Students, you may consult your problems related to the material in this forum. We will also have question and answer session in this forum.
DISCUSSION FORUM
Now, please answer the question:
1. What benefits has IT brought to business and industry?
1. What benefits has IT brought to business and industry?
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning.
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
It has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning.
its benefits include precise control,a more efficient and faster production process and less waste of raw materials
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning.
it has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning.
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
It has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
2. What do these abbreviations stand for?
a. CAD
b. CAM
c. CAE
d. CIM
e. RFID
f. QR
a. CAD
b. CAM
c. CAE
d. CIM
e. RFID
f. QR
CAD (computer-aided design)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAD (computer aided design)
CAM (computeraided manufacturing)
CAE (computer aided engineering)
CIM (computer integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computeraided manufacturing)
CAE (computer aided engineering)
CIM (computer integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAD (computer-aided design)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAD (computer-aided design)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computers-integrated manufacturing)
RFID (radio frequency identification)
QR (quick response)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computers-integrated manufacturing)
RFID (radio frequency identification)
QR (quick response)
CAD (computer-aided design)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
a. CAD (computer-aided design)
b. CAM (computer-aided manufacturing)
c. CAE (computer-aided engineering)
d. CIM (computer-integrated manufacturing)
e. RFID (Radio Frequency Identification)
f. QR (Quick Response)
b. CAM (computer-aided manufacturing)
c. CAE (computer-aided engineering)
d. CIM (computer-integrated manufacturing)
e. RFID (Radio Frequency Identification)
f. QR (Quick Response)
CAD (computer-aided design)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAD (computer-aided design)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
a. CAD (computer-aided design)
b. CAM (computer-aided manufacturing)
c. CAE (computer-aided engineering)
d. CIM (computer-integrated manufacturing)
e. RFID (Radio Frequency Identification)
f. QR (Quick Response).
b. CAM (computer-aided manufacturing)
c. CAE (computer-aided engineering)
d. CIM (computer-integrated manufacturing)
e. RFID (Radio Frequency Identification)
f. QR (Quick Response).
CAD (computer-aided design)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAD (computer-aided design)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAD (computer aided design)
CAM (computeraided manufacturing)
CAE (computer aided engineering)
CIM (computer integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computeraided manufacturing)
CAE (computer aided engineering)
CIM (computer integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAD (computer aided design)
CAM (computeraided manufacturing)
CAE (computer aided engineering)
CIM (computer integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computeraided manufacturing)
CAE (computer aided engineering)
CIM (computer integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAD (computer-aided design)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response
A. CAD (computer-aided design)
B. CAM (computer-aided manufacturing)
C. CAE (computer-aided engineering)
D. CIM (computer-integrated manufacturing)
E. RFID (Radio Frequency Identification)
F. QR (Quick Response)
B. CAM (computer-aided manufacturing)
C. CAE (computer-aided engineering)
D. CIM (computer-integrated manufacturing)
E. RFID (Radio Frequency Identification)
F. QR (Quick Response)
CAD (computer-aided design)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAD (computer-aided design)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
CAM (computer-aided manufacturing)
CAE (computer-aided engineering)
CIM (computer-integrated manufacturing)
RFID (Radio Frequency Identification)
QR (Quick Response)
3. How does CAD software help a designer?
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design.
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design.
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design.
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design.
. The software allows
the user to rotate the model in any direction and to edit and instantly make
changes to the design
the user to rotate the model in any direction and to edit and instantly make
changes to the design
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design.
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PermalinkTampilkan indukTanggapi
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design.
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design.
the software allows the user to rotate the model in any direction and to edit and instantly make changes to the design.
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design.
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design
CAM refers to computer applications which control the machine tools used to produce high-quality parts
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design.
4. In what ways does CAM assist the manufacturing process?
CAM refers to computer applications which control the machine tools used to produce high-quality parts.
Cam refers to computer applications which control the machine tools used to produce high-quality parts
Cam refers to computer applications which control the machine tools used to produce high-quality
CAM refers to computer applications which control the machine tools used to produce high-quality parts.
CAM refers to computer applications which control the machine tools used to produce high-quality parts.
CAM refers to computer applications which control the machine tools used to produce high-quality parts.
CAM refers to computer applications which control the machine tools used to produce high-quality parts.
CAM refers to computer applications which control the machine tools used to produce high-quality parts.
CAM refers to computer applications which control the machine tools used to produce high-quality parts.
CAM refers to computer
applications which control the machine tools used to produce high-quality parts.
applications which control the machine tools used to produce high-quality parts.
CAM refers to computer applications which control the machine tools used to produce high-quality parts.
CAM refers to computer applications which control the machine tools used to produce high-quality parts.
Cam refers to computer applications which control the machine tools used to produce high-quality parts
CAM refers to computer applications which control the machine tools used to produce high-quality parts
CAM refers to computer applications which control the machine tools used to produce high-quality parts
The software allows the user to rotate the model in any direction and to edit and instantly make changes to the design
CAM refers to computer applications which control the machine tools used to produce high-quality parts.
5. What are the two essential elements for a RFID system?
Tags and readers
Tags and readers.
Tags and readers.
Tags and readers
The two componentsofa RFID system are tags and readers.
Tags and readers.
