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Grade 9 Technology Project Term 3 Mini PAT Questions and Answers

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Mini PAT 1: Situations where electronic circuits control electric circuits

An electronic circuit is different from an electric circuit because it only uses a very small current, and because it uses electronic control devices such as thermistors, LDRs, diodes and transistors.

There are many household appliances that use electronic circuits to control electric circuits with bigger currents.

The following two devices are used inside the electric switchboard (or distribution board) of every building that is connected with electricity in a safe way.

  • Ordinary circuit breakers: Shuts off a circuit (for example the circuit supplying all the lights in a house) when the current becomes too big (if the current is too big for the thickness of wire used, the wire will overheat).
  • Residual-current circuit breakers: Switches off the main power supply if it detects a leakage of power, such as when a person accidentally touches a “live” electrical wire or contact and the electricity is then conducted through his or her body. This device has to cut the current very quickly; otherwise the person can die due to electric shock. Therefore it switches off the power even when it detects only a small amount of leakage of electrical current.

The following household appliances use electronic circuits to control them:

  • ovens: to control the temperature,
  • radios and other music appliances: to control the volume of the speakers,
  • some energy-saving lights: to switch off automatically when there is enough natural light, and
  • kettles: to switch off when the water boils.

Questions and answers:

  • Give two examples of situations or applications where electrical circuits are used.
  • Give two examples of situations or applications where electronic circuits are used.
  • Give three examples of situations or applications where electronic circuits and electric circuits are used together.

Give two examples of situations or applications where electrical circuits are used Answers:

Electrical circuits are used in a wide variety of applications, from simple household appliances to complex industrial equipment. Here are two examples of situations or applications where electrical circuits are commonly used:

  • Lighting: Electrical circuits are used to power lighting in homes, offices, and public spaces. The circuit typically consists of a power source, such as a battery or mains electricity, connected to a switch and a series of light fixtures. When the switch is turned on, the circuit is completed, and electricity flows through the circuit to power the lights.
  • Computing: Electrical circuits are a critical component of computers and other electronic devices. The circuitry in these devices includes components such as microprocessors, memory chips, and input/output devices, all of which are connected by circuits that allow for the flow of electricity. These circuits are responsible for carrying out the complex calculations and data processing that enable computers to perform their various functions.

Give two examples of situations or applications where electronic circuits are used Answers:

Electronic circuits are used in a wide range of applications, from small electronic devices to large industrial machines. Here are two examples of situations or applications where electronic circuits are commonly used:

  • Consumer Electronics: Electronic circuits are used in a wide range of consumer electronic devices such as mobile phones, televisions, and computers. These circuits are responsible for processing and transmitting signals, powering the device, and controlling the device’s various functions. For example, a smartphone’s electronic circuits are responsible for processing data from the phone’s sensors, powering the phone’s display, and managing the phone’s battery life.
  • Industrial Automation: Electronic circuits are also used in industrial automation applications, such as robotics and process control systems. These circuits can be used to control the movement of machines, monitor production processes, and ensure worker safety. For example, electronic circuits can be used to control the movement of robots in an automated factory or to monitor the temperature and pressure of a chemical process in a manufacturing plant.

Give three examples of situations or applications where electronic circuits and electric circuits are used together Answers:

Electronic and electric circuits are often used together in a variety of applications to provide a complete solution. Here are three examples of situations or applications where electronic circuits and electric circuits are used together:

  • Home automation: In a home automation system, electronic and electric circuits work together to control various functions such as lighting, heating, and security. The electric circuit provides power to the system, while the electronic circuits process data from sensors and user inputs to control the system’s functions.
  • Medical devices: In medical devices such as heart monitors, electronic and electric circuits work together to measure the electrical signals generated by the heart and provide information to medical professionals. The electric circuit provides power to the device, while the electronic circuits process and amplify the electrical signals generated by the heart.
  • Automotive systems: In modern cars, electronic and electric circuits work together to control various systems such as the engine, transmission, and infotainment systems. The electric circuits provide power to the various systems, while the electronic circuits process data from sensors and user inputs to control the various functions of the car.

Mini PAT 2: Investigate: A circuit with an input sensor, control knob, transistor and output device.

A sensor is a control device that can have a variable effect . A switch can only be open (infinitely large resistance) or closed (zero resistance), so a switch is not a sensor. Devices such as thermistors and LDRs can have different resistances, depending on the temperature or amount of light. They can therefore be used as sensors. A device that can generate a voltage, such as a photovoltaic cell, can also be used as a sensor. A sensor “senses” something such as temperature, or light, just as your body’s senses do. A variable resistor is also a control device, but it is not a sensor, because it is a device for which the user can set the resistance.

