Abstract:
A method for measuring damage (D) of a substrate (1) caused by an electron beam (2). The method comprises using an atomic force microscope (AFM) to provide a measurement (S2) of mechanical and/or chemical material properties (P2) of the substrate (1) at an exposure area (la) of the electron beam (2). The method further comprises calculating a damage parameter (Sd) indicative for the damage (D) based on the measurement (S2) of the material properties (P2) at the exposure area (1a).
Abstract:
A method for applying a patterned structure on a surface, comprising providing a donor substrate (1) comprising donor material (la) between a light source (3) and a receiving surface (5), providing by means of the light source (3) a light pulse (3a) directed to the donor substrate (1), the light pulse (3a) being configured to cause the donor material (la) to be transferred from the donor substrate (1) onto the receiving surface (5), wherein the donor substrate (1) comprises a pattern (2) of donor material (la) on discrete portions (2a) of the donor substrate (1). The pattern (2) on the donor substrate (1) is transferred so as to form a pattern (4) of donor material (la) on the receiving surface (5).
Abstract:
The invention relates to a system for receiving an interest message. The system comprises at least one communication interface, at least one memory and at least one processor. The at least one processor is configured to receive an interest message on a first one of the at least one communication interface. The interest message comprises a name of a requested data object. At least one name component of the name of the requested data object comprises a range. The at least one processor is further configured to determine whether the at least one memory comprises a named data object having a name matching the name of the requested data object and to provide the named data object on the first one of the at least one communication interface if the memory comprises the named data object. The at least one processor is also configured to, if the memory does not comprise the named data object, forward the interest message on one or more further ones of the at least one communication interface, associate the name of the requested data object with an identifier of the first one of the at least one communication interface in the at least one memory, receive the named data object on the one or more further ones of the at least one communication interface and forward the named data object on the first one of the at least one communication interface based on the association.
Abstract:
A method of manufacturing a battery with a substrate current collector, wherein the method comprises: forming elongate and aligned electrically conductive structures on the substrate face with upstanding walls; wherein the walls are formed with a first electrode layer covering said walls, and a solid state electrolyte layer provided on the first electrode layer; and wherein a second electrode layer is formed by covering the electrolyte layer with an electrode layer; and forming a top current collector layer in electrical contact with the second electrode layer, wherein the second electrode layer is shielded from the conductive structure by an insulator covering a part of said conductive structure adjacent an end side thereof.
Abstract:
The invention is directed to a radiation curable energetic composition, to a method of forming a three-dimensional energetic object, to a three-dimensional energetic object, and to uses of the radiation curable energetic composition. The radiation curable energetic composition of the invention comprises (a) one or more polymerisable components, (b) one or more polymerisation photoinitiators, and (c) one or more energetic components.
Abstract:
An optical light diffusing system is provided that includes an optical diffuser that coverts incoming light into diffused light. To prevents mixing light from undesired directions in the diffuser, light form undesired direction is baffled before it reaches the diffuser. Baffling is performed with an array of micro lenses located in the optical path to the diffuser. An array of apertures is located between the array of micro lenses and the optical diffuser. Each micro lens is aligned with a corresponding aperture. The apertures are located substantially in a focal surface of the array of micro lenses. Optical baffles located between the array of micro lenses and the array of apertures, separates optically transparent volumes between different ones of the micro lenses and their corresponding apertures.
Abstract:
Described are methods for preparing phenols, benzene carboxylic acids, esters and anhydrides thereof from furanic compounds by reaction with a dienophile, wherein the furanic compounds are reacted with a hydrazine and/or oxime and then reacted with a dienophile.
Abstract:
A method of forming a video signal by a decoder device is described wherein the method comprises receiving a bitstream and decoder information, the decoder information signaling the decoder device the presence of one or more resolution components in the bitstream for forming a video signal, a resolution component representing a spatially subsampled version, preferably a polyphase subsampled version, of a first video signal having a first resolution, the one or more resolution components being part of a resolution component group, the group comprising a plurality of resolution components on the basis of which the first video signal is reconstructable; and, the decoder device parsing the bitstream and decoding the one or more resolution components into video frames on the basis of the decoder information.
Abstract:
A method for a first wireless communication system (INC) to share a spectrum resource with a second wireless communication system (MNO) uses a spectrum resource which may be divided into at least a first section (FS1) and a second section (FS2). The method may comprise the second wireless communication system (MNO) using the spectrum resource and the second wireless communication system (MNO) clearing at least the first section (FS1) of the spectrum resource from a first point in time (T1). The first wireless communication system (INC) may use the first section (FS1) of the spectrum resource from a second point in time (T2). The second point in time may be predetermined or may be determined by a request from the first wireless communication system (INC).
Abstract:
The invention relates to a method for controlling access for a user equipment to at least one local device via an intermediary system that is configured to connect to a local network and to a public network. The user equipment is connected to the public network and the at least one local device is connected to the local network. The method comprises a number of steps in the intermediary system. One of these steps is storing one or more location conditions for access for the user equipment to the at least one local device. Another step is receiving first location information of the user equipment over the public network, the first location information indicating a location of the user equipment. Yet another step is controlling access for the user equipment to the at least one local device by verifying whether the first location information satisfies the one or more location conditions. The invention further relates to the intermediary system used in the method.