Tags and readers
The two components of a RFID system are tags and readers
Tags and readers.
Tags and readers.
Tags and readers
Tags and readers
Tags and readers.
Tags and readers
Tags and readers
Tags and readers
Tags and readers
The two components of a RFID system are tags and readers
Tags and readers
6. What advantages does RFID technology have over traditional barcodes?
This fast, contact-less reading of data increases speed and efficiency, keeping costs lower
This fast, contact-less reading of data increases speed and efficiency, keeping costs lower
This fast contact less reading of data increases speed and efficiency, keeping costs lower
This fast, contact-less reading of data increases apeed and efnciency.keeping costs lower.
This fast contact less reading of data increases speed and efficiency, keeping costs lower.
This fast contact less reading of data increases speed and efficiency, keeping costs lower.
RFID avoids the limitations of barcode scanning, which requires line-of-sight access to each barcode and can only be used to scan one item at a time. Instead, RFID tags do not require line-of-site, and multiple RFID tags can be detected and read remotely and simultaneously
This fast, contact-less reading of data increases speed and efficiency, keeping costs lower
This fast, contact-less reading of data increases speed and efficiency, keeping costs lower
This fast, contact-less reading of data increases speed and efficiency, keeping costs lower
This fast, contact-less reading of data increases speed and efficiency, keeping costs lower
This fast, contact-less reading of data increases speed and efficiency, keeping costs lower
This fast, contact-less reading of data increases apeed and efnciency.keeping costs lower.
This fast, contact-less reading of data increases speed and efficiency, keeping costs lower
This fast, contact-less reading of data increases speed and efficiency, keeping costs lower
. Multiple tags can be read at the same time, unlike barcaodes which have to be read one at a time. This fast, contact-less reading of data increases speed and efficiency, keeping costs lower
This fast contact less reading of data increases speed and efficiency, keeping costs lower.
7. In what areas is the use of QR codes common today? Why?
A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data.
a QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data.
a QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data
A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data
A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data.
A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data.
A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data.
A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data
A QR code can be used for inventory management, mobile marketing, product packaging, contanct tracing, and even for print advertising. QR codes are pratical because they are able to store more data
QR codes are used over a much wider range of applications. These include commercial tracking, entertainment and transport ticketing, product and loyalty marketing and in-store product labeling because they are able to store data.
A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data.
A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data
A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data.
QR codes are used over a much wider range of applications. These include commercial tracking, entertainment and transport ticketing, product and loyalty marketing and in-store product labeling because they are able to store data
A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data
its benefits include precise control,a more efficient and faster production process and less waste of raw materials
CAD(computer aided design)
CAM(computeraided manufacturing)
CAE(computer aided engineering)
CIM(computer integrated manufacturing)
RFID(radio frequency indetification)
QR(Quick Respons)
CAM(computeraided manufacturing)
CAE(computer aided engineering)
CIM(computer integrated manufacturing)
RFID(radio frequency indetification)
QR(Quick Respons)
IT has allowed companies to build up a competitive advantage, increase their efficiency and speed, cut costs and develop strategic planning
1. The incredible changes and developments in the management and processing of information have brought about advances in all areas, from design and production to distribution and sales. IT has allowed companies to build up a competitive advantage, increase their efficiency an speed, cut costs and develop strategic planning.
2. CAD : computer-aided design
CAM : computer-aided manufacturing
CAE : computer-aides engineering
CIM : computer-integrated engineering
RFID : Radio Frequency Identification
QR : Quick Reponse
3. because the software allows the user to rotate the model in any directions and to edit and instantly make changes to the design.
4. It controls the machine tools used to produce high-quality parts. Its benefit include precise control, a more efficient and faster production process and less waste of raw materials.
5. The two components of RFID system are tags and reader. It has 2 components. Tags are the very tiny, data-carrying transponders which are attached to an item. these tags can be self-adhesive, heat and water ressistant. Readers are the devices used for the collection of the data and can be connected to a computer or POS terminal, without direct contact with the tag: it is sufficient for it to be within a certain distance.
6. Multiple tags can be read at the same time, unlike barcaodes which have to be read one at a time. This fast, contact-less reading of data increases speed and efficiency, keeping costs lower.
7. A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data.
2. CAD : computer-aided design
CAM : computer-aided manufacturing
CAE : computer-aides engineering
CIM : computer-integrated engineering
RFID : Radio Frequency Identification
QR : Quick Reponse
3. because the software allows the user to rotate the model in any directions and to edit and instantly make changes to the design.
4. It controls the machine tools used to produce high-quality parts. Its benefit include precise control, a more efficient and faster production process and less waste of raw materials.
5. The two components of RFID system are tags and reader. It has 2 components. Tags are the very tiny, data-carrying transponders which are attached to an item. these tags can be self-adhesive, heat and water ressistant. Readers are the devices used for the collection of the data and can be connected to a computer or POS terminal, without direct contact with the tag: it is sufficient for it to be within a certain distance.
6. Multiple tags can be read at the same time, unlike barcaodes which have to be read one at a time. This fast, contact-less reading of data increases speed and efficiency, keeping costs lower.
7. A QR Code can be used for inventory management, mobile marketing, product packaging, contact tracing, and even for print advertising. QR codes are practical because they are able to store more data.