
Case Based Questions Test: Electrostatic Potential & Capacitance - Question 14

Read the following text and answer the following questions on the basis of the same:

Power factor correction capacitor Power factor correction is a method to reduce the lagging power factor in inductive loads by fixing a high value capacitor across the phase and neutral line close to the load. When the Voltage and Current are in phase with each other in an AC circuit, the energy from the source is fully converted into another form to drive the load and in this case the power factor is in unity. When the power factor drops, the system becomes less efficient. In inductive loads, current “lags'' the voltage leading to “lagging power factor”. Power factor correction is the method to reduce the lagging power factor in inductive loads by fixing a high value capacitor across the phase and neutral close to the load. These capacitors have a leading power factor so that it will neutralize the lagging power factor of the load. Power capacitors are huge non polarized metal film electrolytic type capacitors. Capacitors should be sufficiently rated to the load capacity. It should be connected to the lines, only when the loads are running and drawing current

When the energy from source is fully converted into another form, the power factor is

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 14
When the voltage and current are in phase with each other in an AC circuit, the energy from the source is fully converted into another form to drive the load and in this case, the power factor is unity. When the power factor drops, the system becomes less efficient.
Case Based Questions Test: Electrostatic Potential & Capacitance - Question 15

Read the following text and answer the following questions on the basis of the same: Power factor correction capacitor Power factor correction is a method to reduce the lagging power factor in inductive loads by fixing a high value capacitor across the phase and neutral line close to the load. When the Voltage and Current are in phase with each other in an AC circuit, the energy from the source is fully converted into another form to drive the load and in this case the power factor is in unity. When the power factor drops, the system becomes less efficient. In inductive loads, current “lags'' the voltage leading to “lagging power factor”. Power factor correction is the method to reduce the lagging power factor in inductive loads by fixing a high value capacitor across the phase and neutral close to the load. These capacitors have a leading power factor so that it will neutralize the lagging power factor of the load. Power capacitors are huge non polarized metal film electrolytic type capacitors. Capacitors should be sufficiently rated to the load capacity. It should be connected to the lines, only when the loads are running and drawing current

Power capacitors for power factor correction have

Detailed Solution for Case Based Questions Test: Electrostatic Potential & Capacitance - Question 15
Power factor corrector capacitors have leading power factor so that they neutralize the lagging power factor of the inductive load.
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