The circuit for the fire alarm that you built in Chapter 5 can be used for different applications where a small input current from an input sensor has to switch on a circuit with a larger current for an output device. There is also a variable resistor so that the user can determine at what level of light or temperature (for example) the output device should be switched on or off.

  • Name three input components that you know of.
  • Name three output devices that you know of.
  • Name a device that uses a control knob to set the level of something.

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Technology Grade 9 Question Papers, Notes, and Study Guides

Welcome to the comprehensive resource hub for Technology Grade 9 learners. This section is dedicated to providing an extensive array of materials to support your educational journey in Technology Grade 9. Here, you will find a variety of resources, including Revision Notes, Past Exam Papers, Practical Assessment Tasks (PATs), Examination Scopes, Marking Guidelines, Controlled Test Exemplars, and Preparatory Exam papers. Additionally, we offer Preliminary (Prelim) papers from various years and insightful Youtube lessons focused on specific topics. Our resources are designed to cater to the diverse needs of learners and educators alike.

Revision Notes Materials :

Our collection includes detailed study notes that are compatible with both CAPS and IEB curriculums, covering all terms – Term 1 through Term 4. These notes are meticulously organized to enhance your learning experience throughout the academic year.

Previous Exam Question Papers :

We provide an extensive archive of Past Exam Papers from various months (February/March, June, September, and November) and years, ranging from 2024, 2023, 2022, 2021, 2020 back to 2016. These papers are available in both English and Afrikaans, along with their corresponding Memorandum Question Papers. Furthermore, we offer exam paper exemplars from numerous provinces including Gauteng, Limpopo, Western Cape, Eastern Cape, Northern Cape, Kwazulu Natal, Mpumalanga, Free State, and North West Province.

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Our selection of study guides and textbooks is curated to assist learners in excelling in their exams. These resources are available in both free and purchasable formats, providing flexible options for every learner’s needs.

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For educators, we offer a wealth of resources, including the CAPS Document, Annual Teaching Plans, and comprehensive Teacher Guides. These resources are designed to facilitate effective teaching strategies and enhance the learning experience for students.

This platform serves as a one-stop destination for both learners and teachers in Technology Grade 9, offering an array of resources that cater to a variety of educational needs. Whether you are preparing for exams or looking for teaching materials, you’ll find valuable resources to aid your educational journey.

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Assessment Bank Items

Technology Grade 9 Book 1 Grade 9 Research Grade 9 Design brief for a low cost house Grade 9 Problem identification Grade 9 Research process Grade 9 Draw and sketch   Grade 9 Draw rough sketches Grade 9 Choose the best idea and report it using 2D and 3D drawing Grade 9 Saving energy Grade 9 Making a model Grade 9 Evaluation of the house Grade 9 Development of a portfolio Grade 9 Drawings Grade 9 Isometric drawings Grade 9 Isometric projections Grade 9 Isometric drawings of circles Grade 9 Construction of cubes Grade 9 Design a chocolate box Grade 9 Design a toy using cardbord Grade 9 Isometric three - dimensional drawings Grade 9 Graphic communications Grade 9 Signs and symbols Grade 9 Isometric drawings Grade 9 Assessment Grade 9 Shape construction Grade 9 Mass and density of materials Grade 9 Packaging Grade 9 Packaging hardness of materials Grade 9 Packaging compare the hardness of materials in industry Grade 9 Strength of materials  1 Grade 9 Strength of materials 2 Grade 9 Forces Grade 9 Corrosion resistance Grade 9 Corresion and resistance Grade 9 Application and corresion Grade 9 Structural Grade 9 Design Grade 9 Strengthening Grade 9 Assessment Grade 9 Structures Grade 9 Structures on comparing fixed and moveble dwellings Grade 9 Structures on design and make Grade 9 Assessment Grade 9 Test on properties of materials Grade 9 Odourless ltoilets Grade 9 Types of loads Grade 9 Assessment Grade 9 Loads and forces Grade 9 Self-evaluation checklist Grade 9 Additives Grade 9 Food additives Grade 9 Additives Grade 9 Additive: analyse the contents of a product Grade 9 Case study: assessment Grade 9 Investigate canned products Grade 9 Terminology for extending shelf-life of food Grade 9 Preserved food labels Grade 9 Preservation Grade 9 Protection Grade 9 Corrosion and corrosion-resistance Grade 9 Galvanising and electroplating Grade 9 Processing Grade 9 Plastics Grade 9 Recycling plastic according to the identification codes Grade 9 Ways of joining plastics abd polymers Grade 9 Test on plastics and polymers Grade 9 Recycleable materials Grade 9 Life cycle of litter Grade 9 Case study Grade 9 Carbon footprint Grade 9 Buyisa-e-bag Grade 9 Processing test Grade 9 Recycled waste Grade 9 Self - evaluation checklist Grade 9 Indigenous knowledge systems  1 Grade 9 Indigenous knowledge systems 2 Grade 9 Technology over time Grade 9 Indigenous knowledge in your community Grade 9 Indigenous knowledge systems Grade 9 Coal is a hot issue

Technology Grade 9 Book 2

Grade 9 Energy: green energy Grade 9 Energy: preservation Grade 9 Energy: renewal Grade 9 Research on diseases Grade 9 Bias: access to basic resources Grade 9 Bias on gender Grade 9 Bias on gender, age, culture Grade 9 Research bias Grade 9 Design electricity Grade 9 Current Grade 9 Electricity and current Grade 9 Electrical circuit Grade 9 Revision electricity Grade 9 Electricity Grade 9 Drawing electrical circuit Grade 9 Currency Grade 9 Electronics Grade 9 Future electronics Grade 9 Electrical Grade 9 Switches Grade 9 Basic switches Grade 9 Make basic alarm systems Grade 9 Push switches Grade 9 Drawing: push to make switches Grade 9 Ohm's law Grade 9 Resistors Grade 9 Draw circuit symbol for a potentiometer Grade 9 Light-emitting diode Grade 9 Light-dependent resistors and thermistors Grade 9 Systems Grade 9 Transistors Grade 9 Computers and binary numbers Grade 9 Problem solving Grade 9 Electrical problem Grade 9 Capacitors Grade 9 Symbols for and functions of electric components Grade 9 Comparing bulbs Grade 9 Case study: gears Grade 9 Investigating gears Grade 9 Different types of gears Grade 9 Matching different types of gears Grade 9 Labelling of spur gears Grade 9 Systems diagrams of gears Grade 9 Speed ratios in simple gear trains Grade 9 Model of a spur gear Grade 9 Mechanical advantage Grade 9 Effects of gears Grade 9 Case study: bicycles Grade 9 The bicycle Grade 9 Capability task on gears Grade 9 Understanding pulleys Grade 9 Working with pulleys Grade 9 Belt-driven pulleys Grade 9 Belt-driven systems Grade 9 Advantages and disadvantages of belt systems Grade 9 Systems diagram Grade 9 Mechanical control mechanism - ratchet and pawl Grade 9 How the ratchet and pawl work Grade 9 Simple model of a rachet and pawl Grade 9 Assessment design brief: winch Grade 9 Cleats Grade 9 Pneumatic systems Grade 9 Research pneumatic Grade 9 Calculations on pneumatic systems Grade 9 Understanding hydraulics Grade 9 Advantages and disadvantages of hydraulic systems Grade 9 Application of hydraulic systems Grade 9 How does a hydraulic system work Grade 9 Capability task - hydraulics Grade 9 Hydraulics input and output Grade 9 Forces in a hydraulic system and system diagrams Grade 9 Task one-way valves Grade 9 Use of a reservoir in a hydraulic system Grade 9 The hydraulic jack Grade 9 Hydraulic brakes Grade 9 Revision of crank systems Grade 9 Case study: robot assembly line Grade 9 Case study: popular mechanics Grade 9 Case study Grade 9 Test on calculations with levers Grade 9 Revision of levers - case study Grade 9 Test on understanding the screw thread Grade 9 Revision of application of screw thread, crank and slider Grade 9 Revision - identifying linkages Grade 9 Revision of types of linkages  

  
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GRADE 9 WORKSHEETS, TESTS, ASSIGNMENTS, INVESTIGATIONS AND PROJECTS

GRADE 9 WORKSHEETS, TESTS, ASSIGNMENTS, INVESTIGATIONS AND PROJECTS

Download and print Grade 9 worksheets, assignments, investigations, tests and projects for all subjects.

These Cross-curricular resources will help your learners begin to make deeper connections between concepts, connect famous people to history and literature, and understand real-world applications for maths and all other grade 9  subjects.

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TECHNOLOGY GRADE 9

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Mini Pat Week 3

Make working drawings (60 minutes).

  • 30 °, 60 ° and 90 ° set square,
  • a sharp pencil, and
  • masking tape to attach your drawing sheet to your drawing board.

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Work out a budget (60 minutes)

  • designers and engineers,
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Profit margin

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    This platform serves as a one-stop destination for both learners and teachers in Technology Grade 9, offering an array of resources that cater to a variety of educational needs. ... We have gathered plenty of study notes for CAPS and IEB curriculums for: Term 1, Term 2, Term 3, and Term 4. Previous Exam Question Papers: Past Exam Papers include ...

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